[Technical Field]
[0001] The present invention relates to a snow removing device which is one of operating
machines to be connected to a tractor. More particularly, it relates to a snow removing
device which removes snow by obtaining power from a PTO shaft that is provided in
the rear part of the tractor and that transmits engine power, and also relates to
a snow removing method using the same.
[Background Art]
[0002] In general, as shown in FIG. 19, a tractor T comprises connecting portions 1 for
connecting an operating machine to the rear, and a PTO shaft 2 for transmitting engine
power to the operating machine.
[0003] Snow removing devices that are connected to this tractor T as one of operating machines
have heretofore been known from, for example,
JP-U-3137977 (PATENT LITERATURE 1),
JP-U-2529454 (PATENT LITERATURE 2), and
JP-Y-H6-21936 (PATENT LITERATURE 3). As shown in FIG. 19, the snow removing device Sa comprises
an auger 100 which is rotated to collect snow, an auger case 102 which rotatably supports
a rotary main shaft 101 of the auger 100 and which exposes one side of the auger in
a horizontal axis direction orthogonal to the rotary main shaft 101 of the auger 100
and which covers the other side of the auger, a blower 104 which is provided in the
auger case 102 and which is rotated to suck the snow collected by the auger 100 and
then discharges the snow through a shooter 103, and a power transmitting portion 105
which is provided in the auger case 102 and which is coupled to the PTO shaft 2 of
the tractor T to transmit the rotation of the PTO shaft 2 to the rotary main shaft
101 of the auger 100 and a blower shaft of the blower 104. A connecting body 107 which
is connected to the connecting portions 1 of the tractor T via links 106 is provided
outside the auger case 102, and a coupling portion 110 which is coupled to the PTO
shaft 2 of the tractor T via a coupling shaft body 108 is provided in a part of the
power transmitting portion 105 corresponding to the blower shaft.
[0004] When the snow removing device Sa is connected to the tractor T, the auger 100 exposed
from the auger case 102 is disposed in the rear of the tractor T so as to be exposed
toward the backward direction of the tractor T, and the connecting portions 1 of the
tractor T are connected to the connecting body 107 of the auger case 102 via the links
106, and then the PTO shaft 2 is coupled to the coupling portion 110 via the coupling
shaft body 108. When snow is removed by the tractor T to which the snow removing device
Sa is connected, an operator drives the tractor T backward while facing backward and
looking back. As a result, the rotation is transmitted to the rotary main shaft 101
of the auger 100 and the blower shaft of the blower 104 from the PTO shaft 2 via the
coupling shaft body 108 and the power transmitting portion 105. Thus, snow is collected
by the auger 100, and the collected snow is sucked and then discharged through the
shooter 103 by the blower 104.
[0005] Heretofore, as described in, for example,
JP-Y-S63-19364 (PATENT LITERATURE 4) and
JP-A-S57-104704 (PATENT LITERATURE 5), the aforementioned conventional snow removing device also
has been used so as to be connected to the front of the tractor T. In this instance,
as shown in FIG. 20, when the aforementioned snow removing device Sa is connected
to the tractor T, the auger 100 exposed from the auger case 102 is disposed in the
front of the tractor T so as to be exposed toward the forward direction of the tractor
T, and connecting portions 112 provided at the front of the tractor T are connected
to the connecting body 107 of the auger case 102 via links 111. For example, a connecting
mechanism 113 which takes out power of the PTO shaft 2 is attached to the PTO shaft
2, a coupling shaft 114 extending in a vehicle front-back direction is coupled to
the connecting mechanism 113, and the coupling shaft 114 is coupled to the coupling
portion 110 of the power transmitting portion 105 via a joint mechanism 115 such as
a universal joint. When snow is removed, the operator drives the tractor T forward
while facing forward and looking ahead. As a result, the rotation is transmitted to
the rotary main shaft 101 of the auger 100 and the blower shaft of the blower 104
from the PTO shaft 2 via the connecting mechanism 113, the coupling shaft 114, the
joint mechanism 115 and the power transmitting portion 105. Thus, the snow is collected
by the auger 100, and the collected snow is sucked and then discharged through the
shooter 103 by the blower 104.
[Citation List]
[Patent Literatures]
[Summary of Invention]
[Technical Problem]
[0007] In the meantime, the aforementioned conventional snow removing device Sa has a problem
of poor operability because when the snow removing device Sa is connected to the rear
of the tractor T to remove snow as shown in FIG. 19, the operator drives the tractor
T backward while facing backward and looking back, which is a heavy burden on the
neck and shoulders, and which makes it difficult to work for a long time, and which
also leads to poor workability.
[0008] In contrast, when the conventional snow removing device Sa is connected to the front
of the tractor T to remove snow as shown in FIG. 20, the operator drives the tractor
forward while facing forward and looking ahead, so that the operability and workability
improve. However, the problem is that it is necessary to additionally dispose, in
the tractor T, the connecting mechanism 113, the coupling shaft 114, and the joint
mechanism 115 that connect the PTO shaft 2 to the coupling portion 110, and also additionally
provide the connecting portions 112 in the front part of the tractor T, so that the
device becomes complicated, and costs are higher.
[0009] The present invention has been made in view of the problems described above, and
is intended to provide a snow removing device and a snow removing method using the
same so that an operator can remove snow by driving a tractor forward while facing
forward and looking ahead without special processing or installation of a mechanism
on the tractor side, and operability and workability may improve.
[0010] In order to achieve the above object, a first snow removing device of the present
invention is connected, as one of operating machines, to the rear of a tractor that
comprises connecting portions for connecting an operating machine to the rear, and
a PTO shaft for transmitting engine power to the operating machine. The first snow
removing device comprises an auger which is rotated to collect snow, an auger case
which rotatably supports a rotary main shaft of the auger and which exposes one side
of the auger in a horizontal axis direction orthogonal to the rotary main shaft of
the auger and which covers the other side of the auger, a blower which is provided
in the auger case and which is rotated to discharge the snow collected by the auger,
and a coupling portion which is provided in the auger case and which is coupled to
the PTO shaft of the tractor to transmit the rotation of the PTO shaft to the rotary
main shaft of the auger and a blower shaft of the blower. The coupling portion is
provided on an auger side of the auger case, and a connecting body which is connected
to the connecting portions of the tractor is provided on the auger side of the auger
case.
[0011] When the snow removing device is connected to the tractor, the auger exposed from
the auger case is disposed in the rear of the tractor so as to be exposed toward the
forward direction of the tractor, the connecting portions of the tractor are connected
to the connecting body of the auger case, and the PTO shaft is coupled to the coupling
portion. In this case, the coupling portion is provided on the auger side of the auger
case, and the connecting body is provided on the auger side of the auger case, so
that connection to the tractor and coupling to the PTO shaft are easily conducted.
It is possible to connect the snow removing device to the tractor without special
processing or installation of a mechanism on the tractor side, so that costs can be
reduced.
[0012] When snow is removed by the tractor to which the snow removing device is connected,
an operator drives the tractor forward while facing forward and looking ahead. As
a result, the rotation is transmitted to the rotary main shaft of the auger and the
blower shaft of the blower from the PTO shaft via the coupling portion. Thus, the
snow is collected by the auger, and the collected snow is sucked and then discharged
by the blower. The snow to be collected by the auger passes under a chassis of the
tractor because the tractor is driven forward. Part of the snow is once stepped on
by the wheels of the tractor, but is collected with almost no trouble in general capacity
of the auger. In this case, the operator drives the tractor forward while facing forward
and looking ahead, so that operability is high, and workability can be significantly
improved without any burden on the neck and shoulders because the operator is facing
forward.
[0013] More specifically, the present invention provides a snow removing device which is
connected, as one of operating machines, to the rear of a tractor that comprises connecting
portions for connecting an operating machine to the rear via links, and a PTO shaft
for transmitting engine power to the operating machine. The snow removing device comprises
an auger in which one blade and the other blade that are helical are respectively
fixed to a rotary main shaft on the left and right with respect to the center of the
rotary main shaft that is along the width direction of the tractor and which is rotated
in one direction to collect snow to the center of the rotary main shaft, an auger
case which rotatably supports both ends of the rotary main shaft of the auger and
which exposes one side of the auger in a horizontal axis direction orthogonal to the
rotary main shaft and which covers the other side of the auger, a guide path which
is provided in the auger case and which is open in a part corresponding to the center
of the rotary main shaft of the auger and which has a suction opening to suck snow
and a discharge opening, a blower which is rotatably provided in the suction opening
of the guide path and which sucks the collected snow through the suction opening and
then discharges the snow through the discharge opening, and a coupling portion which
is provided in the auger case and which is coupled to the PTO shaft of the tractor
to transmit the rotation of the PTO shaft to the rotary main shaft of the auger and
a blower shaft of the blower. The coupling portion is provided on the auger side of
the auger case. The coupling portion comprises a coupling shaft which is provided
across one blade and the other blade of the auger and which has one end connected
to the blower shaft of the blower and the other end connected to the PTO shaft. A
rotational power transmission mechanism which transmits the rotation of the blower
shaft of the blower to the rotary main shaft of the auger is provided outside the
auger case. A connecting body which is connected to the connecting portions of the
tractor via the links is provided on the auger side of the auger case.
[0014] In addition to the functions and advantageous effects described above, the coupling
shaft of the coupling portion is provided across one blade and the other blade of
the auger, so that the interference with the blades of the auger is certainly avoided,
and assembly is easier. The rotational power transmission mechanism takes out the
rotation of the blower shaft of the blower and then transmits the rotation to the
rotary main shaft of the auger, and the power transmission efficiency of the rotation
is improved.
[0015] If necessary, the connecting portions of the tractor are provided at the top, left,
and right of the PTO shaft, the connecting body is formed by a frame which protrudes
toward the auger side from the auger case, and attachment portions for the links corresponding
to the respective connecting portions are provided in the connecting body. Because
the connecting body is the frame, the structure can be simpler.
[0016] If necessary, a bearing which supports the coupling shaft is provided in the connecting
body. The coupling shaft is held by the bearing and is therefore firmer.
