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(11) | EP 1 389 600 A1 |
(12) | EUROPEAN PATENT APPLICATION |
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(54) | Method and apparatus for locating and conveying sheet-like body |
(57) A method for locating and conveying a veneer sheet includes: causing a downstream
end of a veneer sheet conveyed by a travelling conveying member to abut against a
blockingmember to correct the attitude of the veneer sheet in such a state that a
downstream end of the veneer sheet is perpendicular to the conveying direction of
the veneer sheet; and after moving the conveying member in a direction perpendicular
to the conveying direction until one side end of the veneer sheet perpendicular to
the conveying direction reaches a predetermined position and stopping the conveying
member, moving the blocking member to a position where the blocking member does not
abut against the veneer sheet. Accordingly, attitude correction of a veneer sheet
and locating thereof in the direction perpendicular to the conveying direction can
be performed effectively. |
Fig. 1 is a plan view of an apparatus of an embodiment according to the present invention;
Fig. 2 shows a portion of the apparatus of Fig. 1 as view in an A-A direction of Fig. 1;
Fig. 3 shows a portion of the apparatus of Fig. 1 as view in a B-B direction of Fig. 1;
Fig. 4 is a view for explaining an operation of the apparatus of the embodiment;
Fig. 5 is a view for explaining an operation of the apparatus of the embodiment;
Fig. 6 is a view for explaining an operation of the apparatus of the embodiment;
Fig. 7 is a view for explaining an operation of the apparatus of the embodiment;
Fig. 8 is a view for explaining an operation of the apparatus of the embodiment;
Fig. 9 is a view for explaining an operation of the apparatus of the embodiment
Fig. 10 is a view for explaining an apparatus of a partially modified embodiment;
Fig. 11 is a plan view of the apparatus of the partially modified embodiment;
Fig. 12 shows a portion of the apparatus of Fig. 11 as viewed in a D-D direction of Fig. 11.
Fig. 13 shows a portion of the apparatus of Fig. 11 as viewed in an E-E direction of Fig. 11;
Fig. 14 is a view for explaining an operation of the apparatus of the partially modified embodiment;
Fig. 15 is a view for explaining an operation of the apparatus of the partially modified embodiment;
Fig . 16 is a view for explaining an apparatus of a partially modified embodiment;
Fig. 17 is a view for explaining the apparatus of a partially modified embodiment;
Fig. 18 is a portion of the apparatus of Fig. 17 as viewed in an F-F direction of Fig. 17; and
Fig. 19 is a plan view for explaining a prior art.
1. In the above embodiment, the portions of the conveyors 31, 33 which support a veneer sheet are arranged so as to be positioned on substantially the same horizontal face, but such an arrangement can be employed that the portions of the conveyor 31 positioned on the upstream side in the conveying direction, which support a veneer sheet are higher than those of the conveyor 31 positioned on the downstream side in the conveying direction in order that a portion of a veneer sheet 30 which is positioned on the side of the blocking members 67 is inclined obliquely downward as shown in Fig. 10. By employing such an arrangement, a time elapsed from abutting of a veneer sheet 30 on the conveyors 31, 31 to one blocking member 67 to abutting thereof against the other blocking member 67 is shortened to further improve productivity.
2. In the embodiment, locating of a veneer sheet in the direction perpendicular to
the conveying direction thereof is performed by moving two conveyors 31 in their axial
central line directions by means of the moving mechanism constituted by the engagement
bodies 51, the joints 53, the arms 55, the connection rod 57, the motor 59, the detector
61 and the like, but the following constitution can be employed.
As shown with a plan view in Fig. 11, only one conveyor 31 movable in left and right
directions by a moving mechanism constituted by an engagement body 51, a joint 53,
an arm 55, a connection rod 57, a motor 59, a detector 61 or the like in the same
manner as the embodiment is provided and a conveyor 33 similar to that of the embodiment
is provided.
On the other hand, two pressing rolls 81, each of which holds a veneer sheet in cooperation
with one disc 31b of the conveyor 31 and can be opened, are provided above the conveyor
31 although not shown so as to be spaced from each other in left and right directions.
That is, as shown in Fig. 12 corresponding to a view as viewed in a D-D direction
in Fig. 11, the pressing rolls 81 which are rotatable relative to the shaft 84 provided
in a manner described later and are movable in their central line directions are arranged
so as to be positioned just above two discs 31b selected from the discs of each conveyor
31 when the pressing rolls 81 are positioned to the left ends of the shafts 84 by
compression springs 87 described later.
As shown in Fig. 13 corresponding to a view as viewed in an E-E direction in Fig.
11, each shaft 84 is fixed to a distal end of one of the two arms 83 rotatable about
the rotational shaft 83a, and the arm 83 is rotated together with the shaft 84 by
actuation of the cylinder 85.
Also, a resilient member whose strength has been considered, for example, a coil-like
compression spring 87, is provided in a state where it has been slightly deformed
in a compressed manner so as to cover the shaft 84 such that, when each pressing roll
81 is not subjected to an external force acting in a horizontal direction, the pressing
roll 81 is put at an initial state shown in Fig. 12, or it is positioned to the left
end of the shaft 84, and, when the conveyor 31 moves in the axial central line direction
in a state where a veneer sheet has been held between the pressing roll 81 and the
disc 31b, as described later, the pressing roll 81 can be moved together by a frictional
force received from the conveyor 31 via the veneer sheet.
Portions of this modified embodiment other than the above portions are constituted
in the same manner as those in the embodiment, and locating in the direction perpendicular
to the conveying direction are performed according to the following operations of
respective members.
Both the pressing rolls 81 are ascended by retracting operations of the cylinders
85 and they are caused to stand by, as shown in Fig. 13, the conveyors are caused
to stand by in the initial state shown in Fig. 12, and a veneer sheet 30 is conveyedby
the conveyors 31, 33 like the above embodiment. Then, after the downstream side end
of the veneer sheet 30 in the conveying direction abuts against the two blocking members
67 and the attitude of the veneer sheet is corrected, the blocking members 67 are
rotated in a direction of arrow to the outside of the conveying path by extending
operations of the cylinders 71, as shown in Fig. 14.
Also, simultaneously with the extending operations of the cylinders 71, the rods of
the respective cylinders 85 are extended to lower the pressing rolls 81 so that the
veneer sheet 80 is held between the discs 31b and the pressing rolls 81.
Next, the motor 59 is rotationally driven in an arrow direction like the embodiment
such that one conveyor 31 is moved in the direction of arrow X, as shown in Fig. 15.
The veneer sheet 30 is conveyed in the direction Y shown in Fig. 8 according to rotation
of the discs 31b and it is also moved in the direction X according to movement of
the discs 31b to the direction X