[0017] Furthermore, if necessary, a sweeping plate which is attached to the front of the
tractor is provided. The sweeping plate sweeps snow present ahead of the front wheels
of the tractor to the central side of the vehicle width direction of the tractor when
the tractor is driven forward. Because the snow that may be stepped on by the wheels
of the tractor is drawn to the central side of the vehicle width direction of the
tractor by the sweeping plate, the snow can be certainly collected by the auger.
[0018] In order to achieve the above object, a second snow removing device of the present
invention is connected, as one of operating machines, to the rear of a tractor that
comprises connecting portions for connecting an operating machine to the rear, and
a PTO shaft for transmitting engine power to the operating machine. The second snow
removing device comprises an auger which is rotated to collect snow, an auger case
which rotatably supports a rotary main shaft of the auger and which exposes one side
of the auger in a horizontal axis direction orthogonal to the rotary main shaft of
the auger and which covers the other side of the auger, a blower which is provided
in the auger case and which is rotated to discharge the snow collected by the auger,
and a power transmitting portion which is provided in the auger case and which is
coupled to the PTO shaft of the tractor to transmit the rotation of the PTO shaft
to the rotary main shaft of the auger and a blower shaft of the blower. The auger
case is provided with a forward facing connecting body which is connectable to the
connecting portions of the tractor at a forward facing position where the auger exposed
from the auger case is disposed so as to be exposed toward the forward direction of
the tractor. The power transmitting portion is provided with a forward facing coupling
portion which is configured to be coupled to the PTO shaft through the outside of
the auger via the coupling shaft at the forward facing position.
[0019] When this snow removing device is connected to the tractor, the auger exposed from
the auger case is disposed at the forward facing position in the rear of the tractor
so as to be exposed toward the forward direction of the tractor, the connecting portions
of the tractor are connected to the forward facing connecting body of the auger case,
and the PTO shaft is coupled to the forward facing coupling portion. In this case,
the forward facing connecting body and the forward facing coupling portion are used,
so that connection to the tractor and coupling to the PTO shaft are easily conducted.
Because the coupling shaft is coupled to the forward facing coupling portion from
the outside of the auger, the interference between the coupling shaft and the blades
of the auger is certainly avoided. Moreover, it is possible to connect the snow removing
device to the tractor without special processing or installation of a mechanism on
the tractor side, so that costs can be reduced.
[0020] When snow is removed by the tractor to which this snow removing device is connected,
an operator drives the tractor forward while facing forward and looking ahead. As
a result, the rotation is transmitted to the rotary main shaft of the auger and the
blower shaft of the blower from the PTO shaft via the forward facing coupling portion
and the power transmitting portion. Thus, the snow is collected by the auger, and
the snow collected by the blower is sucked and then discharged. The snow collected
by the auger passes under a chassis of the tractor because the tractor is driven forward.
Part of the snow is once stepped on by the wheels of the tractor, but is collected
with almost no trouble in general capacity of the auger. In this case, the operator
drives the tractor forward while facing forward and looking ahead, so that operability
is high, and workability can be significantly improved without any burden on the neck
and shoulders because the operator is facing forward.
[0021] More specifically, the present invention provides a snow removing device which is
connected, as one of operating machines, to the rear of a tractor that comprises connecting
portions for connecting an operating machine to the rear, and a PTO shaft for transmitting
engine power to the operating machine. The snow removing device comprises an auger
in which one blade and the other blade that are helical are respectively fixed to
a rotary main shaft on the left and right with respect to the center of the rotary
main shaft that is along the width direction of the tractor and which is rotated in
one direction to collect snow to the center of the rotary main shaft, an auger case
which rotatably supports both ends of the rotary main shaft of the auger and which
exposes one side of the auger in a horizontal axis direction orthogonal to the rotary
main shaft and which covers the other side of the auger, a guide path which is provided
in the auger case and which is open in a part corresponding to the center of the rotary
main shaft of the auger and which has a suction opening to suck snow and a discharge
opening, a blower which is rotatably provided in the suction opening of the guide
path and which sucks the collected snow through the suction opening and then discharges
the snow through the discharge opening, and a power transmitting portion which is
provided in the auger case and which is coupled to the PTO shaft of the tractor to
transmit the rotation of the PTO shaft to the rotary main shaft of the auger and a
blower shaft of the blower. The auger case is provided with a forward facing connecting
body which is connectable to the connecting portions of the tractor at a forward facing
position where the auger exposed from the auger case is disposed so as to be exposed
toward the forward direction of the tractor. The power transmitting portion is provided
with a forward facing coupling portion which is configured to be coupled to the PTO
shaft through the outside of the auger via the coupling shaft at the forward facing
position.
[0022] If necessary, the forward facing coupling portion is located on the upper side of
the auger case. Preferably, the forward facing coupling portion is located on the
upper side of the auger case and on a vertical axis line that intersects with the
axial direction of the PTO shaft. Accordingly, the forward facing coupling portion
is located on the upper side of the auger case, so that coupling to the PTO shaft
is easily conducted, and the interference with the blades of the auger can be certainly
avoided.
[0023] If necessary, the power transmitting portion comprises a first power transmission
mechanism which transmits rotation to the blower shaft of the blower, and a second
power transmission mechanism which transmits the rotation transmitted from the first
power transmission mechanism to the rotary main shaft of the auger. The first power
transmission mechanism comprises a master rotary shaft having the forward facing coupling
portion at the end thereof, and a blower shaft secondary power transmission mechanism
which is provided between the rear end of the master rotary shaft and the rear end
of the blower shaft and which includes at least one of a belt power transmission mechanism,
a chain power transmission mechanism, a frictional power transmission mechanism, and
a gear power transmission mechanism. The first power transmission mechanism is affixed
to the outside of the auger case. Because the forward facing coupling portion is provided
at the end of the master rotary shaft, the coupling shaft can be supported by the
master rotary shaft, so that the support can be firm and certain. The first power
transmission mechanism is affixed to the outside of the auger case, which allows compactness.
[0024] Furthermore, if necessary, the second power transmission mechanism comprises a slave
rotary shaft having one end linked to the master rotary shaft of the first power transmission
mechanism via a rotation axis direction converting mechanism so that the rotation
of the master rotary shaft is transmitted thereto, and a main shaft secondary power
transmission mechanism which is provided between the rear end of the slave rotary
shaft and the end of the rotary main shaft of the auger and which includes at least
one of a belt power transmission mechanism, a chain power transmission mechanism,
a frictional power transmission mechanism, and a gear power transmission mechanism.
The slave rotary shaft is provided parallel to the rotary main shaft of the auger
in the upper part of the auger case, and the main shaft secondary power transmission
mechanism is provided along one side wall of the auger case. Because the rotation
of the slave rotary shaft is obtained from the master rotary shaft, the rotation can
be certainly transmitted. The second power transmission mechanism can be affixed to
the upper part and side part of the auger case, which allows compactness.
[0025] Further yet, if necessary, the connecting portions of the tractor are provided at
the top, left, and right of the PTO shaft, and the forward facing coupling portion
is formed by a frame which protrudes toward the auger side from the auger case, and
attachment portions for the links corresponding to the respective connecting portions
are provided in the forward facing coupling portion. Because the forward facing coupling
portion is formed by the frame, the structure can be simpler.
[0026] If necessary, the auger case is provided with a backward facing connecting body which
is connectable to the connecting portions of the tractor at a backward facing position
where the auger exposed from the auger case is disposed so as to be exposed toward
the backward direction of the tractor. The power transmitting portion is provided
with a backward facing coupling portion which is connectable to the PTO shaft via
a coupling shaft at the backward facing position. Accordingly, the auger exposed from
the auger case can be connected at the backward facing position where the auger is
disposed so as to be exposed toward the backward direction of the tractor, so that
as heretofore, however, the operator can remove snow by driving the tractor backward
while facing backward and looking back. Therefore, a method of removing snow can be
selected at the backward facing position as heretofore in accordance with the depth
of snow and the environment of the place where snow is to be removed, which allows
reversibleness and thus the increase of versatility.
[0027] In this case, if necessary, the backward facing coupling portion is formed in an
extension extended at the rear end of the blower shaft of the blower. Coupling of
the PTO shaft via the coupling shaft can be easier.
[0028] If necessary, a sweeping plate which is attached to the front of the tractor is provided.
The sweeping plate sweeps snow present ahead of the front wheels of the tractor to
the central side of the vehicle width direction of the tractor when the tractor is
driven forward. Because the snow that may be stepped on by the wheels of the tractor
is drawn to the central side of the vehicle width direction of the tractor by the
sweeping plate, the snow can be certainly collected by the auger.
[0029] In order to achieve the above object, a third snow removing device of the present
invention is connected, as one of operating machines, to the rear of a tractor that
comprises connecting portions for connecting an operating machine to the rear, and
a PTO shaft for transmitting engine power to the operating machine. The third snow
removing device comprises an auger to which one blade and the other blade that are
helical are respectively fixed on the left and right with respect to the center of
the rotary main shaft that is along the width direction of the tractor and which is
rotated in one direction to collect snow to the central side of the rotary main shaft,
an auger case which rotatably supports both ends of the rotary main shaft of the auger
and which exposes one side of the auger in a horizontal axis direction orthogonal
to the rotary main shaft and which covers the other side of the auger, a guide path
which is provided in the auger case and which is open in a part corresponding to the
central part of the rotary main shaft of the auger and which has a suction opening
to suck snow and a discharge opening, a blower which is rotatably provided in the
suction opening of the guide path and which sucks the collected snow through the suction
opening and then discharges the snow through the discharge opening, and a power transmitting
portion which is coupled to the PTO shaft of the tractor to transmit the rotation
of the PTO shaft to the rotary main shaft of the auger and a blower shaft of the blower.
[0030] The auger case is provided with a forward facing connecting body which is connectable
to the connecting portions of the tractor at a forward facing position where the auger
exposed from the auger case is disposed so as to be exposed toward the forward direction
of the tractor. The power transmitting portion comprises a connecting shaft which
is connected to one end of the blower shaft located on one side of the auger in a
horizontal axis direction orthogonal to the rotary main shaft, and a power transmission
box which is provided in the center of the rotary main shaft and which has a power
transmission mechanism that is configured to relatively transmit the rotation of the
connecting shaft to the rotary main shaft and a box main body that is supported by
the auger case and that houses the power transmission mechanism. A forward facing
connecting body which is linked to the power transmission mechanism and which is configured
to be coupled to the PTO shaft via a coupling shaft is provided on one side of the
power transmission box in a horizontal axis direction orthogonal to the rotary main
shaft.
[0031] When this snow removing device is connected to the tractor, the auger exposed from
the auger case is disposed at the forward facing position in the rear of the tractor
so as to be exposed toward the forward direction of the tractor, the connecting portions
of the tractor are connected to the forward facing connecting body of the auger case,
and the PTO shaft is coupled to the forward facing coupling portion via the coupling
shaft. In this case, the forward facing connecting body and the forward facing coupling
portion are used, so that connection to the tractor and coupling to the PTO shaft
are easily conducted. It is possible to connect the snow removing device to the tractor
without special processing or installation of a mechanism on the tractor side, so
that costs can be reduced. Moreover, because the coupling shaft is coupled to the
power transmission box provided in the center of the rotary main shaft to transmit
the rotation of the PTO shaft to the rotary main shaft of the auger and the blower
shaft of the blower, the power transmitting portion does not need to be provided outside
the auger case, and the device can therefore be compact.
[0032] When snow is removed by the tractor to which this snow removing device is connected,
an operator drives the tractor forward while facing forward and looking ahead. As
a result, the rotation is transmitted to the rotary main shaft of the auger from the
PTO shaft via the forward facing coupling portion and the power transmission box,
the rotation is also transmitted to the blower shaft of the blower from the power
transmission box via the connecting shaft. Thus, the snow is collected by the auger,
and the snow collected by the blower is sucked and then discharged. The snow collected
by the auger passes under a chassis of the tractor because the tractor is driven forward.
Part of the snow is once stepped on by the wheels of the tractor, but is collected
with almost no trouble in general capacity of the auger. In this case, the operator
drives the tractor forward while facing forward and looking ahead, so that operability
is high, and workability can be significantly improved without any burden on the neck
and shoulders because the operator is facing forward.
[0033] If necessary, the forward facing coupling portion comprises a link shaft which is
linked to the power transmission mechanism in the power transmission box and to which
the coupling shaft is coupled at the end, and the link shaft is supported by a bearing
which is supported by the auger case via a support member. Because the link shaft
is provided, the coupling shaft can be coupled at a position away from the auger,
and the interference between the coupling shaft and the auger can be prevented.
[0034] If necessary, the power transmission mechanism of the power transmission box comprises
a master bevel gear provided at the end of the connecting shaft, and a slave bevel
gear which meshes with the master bevel gear and which transmits rotation to the rotary
main shaft, and the link shaft is continuously provided in the connecting shaft. Because
the bevel gear mechanism is used, the power transmission box can be small in size,
and the interference with the blades of the auger can be certainly avoided.
[0035] Further yet, if necessary, the connecting portions of the tractor are provided at
the top, left, and right of the PTO shaft, and the forward facing coupling portion
is formed by a frame which protrudes toward the auger side from the auger case, and
attachment portions for the links corresponding to the respective connecting portions
are provided in the forward facing coupling portion. Because the forward facing coupling
portion is formed by the frame, the structure can be simpler.
[0036] If necessary, the auger case is provided with a backward facing connecting body which
is connectable to the connecting portions of the tractor at a backward facing position
where the auger exposed from the auger case is disposed so as to be exposed toward
the backward direction of the tractor. The power transmitting portion is provided
with a backward facing coupling portion which is connectable to the PTO shaft via
a coupling shaft at the backward facing position. Accordingly, the auger exposed from
the auger case can be connected at the backward facing position where the auger is
disposed so as to be exposed toward the backward direction of the tractor, so that
as heretofore, the operator can remove snow by driving the tractor backward while
facing backward and looking back. Therefore, a method of removing snow can be selected
at the backward facing position as heretofore in accordance with the depth of snow
and the environment of the place where snow is to be removed, which allows reversibleness
and thus the increase of versatility.
[0037] In this case, if necessary, the backward facing coupling portion is provided at the
other end of the blower shaft located on the other side in the horizontal axis direction
orthogonal to the rotary main shaft. Coupling of the PTO shaft via the coupling shaft
can be easier.
[0038] If necessary, a sweeping plate which is attached to the front of the tractor is provided.
The sweeping plate sweeps snow present ahead of the front wheels of the tractor to
the central side of the vehicle width direction of the tractor when the tractor is
driven forward. Because the snow that may be stepped on by the wheels of the tractor
is drawn to the central side of the vehicle width direction of the tractor by the
sweeping plate, the snow can be certainly collected by the auger.
[0039] Moreover, in order to achieve the above object, there is provided a snow removing
method of the present invention to connect any one of the first to third snow removing
devices as one of operating machines to the rear of a tractor to remove snow. The
tractor comprises connecting portions for connecting an operating machine to the rear,
and a PTO shaft for transmitting engine power to the operating machine. The snow removing
method comprises using the third snow removing device, connecting this snow removing
device so that the auger exposed from the auger case is disposed in the rear of the
tractor so as to be exposed toward the forward direction of the tractor, and coupling
the PTO shaft to the coupling portion or the forward facing coupling portion, in which
state snow is removed by the snow removing device while the tractor is being driven
forward. Functions and advantageous effects similar to those described above are provided.
[Advantageous Effects of the Invention]
[0040] According to the first to third snow removing devices of the present invention and
the snow removing method using the same, it is possible to connect the snow removing
device to the tractor without special processing or installation of a mechanism on
the tractor side, so that costs can be reduced. When snow is removed by the tractor,
the operator can drive the tractor forward while facing forward and looking ahead,
so that operability is high, and workability can be significantly improved without
any burden on the neck and shoulders because the operator is facing forward.
[0041] Furthermore, according to the third snow removing device of the present invention,
the coupling shaft is coupled to the power transmission box provided in the center
of the rotary main shaft to transmit the rotation of the PTO shaft to the rotary main
shaft of the auger and the blower shaft of the blower, so that the power transmitting
portion does not need to be provided outside the auger case, and the device can therefore
be compact.
[Brief Description of Drawings]
[0042]
FIG. 1 is a diagram showing a state in which a snow removing device according to a
first embodiment of the present invention is connected to a tractor at a forward facing
position;
FIG. 2 is a plan view showing functions of the snow removing device according to the
first embodiment of the present invention;
FIG. 3 is an exploded perspective view showing the snow removing device according
to the first embodiment of the present invention in relation to a connecting part
of the tractor;
FIG. 4 is a perspective view of the snow removing device according to the first embodiment
of the present invention;
FIG. 5 is a side partially cutaway sectional view showing the snow removing device
according to the first embodiment of the present invention;
FIG. 6 is a diagram showing a state in which the snow removing device according to
the first embodiment of the present invention is connected to the tractor at a backward
facing position;
FIG. 7 is a diagram showing a state in which a snow removing device according to an
alternative embodiment of the present invention is connected to a tractor at the forward
facing position;
FIG. 8 is a perspective view of a snow removing device according to the alternative
embodiment of the present invention;
FIG. 9 is a diagram showing a state in which a snow removing device according to a
second embodiment of the present invention is connected to a tractor;
FIG. 10 is a plan view showing functions of the snow removing device according to
the second embodiment of the present invention;
FIG. 11 is an exploded perspective view showing the snow removing device according
to the second embodiment of the present invention in relation to the connecting part
of the tractor;
FIG. 12 is a side partially cutaway sectional view showing the snow removing device
according to the second embodiment of the present invention;
FIG. 13 is a diagram showing a state in which a snow removing device according to
a third embodiment of the present invention is connected to a tractor at the forward
facing position;
FIG. 14 is a plan view showing functions of the snow removing device according to
the third embodiment of the present invention;
FIG. 15 is an exploded perspective view showing the snow removing device according
to the third embodiment of the present invention in relation to the connecting part
of the tractor;
FIG. 16 is a perspective view showing the configuration of a power transmission box
of the snow removing device according to the third embodiment of the present invention;
FIG. 17 is a side partially cutaway sectional view showing the snow removing device
according to the third embodiment of the present invention;
FIG. 18 is a diagram showing a state in which the snow removing device according to
the third embodiment of the present invention is connected to the tractor at the backward
facing position;
FIG. 19 is a diagram showing a state in which a conventional snow removing device
is connected to a tractor; and
FIG. 20 is a diagram showing another example of connection of the conventional snow
removing device to the tractor.
[Description of Embodiments]
[0043] Hereinafter, a snow removing device and a snow removing method according to embodiments
of the present invention will be described in detail with reference to the accompanying
drawings. Parts similar to those described above are described with the same reference
numbers.
(First Embodiment)
[0044] As shown in FIG. 1 to FIG. 6, a chassis 3 of a tractor T to which a snow removing
device S according to the first embodiment is connected comprises connecting portions
1 to connect an operating machine to the rear via links 4, and a PTO shaft 2 in which
an end to transmit engine power to the operating machine is formed by a spline shaft.
The connecting portions 1 of the tractor T are provided at three places: the top,
left, and right of the PTO shaft 2. The reference number 5 denotes a seat, the reference
number 6 denotes front wheels, and the reference number 7 denotes rear wheels. The
snow removing device S according to the embodiment is connected to the rear of this
tractor T as one of operating machines.
[0045] Specifically, the snow removing device S according to the embodiment comprises an
auger 10, and an auger case 14 which covers the auger 10. The auger 10 comprises a
rotary main shaft 11 that is along the width direction of the tractor T, and one blade
12 and the other blade 13 which are helical and which are respectively fixed to the
rotary main shaft 11 on the left and right with respect to the center of the rotary
main shaft 11. The auger 10 is rotated around the rotary main shaft 11 in one direction
to collect snow to the center of the rotary main shaft 11. The auger case 14 comprises
a case body 15 which rotatably supports both ends of the rotary main shaft 11 of the
auger 10 and which exposes one side of the auger in a horizontal axis direction orthogonal
to the rotary main shaft 11 and which covers the other side of the auger. The auger
case 14 is provided with a guide path 18 which is open in a part corresponding to
the center of the rotary main shaft 11 of the auger 10 and which has a suction opening
16 to suck snow and a discharge opening 17. A shooter 19 in which the guide path 18
is formed and which has the discharge opening 17 at the end and which discharges snow
is provided so as to protrude in the case body 15.
[0046] A blower 20 which sucks the collected snow through the suction opening 16 and then
discharges the snow through the discharge opening 17 is rotatably provided in the
suction opening 16 of the guide path 18 provided in the case body 15. The blower 20
has a blower shaft 21 supported by the case body 15, and is provided with, at the
end, a blade 22 which takes in snow. A rear end 23 of the blower shaft 21 protrudes
outward, and a further extended extension 24 is provided at the rear end 23. A later-described
backward facing coupling portion 77 is formed in the extension 24.
[0047] The auger case 14 is provided with a forward facing connecting body 30 which is connectable
to the connecting portions 1 of the tractor T at a forward facing position X where
the auger 10 exposed from the auger case 14 is disposed so as to be exposed toward
the forward direction of the tractor T. The forward facing connecting body 30 protrudes
toward the auger 10 side of the auger case 14, and is connected to the connecting
portions 1 of the tractor T via the links 4. Specifically, the forward facing connecting
body 30 comprises L-shaped frame bodies 31 which are formed by frames protruding toward
the auger 10 side from the top of the case body 15 of the auger case 14 and which
are located a predetermined distance apart from each other in the rotary main shaft
11 direction and which are fixed to the case body 15 at one end, for example, by welding
and which droop at the other end, an upper bridging rod 32 laid between the frame
bodies 31, and reinforcing rods 33 obliquely laid between both end sides of the L-shaped
frame bodies 31. Attachment portions 35 for the links 4 corresponding to the respective
connecting portions 1 of the tractor T are provided in the forward facing connecting
body 30. The attachment portion 35 corresponding to the connecting portion 1 at the
top of the PTO shaft 2 is provided in the center of the upper bridging rod 32, and
the attachment portions 35 corresponding to the left and right of the PTO shaft 2
are provided at the other ends of the respective frame bodies 31. Because the forward
facing connecting body 30 is the frame, the structure can be simpler.
[0048] The auger case 14 is also provided with a power transmitting portion 40 which is
coupled to the PTO shaft 2 of the tractor T to transmit the rotation of the PTO shaft
2 to the rotary main shaft 11 of the auger 10 and the blower shaft 21 of the blower
20. The power transmitting portion 40 is provided with a forward facing coupling portion
45 which is configured to be coupled to the PTO shaft 2 through the outside of the
auger 10 via a coupling shaft 41 at the forward facing position X. The coupling shaft
41 comprises a rotary shaft 42, and universal joints 43 respectively provided at both
ends of the rotary shaft 42. Joint portions 43a and 43b of the respective universal
joints 43 are formed by spline holes. One joint portion 43a meshes with the spline
shaft at the end of the PTO shaft 2. The forward facing coupling portion 45 is located
on the upper side of the auger case 14, and in the embodiment, the forward facing
coupling portion 45 faces the substantially central upper side of the axial direction
of the auger case 14, and is located on a vertical axis line that intersects with
the axial line direction of the PTO shaft 2 and the axial line direction of the blower
shaft 21. The forward facing coupling portion 45 is configured by a spline shaft which
is formed by the end of a later-described master rotary shaft 51 and which meshes
with the spline hole of the other joint portion 43b.
[0049] The power transmitting portion 40 comprises a first power transmission mechanism
50 which transmits rotation to the blower shaft 21 of the blower 20, and a second
power transmission mechanism 60 which transmits the rotation transmitted from the
first power transmission mechanism 50 to the rotary main shaft 11 of the auger 10.
The first power transmission mechanism 50 is affixed to the outside of the auger case
14, and comprises the master rotary shaft 51 having the forward facing coupling portion
45 at the end thereof. A support 52 is provided on the substantially central outer
side of the auger case 14, and the master rotary shaft 51 is rotatably supported by
a pair of bearings 53 respectively provided in the upper part of the auger case 14
and the upper part of the support 52 so that the axis line is parallel to the blower
shaft 21. The first power transmission mechanism 50 comprises a blower shaft secondary
power transmission mechanism 54 which is provided between a rear end 51 a of the master
rotary shaft 51 and the rear end 23 of the blower shaft 21 and which includes at least
one of a belt power transmission mechanism, a chain power transmission mechanism,
a frictional power transmission mechanism, and a gear power transmission mechanism.
In the embodiment, the chain power transmission mechanism is adopted. A perpendicular
plate 55 which the master rotary shaft 51 and the blower shaft 21 rotatably pierce
is provided to be attached to the support 52, and the chain power transmission mechanism
is provided outside the perpendicular plate 55. The blower shaft secondary power transmission
mechanism 54 comprising the chain power transmission mechanism comprises a pair of
sprockets 56 provided at the rear end 51 a of the master rotary shaft 51 and the rear
end 23 of the blower shaft 21, and an endless chain 57 wound across the sprockets
56. The master rotary shaft 51 is covered with a first cover 58 which is fixedly attached
to the upper part of the support 52 by screws (not shown), and the blower shaft secondary
power transmission mechanism 54 comprising the chain power transmission mechanism
is covered with a second cover 59 which is fixedly attached to the perpendicular plate
55 by screws (not shown).
[0050] The second power transmission mechanism 60 comprises a slave rotary shaft 62 having
one end linked to the rear end 23 of the blower shaft 21 via a rotation axis direction
converting mechanism 61 such as a bevel gear so that the rotation of the blower shaft
21 is transmitted, and a main shaft secondary power transmission mechanism 63 which
is provided between the other end of the slave rotary shaft 62 and the end of the
rotary main shaft 11 of the auger 10 and which is configured by, for example, a gear
belt power transmission mechanism. The slave rotary shaft is provided so as to be
covered with a cover 64 on the outer back surface of the auger case 14 parallel to
the rotary main shaft 11 of the auger 10, and the main shaft secondary power transmission
mechanism 63 is provided so as to be covered with a cover 65 along one side wall of
the auger case 14.
[0051] The auger case 14 is also provided with a backward facing connecting body 70 which
is connectable to the connecting portions 1 of the tractor T at a backward facing
position Y (FIG. 6) where the auger 10 exposed from the auger case 14 is disposed
so as to be exposed toward the backward direction of the tractor. The backward facing
connecting body 70 comprises a pair of first arms 72 which is provided so as to protrude
outward from the outer back surface of the auger case 14, and a pair of second arms
73 which extend from the ends of the respective first arms 72 and which have their
ends in close contact. One first arm 72 is reinforced by a reinforcing beam 71. Attachment
portions 75 for the links 4 corresponding to the respective connecting portions 1
of the tractor T are provided in the backward facing connecting body 70. The attachment
portions 75 corresponding to the left and right of the PTO shaft 2 are respectively
provided at the ends of the first arms 72, and the attachment portion 75 corresponding
to the connecting portion 1 at the top of the PTO shaft 2 is provided at the ends
of the second arms 73.
[0052] Furthermore, the power transmitting portion 40 is provided with the backward facing
coupling portion 77 which is connectable to the PTO shaft 2 via an additional coupling
shaft 76a (FIG. 6) having a different length that is formed at the backward facing
position Y in the same manner as described above. The backward facing coupling portion
77 is formed in the extension 24 which is integrally extended at the rear end 23 of
the blower shaft 21 of the blower 20, and is configured by a spline shaft which meshes
with the spline hole of the other joint portion of the additional coupling shaft 76a.
A coupling shaft 76 is coupled to the backward facing coupling portion 77 through
a cutout 59a in the second cover 59.
[0053] The snow removing device S according to the embodiment further comprises a pair of
sweeping plates 78 which are attached to the front of the tractor T and which sweep
snow present ahead of the front wheels 6 of the tractor T to the central side of the
vehicle width direction of the tractor T when the tractor T is driven forward.
[0054] Therefore, when this snow removing device S is connected to the tractor T, the auger
10 exposed from the auger case 14 is disposed at the forward facing position X in
the rear of the tractor T so as to be exposed toward the forward direction of the
tractor T, and each of the connecting portions 1 of the tractor T is connected to
each of the attachment portions 35 of the forward facing connecting body 30 of the
auger case 14 via the link 4. Moreover, the PTO shaft 2 is coupled to the forward
facing coupling portion 45 via the coupling shaft 41. In this case, the forward facing
connecting body 30 and the forward facing coupling portion 45 are used, so that connection
to the tractor T and coupling to the PTO shaft 2 are easily conducted. In particular,
the forward facing coupling portion 45 is provided on the upper side of the center
of the auger case 14, and is therefore easily coupled. Because the coupling shaft
41 is coupled to the forward facing coupling portion 45 through the outside of the
auger 10, the interference between the coupling shaft 41 and the blades 12 and 13
of the auger 10 can be certainly avoided. Moreover, it is possible to connect the
snow removing device S to the tractor T without special processing or installation
of a mechanism on the tractor T side, so that costs can be reduced.
[0055] When snow is removed by the tractor T to which the snow removing device S is connected,
an operator drives the tractor T forward while facing forward and looking ahead as
shown in FIG. 1. As a result, the rotation is transmitted to the blower shaft 21 of
the blower 20 from the PTO shaft 2 via the coupling shaft 41, the forward facing coupling
portion 45, and the power transmitting portion 40, and the rotation is further transmitted
to the rotary main shaft 11 of the auger 10. Thus, the snow is collected by the auger
10, and the snow collected by the blower 20 is sucked and then discharged through
the shooter 19.
[0056] In this case, because the sweeping plates 78 are provided at the front of the tractor
T, the snow present ahead of the front wheels 6 of the tractor T is swept to the central
side of the vehicle width direction of the tractor T when the tractor T is driven
forward. Thus, because the snow that may be stepped on by the wheels 6 and 7 of the
tractor T is drawn to the central side of the vehicle width direction of the tractor
T by the sweeping plates 78, the snow can be certainly collected by the auger 10.
The snow to be collected by the auger 10 passes under the chassis 3 of the tractor
T and reaches the auger 10 because the tractor T is driven forward.
[0057] In this removal of snow, the operator of the tractor T drives the tractor T forward
while facing forward and looking ahead, so that operability is high, and workability
can be significantly improved without any burden on the neck and shoulders because
the operator is facing forward.
[0058] Next, another way of using the present snow removing device S is described. As shown
in FIG. 6, the snow removing device S is set so that the auger 10 exposed from the
auger case 14 is disposed at the backward facing position Y in the rear of the tractor
T so as to be exposed toward the backward direction of the tractor T, and each of
the connecting portions 1 of the tractor T is connected to each of the attachment
portions 75 of the backward facing connecting body 70 of the auger case 14 via the
link 4. Moreover, the PTO shaft 2 is coupled to the backward facing coupling portion
77 by the additional coupling shaft 76a. In this case, because the backward facing
coupling portion 77 is formed in the extension 24 extended at the rear end 23 of the
blower shaft 21 of the blower 20, coupling of the PTO shaft 2 via the coupling shaft
76 can be easier.
[0059] In this state, as heretofore, however, the operator removes snow by driving the tractor
T backward while facing backward and looking back. As a result, the rotation is transmitted
to the blower shaft 21 of the blower 20 from the PTO shaft 2 via the coupling shaft
76, the backward facing coupling portion 77, and the power transmitting portion 40,
and the rotation is further transmitted to the rotary main shaft 11 of the auger 10.
Thus, the snow is collected by the auger 10, and the snow collected by the blower
20 is sucked and then discharged through the shooter 19. This is considerably advantageous
to, for example, a situation in which it is difficult to drive the tractor T forward
because of deep snow. That is, a method of removing snow can be selected at the backward
facing position Y as heretofore in accordance with the depth of snow and the environment
of the place where snow is to be removed, which all the more increases versatility.
[0060] A snow removing device S according to an alternative embodiment of the present invention
is shown in FIG. 7 and FIG. 8. The snow removing device S according to this alternative
embodiment is configured in the same manner as described above, but is different from
the above in the configuration of the second power transmission mechanism of the power
transmitting portion 40. The second power transmission mechanism 80 comprises a slave
rotary shaft 82 having one end linked to the master rotary shaft 51 of the first power
transmission mechanism 50 via a rotation axis direction converting mechanism 81 such
as a bevel gear mechanism so that the rotation of the master rotary shaft 51 is transmitted
thereto, and a main shaft secondary power transmission mechanism 83 which is provided
between the rear end of the slave rotary shaft 82 and the end of the rotary main shaft
11 of the auger 10 and which includes at least one of a belt power transmission mechanism,
a chain power transmission mechanism, a frictional power transmission mechanism, and
a gear power transmission mechanism. In the embodiment, the chain power transmission
mechanism is adopted. The slave rotary shaft 82 is supported by a bearing 84 in the
upper part of the auger case 14, and is provided parallel to the rotary main shaft
11 of the auger 10. The main shaft secondary power transmission mechanism 83 is provided
along one side wall of the auger case 14. The slave rotary shaft 82 is provided so
as to be covered with an unshown cover, and the main shaft secondary power transmission
mechanism 83 is covered with a cover 85. According to the snow removing device S in
this embodiment, the rotation of the slave rotary shaft 82 is obtained from the master
rotary shaft 51, so that the rotation can be certainly transmitted. Because the second
power transmission mechanism 60 can be affixed to the upper part and side part of
the auger case 14, the outer back surface of the auger case 14 is uncluttered, and
the device can be compact. Functions and advantageous effects are similar to those
described above.
[0061] The position of the forward facing coupling portion 45 is provided substantially
in the center of the upper part of the auger case 14 in the embodiment of the present
invention, but is not limited to this position, and may be located in a different
part. That is, at the forward facing position X, the forward facing coupling portion
45 may be set at any position where the coupling shaft 41 is coupled from the outside
of the auger 10. The sweeping plates 78 are, but not exclusively, provided at the
front of the tractor T in the embodiment of the present invention, and no sweeping
plates may be provided. In this case, part of the snow is once stepped on by the wheels
6 and 7 of the tractor T, but is collected with almost no trouble in general capacity
of the auger 10.
(Second Embodiment)
[0062] As shown in FIG. 9 to FIG. 12, a chassis 3 of a tractor T to which a snow removing
device S according to the embodiment is connected comprises connecting portions 1
for connecting an operating machine to the rear via links 4, and a PTO shaft 2 for
transmitting engine power to the operating machine. The connecting portions 1 of the
tractor T are provided at three places: the top, left, and right of the PTO shaft
2. The reference number 5 denotes a seat, the reference number 6 denotes front wheels,
and the reference number 7 denotes rear wheels. The snow removing device S according
to the embodiment is connected to the rear of the tractor T as one of operating machines.
[0063] Specifically, the snow removing device S according to the embodiment comprises an
auger 10, and an auger case 14 which covers the auger 10. The auger 10 comprises a
rotary main shaft 11 that is along the width direction of the tractor T, and one blade
12 and the other blade 13 which are helical and which are respectively fixed to the
rotary main shaft 11 on the left and right with respect to the center of the rotary
main shaft 11. The auger 10 is rotated around the rotary main shaft 11 in one direction
to collect snow to the center of the rotary main shaft 11. The auger case 14 comprises
a case body 15 which rotatably supports both ends of the rotary main shaft 11 of the
auger 10 and which exposes one side of the auger in a horizontal axis direction orthogonal
to the rotary main shaft 11 and which covers the other side of the auger. The auger
case 14 is provided with a guide path 18 which is open in a part corresponding to
the center of the rotary main shaft 11 of the auger 10 and which has a suction opening
16 to suck snow and a discharge opening 17. A shooter 19 in which the guide path 18
is formed and which has the discharge opening 17 at the end and which discharges snow
is provided so as to protrude in the case body 15. A blower 20 which sucks the collected
snow through the suction opening 16 and then discharges the snow through the discharge
opening 17 is rotatably provided in the suction opening 16 of the guide path 18 provided
in the case body 15.
[0064] A connecting body 30 which is connected to the connecting portions 1 of the tractor
T via links 4 is provided on the auger 10 side of the auger case 14. The connecting
body 30 comprises L-shaped frame bodies 31 which are formed by frames protruding toward
the auger 10 side from the top of the case body 15 of the auger case 14 and which
are located a predetermined distance apart from each other in the rotary main shaft
11 direction and which are fixed to the case body 15 at one end, for example, by welding
and which droop at the other end, an upper bridging rod 32 and lower bridging rod
33a laid between the frame bodies 31, and a central bridging rod 34 laid between the
upper part of the case body 15 and the upper bridging rod 32. Attachment portions
35 for the links 4 corresponding to the respective connecting portions 1 of the tractor
T are provided in the connecting body 30. The attachment portion 35 corresponding
to the connecting portion 1 at the top of the PTO shaft 2 is provided in the center
of the upper bridging rod 32, and the attachment portions 35 corresponding to the
left and right of the PTO shaft 2 are provided at the other ends of the respective
frame bodies 31. Because the connecting body 30 is the frame, the structure can be
simpler.
[0065] The auger case 14 is also provided a coupling portion 50a which is coupled to the
PTO shaft 2 of the tractor T to transmit the rotation of the PTO shaft 2 to the rotary
main shaft 11 of the auger 10 and a blower shaft of the blower 20. This coupling portion
50a is provided on the auger 10 side of the auger case 14, and comprises a coupling
shaft 41a which is provided across one blade 12 and the other blade 13 of the auger
10 and which has one end connected to the blower shaft 21 of the blower 20 and the
other end connected to the PTO shaft 2 via a coupling shaft 41. In this case, the
coupling shaft 41a of the coupling portion 50a is provided across one blade 12 and
the other blade 13 of the auger 10, so that the interference between the coupling
shaft 41 and the blades 12 and 13 of the auger 10 is certainly avoided, and assembly
is easier. A bearing 53a which supports the coupling shaft 41a is provided in the
connecting body 30. The bearing 53a is provided at the end of a support bar 53b provided
to suspend from the central bridging rod 34 of the connecting body 30. The coupling
shaft 41a is held by the bearing 53a and is therefore firmer. The coupling shaft 41
a is coupled to the coupling shaft 41 via a universal joint 43, and the coupling shaft
41 is also coupled to the PTO shaft 2 via a universal joint 44.
[0066] Furthermore, a rotational power transmission mechanism 60a, such as a chain power
transmission mechanism, which transmits the rotation of the blower shaft 21 of the
blower 20 to the rotary main shaft 11 of the auger 10 is provided outside the case
body 15 of the auger case 14. Because the rotational power transmission mechanism
60a takes out the rotation of the blower shaft 21 of the blower 20 and then transmits
the rotation to the rotary main shaft 11 of the auger 10, the power transmission efficiency
of the rotation is improved.
[0067] The snow removing device S according to the embodiment further comprises a pair of
sweeping plates 78 which are attached to the front of the tractor T and which sweep
snow present ahead of the front wheels 6 of the tractor T to the central side of the
vehicle width direction of the tractor T when the tractor T is driven forward.
[0068] Therefore, when this snow removing device S is connected to the tractor T, the auger
10 exposed from the auger case 14 is disposed in the rear of the tractor T so as to
be exposed toward the forward direction of the tractor T, and each of the connecting
portions 1 of the tractor T is connected to each of the attachment portions 35 of
the connecting body 30 of the auger case 14 via the link 4. Moreover, the PTO shaft
2 is coupled to the coupling shaft 41 a of the coupling portion 50a via the coupling
shaft 41. In this case, the coupling portion 50a is provided on the auger 10 side
of the auger case 14, and the connecting body 30 is provided on the auger 10 side
of the auger case 14, so that connection to the tractor T and coupling to the PTO
shaft 2 are easily conducted. Moreover, it is possible to connect the snow removing
device S to the tractor T without special processing or installation of a mechanism
on the tractor T side, so that costs can be reduced.
[0069] When snow is removed by the tractor T to which this snow removing device S is connected,
an operator drives the tractor T forward while facing forward and looking ahead as
shown in FIG. 9. As a result, the rotation is transmitted to the blower shaft 21 of
the blower 20 from the PTO shaft 2 via the coupling shaft 41 and the coupling shaft
41 a of the coupling portion 50a, and the rotation is further transmitted to the rotary
main shaft 11 of the auger 10 via the rotational power transmission mechanism 60a.
Thus, the snow is collected by the auger 10, and the collected snow is sucked and
then discharged by the blower 20.
[0070] In this case, because the sweeping plates 78 are provided at the front of the tractor
T, the snow present ahead of the front wheels 6 of the tractor T is swept to the central
side of the vehicle width direction of the tractor T when the tractor T is driven
forward. Thus, because the snow that may be stepped on by the wheels 6 and 7 of the
tractor T is drawn to the central side of the vehicle width direction of the tractor
T by the sweeping plates 78, the snow can be certainly collected by the auger 10.
The snow collected by the auger 10 passes under the chassis 3 of the tractor T and
reaches the auger 10 because the tractor T is driven forward.
[0071] In this removal of snow, the operator of the tractor T drives the tractor T forward
while facing forward and looking ahead, so that operability is high, and workability
can be significantly improved without any burden on the neck and shoulders because
the operator is facing forward.
[0072] The sweeping plates 78 are, but not exclusively, provided at the front of the tractor
T in the embodiment of the present invention, and no sweeping plates may be provided.
In this case, part of the snow is once stepped on by the wheels 6 and 7 of the tractor
T, but is collected with almost no trouble in general capacity of the auger 10.
(Third Embodiment)
[0073] As shown in FIG. 13 to FIG. 18, a chassis 3 of a tractor T to which a snow removing
device S according to the embodiment is connected comprises connecting portions 1
to connect an operating machine to the rear via links 4, and a PTO shaft 2 in which
an end to transmit engine power to the operating machine is formed by a spline shaft.
The connecting portions 1 of the tractor T are provided at three places: the top,
left, and right of the PTO shaft 2. The reference number 5 denotes a seat, the reference
number 6 denotes front wheels, and the reference number 7 denotes rear wheels. The
snow removing device S according to the embodiment is connected to the rear of this
tractor T as one of operating machines.
[0074] Specifically, the snow removing device S according to the embodiment comprises an
auger 10, and an auger case 14 which covers the auger 10. The auger 10 comprises a
rotary main shaft 11 that is along the width direction of the tractor T, and one blade
12 and the other blade 13 which are helical and which are respectively fixed to the
rotary main shaft 11 on the left and right with respect to the center of the rotary
main shaft 11. The auger 10 is rotated around the rotary main shaft 11 in one direction
to collect snow to the center of the rotary main shaft 11. The auger case 14 comprises
a case body 15 which rotatably supports both ends of the rotary main shaft 11 of the
auger 10 and which exposes one side of the auger in a horizontal axis direction orthogonal
to the rotary main shaft 11 and which covers the other side of the auger. The auger
case 14 is provided with a guide path 18 which is open in a part corresponding to
the central part of the rotary main shaft 11 of the auger 10 and which has a suction
opening 16 to suck snow and a discharge opening 17. A shooter 19 in which the guide
path 18 is formed and which has the discharge opening 17 at the end and which discharges
snow is provided so as to protrude in the case body 15.
[0075] A blower 20 which sucks the collected snow through the suction opening 16 and then
discharges the snow through the discharge opening 17 is rotatably provided in the
suction opening 16 of the guide path 18 provided in the case body 15. The blower 20
has a blower shaft 21 supported by the case body 15, and is provided with, at one
end 25, a blade 22 which takes in snow. The other end 23 which is on the other side
of the horizontal axis direction orthogonal to the rotary main shaft 11 of the blower
shaft 21 protrudes outward, and a further extended extension 24 is provided at this
other end 23. A later-described backward facing coupling portion 77 is formed in this
extension 24.
[0076] The auger case 14 is provided with a forward facing connecting body 30 which is connectable
to the connecting portions 1 of the tractor T at a forward facing position X where
the auger 10 exposed from the auger case 14 is disposed so as to be exposed toward
the forward direction of the tractor T. The forward facing connecting body 30 protrudes
toward the auger 10 side of the auger case 14, and is connected to the connecting
portions 1 of the tractor T via the links 4. Specifically, the forward facing connecting
body 30 comprises L-shaped frame bodies 31 which are formed by frames protruding toward
the auger 10 side from the top of the case body 15 of the auger case 14 and which
are located a predetermined distance apart from each other in the axial direction
of the rotary main shaft 11 and which are fixed to the case body 15 at one end, for
example, by welding and which droop at the other end, an upper bridging rod 32 laid
between the frame bodies 31, reinforcing rods 33 obliquely laid between both end sides
of the L-shaped frame bodies 31, and a lower bridging rod 33a laid between the frame
bodies 31. Attachment portions 35 for the links 4 corresponding to the respective
connecting portions 1 of the tractor T are provided in the forward facing connecting
body 30. The attachment portion 35 corresponding to the connecting portion 1 at the
top of the PTO shaft 2 is provided in the center of the upper bridging rod 32, and
the attachment portions 35 corresponding to the left and right of the PTO shaft 2
are provided at the other ends of the respective frame bodies 31. Because the forward
facing connecting body 30 is the frame, the structure can be simpler.
[0077] The auger case 14 is also provided with a power transmitting portion 90 which is
coupled to the PTO shaft 2 of the tractor T to transmit the rotation of the PTO shaft
2 to the rotary main shaft 11 of the auger 10 and the blower shaft 21 of the blower
20. The power transmitting portion 90 comprises a connecting shaft 91 which is connected
to one end 25 of the blower shaft 21 located on one side of the auger in a horizontal
axis direction orthogonal to the rotary main shaft 11 and which extends to the position
where the center of the rotary main shaft 11 is located, and a power transmission
box 92. As shown in FIG. 16, the power transmission box 92 comprises a power transmission
mechanism 93 which is provided in the center of the rotary main shaft 11 and which
can relatively transmit the rotation of the connecting shaft 91 to the rotary main
shaft 11, and a box main body 94 which is supported by the auger case 14 via a support
arm 34a and which houses the power transmission mechanism 93. The connecting shaft
91 and the rotary main shaft 11 pierce the box main body 94, and a later-described
link shaft 51 b is continuously provided in this connecting shaft 91. The power transmission
mechanism 93 comprises a master bevel gear 95 provided at the end of the connecting
shaft 91 in the box main body 94, a slave bevel gear 97 which meshes with the master
bevel gear 95 and which is provided on a rotary rod 96 supported by the box main body
94, a master spur gear 98 provided on the rotary rod 96, and a slave spur gear 99
which is provided on the rotary main shaft 11 and which meshes with the master spur
gear 98. The power transmission mechanism 93 decelerates the rotation of the connecting
shaft 91 and then transmits the rotation to the rotary main shaft 11.
[0078] A forward facing coupling portion 50b which is linked to the power transmission mechanism
93 and which is configured to be coupled to the PTO shaft 2 via a coupling shaft 41
is provided on one side of the power transmission box 92 in a horizontal axis direction
orthogonal to the rotary main shaft 11. The forward facing coupling portion 50b comprises
the link shaft 51b which is linked to the power transmission mechanism 93 in the power
transmission box 92 and to which the coupling shaft 41 is coupled at the end. The
link shaft 51 b has the proximal end continuously provided integrally with the connecting
shaft 91, and the distal side supported by a bearing 53 which is supported by the
auger case 14 via a support member 52a. The support member 52a is configured by the
lower bridging rod 33a laid between the frame bodies 31.
[0079] As shown in FIG. 15 and FIG. 17, the coupling shaft 41 comprises a rotary shaft 42,
and universal joints 43 respectively provided at both ends of the rotary shaft 42.
Joint portions 43a and 43b of the respective universal joints 43 are formed by spline
holes. One joint portion 43a meshes with the spline shaft at the end of the PTO shaft
2. An end 51c of the link shaft 51b is configured by a spline shaft which meshes with
the spline hole of the other joint portion 43b.
[0080] The auger case 14 is also provided with a backward facing connecting body 70 which
is connectable to the connecting portions 1 of the tractor T at a backward facing
position Y (FIG. 18) where the auger 10 exposed from the auger case 14 is disposed
so as to be exposed toward the backward direction of the tractor. The backward facing
connecting body 70 comprises a pair of first arms 72 which is provided so as to protrude
outward from the outer back surface of the auger case 14, and a pair of second arms
73 which extend from the ends of the respective first arms 72 and which have their
ends in close contact. One first arm 72 is reinforced by a reinforcing beam 71. Attachment
portions 75 for the links 4 corresponding to the respective connecting portions 1
of the tractor T are provided in the backward facing connecting body 70. The attachment
portions 75 corresponding to the left and right of the PTO shaft 2 are respectively
provided at the ends of the first arms 72, and the attachment portion 75 corresponding
to the connecting portion 1 at the top of the PTO shaft 2 is provided at the ends
of the second arms 73.
[0081] Furthermore, the power transmitting portion 90 is provided with the backward facing
coupling portion 77 which is connectable to the PTO shaft 2 via an additional coupling
shaft 76a (FIG. 18) having a different length that is formed at the backward facing
position Y in the same manner as described above. The backward facing coupling portion
77 is formed in the extension 24 which is extended at the other end 23 of the blower
shaft 21 of the blower 20, and is configured by a spline shaft which meshes with the
spline hole of the other joint portion of the additional coupling shaft 76a.
[0082] The snow removing device S according to the embodiment further comprises a pair of
sweeping plates 78 which are attached to the front of the tractor T and which sweep
snow present ahead of the front wheels 6 of the tractor T to the central side of the
vehicle width direction of the tractor T when the tractor T is driven forward.
[0083] Therefore, when the snow removing device S is connected to the tractor T, the auger
10 exposed from the auger case 14 is disposed at the forward facing position X in
the rear of the tractor T so as to be exposed toward the forward direction of the
tractor T, and each of the connecting portions 1 of the tractor T is connected to
each of the attachment portions 35 of the forward facing connecting body 30 of the
auger case 14 via the link 4. Moreover, the PTO shaft 2 is coupled to the forward
facing coupling portion 50b via the coupling shaft 41. In this case, the forward facing
connecting body 30 and the forward facing coupling portion 50b are used, so that connection
to the tractor T and coupling to the PTO shaft 2 are easily conducted. In particular,
the coupling shaft 41 is connected to the end of the link shaft 51 b of the forward
facing coupling portion 50b, so that the coupling shaft 41 can be coupled at a position
away from the auger 10, and the interference between the coupling shaft 41 and the
auger can be prevented. Moreover, it is possible to connect the snow removing device
S to the tractor T without special processing or installation of a mechanism on the
tractor T side, so that costs can be reduced. Furthermore, the coupling shaft 41 is
coupled to the power transmission box 92 provided in the center of the rotary main
shaft 11 to transmit the rotation of the PTO shaft 2 to the rotary main shaft 11 of
the auger 10 and the blower shaft 21 of the blower 20, so that the power transmitting
portion 90 does not need to be provided outside the auger case 14, and the device
can therefore be compact.
[0084] When snow is removed by the tractor T to which the snow removing device S is connected,
an operator drives the tractor T forward while facing forward and looking ahead as
shown in FIG. 13. As a result, the rotation is transmitted to the blower shaft 21
of the blower 20 from the PTO shaft 2 via the coupling shaft 41, the forward facing
coupling portion 50b, and the power transmitting portion 90, and the rotation is further
transmitted to the rotary main shaft 11 of the auger 10. Thus, the snow is collected
by the auger 10, and the collected snow is sucked and then discharged by the blower
20.
[0085] In this case, because the sweeping plates 78 are provided at the front of the tractor
T, the snow present ahead of the front wheels 6 of the tractor T is swept to the central
side of the vehicle width direction of the tractor T when the tractor T is driven
forward. Thus, because the snow that may be stepped on by the wheels 6 and 7 of the
tractor T is drawn to the central side of the vehicle width direction of the tractor
T by the sweeping plates 78, the snow can be certainly collected by the auger 10.
The snow to be collected by the auger 10 passes under the chassis 3 of the tractor
T and reaches the auger 10 because the tractor T is driven forward.
[0086] In this removal of snow, the operator of the tractor T drives the tractor T forward
while facing forward and looking ahead, so that operability is high, and workability
can be significantly improved without any burden on the neck and shoulders because
the operator is facing forward.
[0087] Next, another way of using the present snow removing device S is described. As shown
in FIG. 18, the snow removing device S is set so that the auger 10 exposed from the
auger case 14 is disposed at the backward facing position Y in the rear of the tractor
T so as to be exposed toward the backward direction of the tractor T, and each of
the connecting portions 1 of the tractor T is connected to each of the attachment
portions 75 of the backward facing connecting body 70 of the auger case 14 via the
link 4. Moreover, the PTO shaft 2 is coupled to the backward facing coupling portion
77 by the additional coupling shaft 76a. In this case, because the backward facing
coupling portion 77 is formed in the extension 24 extended at the rear end 23 of the
blower shaft 21 of the blower 20, coupling of the PTO shaft 2 via the coupling shaft
76 can be easier.
[0088] In this state, as heretofore, the operator removes snow by driving the tractor T
backward while facing backward and looking back. As a result, the rotation is transmitted
to the blower shaft 21 of the blower 20 from the PTO shaft 2 via the coupling shaft
76, the backward facing coupling portion 77, and the power transmitting portion 90,
and the rotation is further transmitted to the rotary main shaft 11 of the auger 10.
Thus, the snow is collected by the auger 10, and the collected snow is sucked and
then discharged by the blower 20. This is considerably advantageous to, for example,
a situation in which it is difficult to drive the tractor T forward because of deep
snow. That is, a method of removing snow can be selected at the backward facing position
Y as heretofore in accordance with the depth of snow and the environment of the place
where snow is to be removed, which can increase versatility.
[0089] The forward facing coupling portion 50b comprises, but not exclusively, the link
shaft 51 b in the embodiment of the present invention, and the coupling shaft 41 may
be directly connected to the power transmission box 92, and suitable changes may be
made. The sweeping plates 78 are, but not exclusively, provided at the front of the
tractor T in the embodiment of the present invention, and no sweeping plates may be
provided. In this case, part of the snow is once stepped on by the wheels 6 and 7
of the tractor T, but is collected with almost no trouble in general capacity of the
auger 10.
[Description of Reference Numbers]
[0090]
S: snow removing device
T: tractor
1: connecting portions
2: PTO shaft
3: chassis
4: links
5: seat
6: front wheels
7: rear wheels
10: auger
11: rotary main shaft
12: one blade
13: the other blade
14: auger case
15: case body
16: suction opening
17: discharge opening
18: guide path
19: shooter
20: blower
21: blower shaft
22: blade
23: rear end
24: extension
23a, 24a: universal joints
25: one end
X: forward facing position
30: forward facing connecting body
31: frame bodies
32: upper bridging rod
33: reinforcing rods
33a: lower bridging rod
34: central bridging rod
34a: support arm
35: attachment portions
40: power transmitting portion
41: coupling shaft, coupling rod
41 a: coupling shaft
42: rotary shaft
43: universal joints
43a, 43b: joint portions
44: universal joint
45: forward facing coupling portion
50: first power transmission mechanism
50a: coupling portion
50b: forward facing coupling portion
51: master rotary shaft
51 a: rear end
51 b: link shaft
51 c: end
52: support
52a: support member (lower bridging rod)
53, 53a: bearing
53b: support bar
54: blower shaft secondary power transmission mechanism (chain power transmission
mechanism)
55: perpendicular plate
56: sprockets
57: chain
58: first cover
59: second cover
60: second power transmission mechanism
60a: rotational power transmission mechanism
61: rotation axis direction converting mechanism
62: slave rotary shaft
63: main shaft secondary power transmission mechanism
64: cover
65: cover
Y: backward facing position
70: backward facing connecting body
71: reinforcing beam
72: first arms
73: second arms
75: attachment portions
76: coupling shaft
76a: additional coupling shaft
77: backward facing coupling portion
78: sweeping plates
80: second power transmission mechanism
81: rotation axis direction converting mechanism
82: slave rotary shaft
83: main shaft secondary power transmission mechanism
90: power transmitting portion
91: connecting shaft
92: power transmission box
93: power transmission mechanism
94: box main body
95: master bevel gear
96: rotary rod
97: slave bevel gear
98: master spur gear
99: slave spur gear
1. A snow removing device which is connected, as one of operating machines, to the rear
of a tractor that comprises connecting portions for connecting an operating machine
to the rear, and a PTO shaft for transmitting engine power to the operating machine,
comprising:
an auger which is rotated to collect snow;
an auger case which rotatably supports a rotary main shaft of the auger and which
exposes one side of the auger in a horizontal axis direction orthogonal to the rotary
main shaft of the auger and which covers the other side of the auger;
a blower which is provided in the auger case and which is rotated to discharge the
snow collected by the auger; and
a coupling portion which is provided in the auger case and which is coupled to the
PTO shaft of the tractor to transmit the rotation of the PTO shaft to the rotary main
shaft of the auger and a blower shaft of the blower,
wherein the coupling portion is provided on an auger side of the auger case, and
wherein a connecting body which is connected to the connecting portions of the tractor
is provided on the auger side of the auger case.
2. A snow removing device which is connected, as one of operating machines, to the rear
of a tractor that comprises connecting portions for connecting an operating machine
to the rear via links, and a PTO shaft for transmitting engine power to the operating
machine, comprising:
an auger in which one blade and the other blade that are helical are respectively
fixed to a rotary main shaft on the left and right with respect to the center of the
rotary main shaft that is along the width direction of the tractor and which is rotated
in one direction to collect snow to the center of the rotary main shaft;
an auger case which rotatably supports both ends of the rotary main shaft of the auger
and which exposes one side of the auger in a horizontal axis direction orthogonal
to the rotary main shaft and which covers the other side of the auger;
a guide path which is provided in the auger case and which is open in a part corresponding
to the center of the rotary main shaft of the auger and which has a suction opening
to suck snow and a discharge opening;
a blower which is rotatably provided in the suction opening of the guide path and
which sucks the collected snow through the suction opening and then discharges the
snow through the discharge opening; and
a coupling portion which is provided in the auger case and which is coupled to the
PTO shaft of the tractor to transmit the rotation of the PTO shaft to the rotary main
shaft of the auger and a blower shaft of the blower,
wherein the coupling portion is provided on the auger side of the auger case,
wherein the coupling portion comprises a coupling shaft which is provided across one
blade and the other blade of the auger and which has one end connected to the blower
shaft of the blower and the other end connected to the PTO shaft,
wherein a rotational power transmission mechanism which transmits the rotation of
the blower shaft of the blower to the rotary main shaft of the auger is provided outside
the auger case, and
wherein a connecting body which is connected to the connecting portions of the tractor
via the links is provided on the auger side of the auger case.
3. The snow removing device according to claim 2, characterized in that the connecting portions of the tractor are provided at the top, left, and right of
the PTO shaft, the connecting body is formed by a frame which protrudes toward the
auger side from the auger case, and attachment portions for the links corresponding
to the respective connecting portions are provided in the connecting body.
4. The snow removing device according to claim 3, characterized in that a bearing which supports the coupling shaft is provided in the connecting body.
5. The snow removing device according to any one of claims 1 to 4, characterized in that a sweeping plate which is attached to the front of the tractor is provided, and the
sweeping plate sweeps snow present ahead of the front wheels of the tractor to the
central side of the vehicle width direction of the tractor when the tractor is driven
forward.
6. A snow removing device which is connected, as one of operating machines, to the rear
of a tractor that comprises connecting portions for connecting an operating machine
to the rear, and a PTO shaft for transmitting engine power to the operating machine,
comprising:
an auger which is rotated to collect snow;
an auger case which rotatably supports a rotary main shaft of the auger and which
exposes one side of the auger in a horizontal axis direction orthogonal to the rotary
main shaft of the auger and which covers the other side of the auger;
a blower which is provided in the auger case and which is rotated to discharge the
snow collected by the auger; and
a power transmitting portion which is provided in the auger case and which is coupled
to the PTO shaft of the tractor to transmit the rotation of the PTO shaft to the rotary
main shaft of the auger and a blower shaft of the blower,
wherein the auger case is provided with a forward facing connecting body which is
connectable to the connecting portions of the tractor at a forward facing position
where the auger exposed from the auger case is disposed so as to be exposed toward
the forward direction of the tractor, and
wherein the power transmitting portion is provided with a forward facing coupling
portion which is configured to be coupled to the PTO shaft through the outside of
the auger via the coupling shaft at the forward facing position.
7. A snow removing device which is connected, as one of operating machines, to the rear
of a tractor that comprises connecting portions for connecting an operating machine
to the rear, and a PTO shaft for transmitting engine power to the operating machine,
comprising:
an auger in which one blade and the other blade that are helical are respectively
fixed to a rotary main shaft on the left and right with respect to the center of the
rotary main shaft that is along the width direction of the tractor and which is rotated
in one direction to collect snow to the center of the rotary main shaft;
an auger case which rotatably supports both ends of the rotary main shaft of the auger
and which exposes one side of the auger in a horizontal axis direction orthogonal
to the rotary main shaft and which covers the other side of the auger;
a guide path which is provided in the auger case and which is open in a part corresponding
to the center of the rotary main shaft of the auger and which has a suction opening
to suck snow and a discharge opening, a blower which is rotatably provided in the
suction opening of the guide path and which sucks the collected snow through the suction
opening and then discharges the snow through the discharge opening; and
a power transmitting portion which is provided in the auger case and which is coupled
to the PTO shaft of the tractor to transmit the rotation of the PTO shaft to the rotary
main shaft of the auger and a blower shaft of the blower,
wherein the auger case is provided with a forward facing connecting body which is
connectable to the connecting portions of the tractor at a forward facing position
where the auger exposed from the auger case is disposed so as to be exposed toward
the forward direction of the tractor, and
wherein the power transmitting portion is provided with a forward facing coupling
portion which is configured to be coupled to the PTO shaft through the outside of
the auger via the coupling shaft at the forward facing position.
8. The snow removing device according to claim 6 or 7, characterized in that the forward facing coupling portion is located on the upper side of the auger case.
9. The snow removing device according to claim 8, characterized in that the power transmitting portion comprises a first power transmission mechanism which
transmits rotation to the blower shaft of the blower, and a second power transmission
mechanism which transmits the rotation transmitted from the first power transmission
mechanism to the rotary main shaft of the auger, the first power transmission mechanism
comprises a master rotary shaft having the forward facing coupling portion at the
end thereof, and a blower shaft secondary power transmission mechanism which is provided
between the rear end of the master rotary shaft and the rear end of the blower shaft
and which includes at least one of a belt power transmission mechanism, a chain power
transmission mechanism, a frictional power transmission mechanism, and a gear power
transmission mechanism, and the first power transmission mechanism is affixed to the
outside of the auger case.
10. The snow removing device according to claim 9, characterized in that the second power transmission mechanism comprises a slave rotary shaft having one
end linked to the master rotary shaft of the first power transmission mechanism via
a rotation axis direction converting mechanism so that the rotation of the master
rotary shaft is transmitted thereto, and a main shaft secondary power transmission
mechanism which is provided between the rear end of the slave rotary shaft and the
end of the rotary main shaft of the auger and which includes at least one of a belt
power transmission mechanism, a chain power transmission mechanism, a frictional power
transmission mechanism, and a gear power transmission mechanism, the slave rotary
shaft is provided parallel to the rotary main shaft of the auger in the upper part
of the auger case, and the main shaft secondary power transmission mechanism is provided
along one side wall of the auger case.
11. The snow removing device according to any one of claims 6 to 10, characterized in that the connecting portions of the tractor are provided at the top, left, and right of
the PTO shaft, and the forward facing coupling portion is formed by a frame which
protrudes toward the auger side from the auger case, and attachment portions for the
links corresponding to the respective connecting portions are provided in the forward
facing coupling portion.
12. The snow removing device according to any one of claims 6 to 11, characterized in that the auger case is provided with a backward facing connecting body which is connectable
to the connecting portions of the tractor at a backward facing position where the
auger exposed from the auger case is disposed so as to be exposed toward the backward
direction of the tractor, and the power transmitting portion is provided with a backward
facing coupling portion which is connectable to the PTO shaft via a coupling shaft
at the backward facing position.
13. The snow removing device according to claim 7, characterized in that the backward facing coupling portion is formed in an extension extended at the rear
end of the blower shaft of the blower.
14. The snow removing device according to any one of claims 1 to 8, characterized in that a sweeping plate which is attached to the front of the tractor is provided, and the
sweeping plate sweeps snow present ahead of the front wheels of the tractor to the
central side of the vehicle width direction of the tractor when the tractor is driven
forward.
15. A snow removing device which is connected, as one of operating machines, to the rear
of a tractor that comprises connecting portions for connecting an operating machine
to the rear, and a PTO shaft for transmitting engine power to the operating machine,
comprising:
an auger to which one blade and the other blade that are helical are respectively
fixed on the left and right with respect to the center of the rotary main shaft that
is along the width direction of the tractor and which is rotated in one direction
to collect snow to the central side of the rotary main shaft;
an auger case which rotatably supports both ends of the rotary main shaft of the auger
and which exposes one side of the auger in a horizontal axis direction orthogonal
to the rotary main shaft and which covers the other side of the auger, a guide path
which is provided in the auger case and which is open in a part corresponding to the
central part of the rotary main shaft of the auger and which has a suction opening
to suck snow and a discharge opening;
a blower which is rotatably provided in the suction opening of the guide path and
which sucks the collected snow through the suction opening and then discharges the
snow through the discharge opening; and
a power transmitting portion which is coupled to the PTO shaft of the tractor to transmit
the rotation of the PTO shaft to the rotary main shaft of the auger and a blower shaft
of the blower,
wherein the auger case is provided with a forward facing connecting body which is
connectable to the connecting portions of the tractor at a forward facing position
where the auger exposed from the auger case is disposed so as to be exposed toward
the forward direction of the tractor, and
wherein the power transmitting portion comprises
a connecting shaft which is connected to one end of the blower shaft located on one
side of the auger in a horizontal axis direction orthogonal to the rotary main shaft,
a power transmission box which is provided in the center of the rotary main shaft
and which has a power transmission mechanism that is configured to relatively transmit
the rotation of the connecting shaft to the rotary main shaft and a box main body
that is supported by the auger case and that houses the power transmission mechanism,
and
a forward facing connecting body which is linked to the power transmission mechanism
and which is configured to be coupled to the PTO shaft via a coupling shaft is provided
on one side of the power transmission box in a horizontal axis direction orthogonal
to the rotary main shaft.
16. The snow removing device according to claim 15, characterized in that the forward facing coupling portion comprises a link shaft which is linked to the
power transmission mechanism in the power transmission box and to which the coupling
shaft is coupled at the end, and the link shaft is supported by a bearing which is
supported by the auger case via a support member.
17. The snow removing device according to claim 15 or 16, characterized in that the power transmission mechanism of the power transmission box comprises a master
bevel gear provided at the end of the connecting shaft, and a slave bevel gear which
meshes with the master bevel gear and which transmits rotation to the rotary main
shaft, and the link shaft is coupled to the connecting shaft.
18. The snow removing device according to any one of claims 15 to 17, characterized in that the connecting portions of the tractor are provided at the top, left, and right of
the PTO shaft, and the forward facing coupling portion is formed by a frame which
protrudes toward the auger side from the auger case, and attachment portions for the
links corresponding to the respective connecting portions are provided in the forward
facing coupling portion.
19. The snow removing device according to any one of claims 15 to 18, characterized in that the auger case is provided with a backward facing connecting body which is connectable
to the connecting portions of the tractor at a backward facing position where the
auger exposed from the auger case is disposed so as to be exposed toward the backward
direction of the tractor, and the power transmitting portion is provided with a backward
facing coupling portion which is connectable to the PTO shaft via a coupling shaft
at the backward facing position.
20. The snow removing device according to claim 19, characterized in that the backward facing coupling portion is provided at the other end of the blower shaft
located on the other side in the horizontal axis direction orthogonal to the rotary
main shaft.
21. The snow removing device according to any one of claims 15 to 20, characterized in that a sweeping plate which is attached to the front of the tractor is provided, and the
sweeping plate sweeps snow present ahead of the front wheels of the tractor to the
central side of the vehicle width direction of the tractor when the tractor is driven
forward.
22. A snow removing method to connect a snow removing device as one of operating machines
to the rear of a tractor to remove snow, the tractor comprising connecting portions
for connecting an operating machine to the rear, and a PTO shaft for transmitting
engine power to the operating machine, the snow removing method being characterized by comprising using the snow removing device according to any one of claims 1 to 21,
connecting the snow removing device so that the auger exposed from the auger case
is disposed in the rear of the tractor so as to be exposed toward the forward direction
of the tractor, and coupling the PTO shaft to the coupling portion or the forward
facing coupling portion, in which state snow is removed by the snow removing device
while the tractor is being driven forward.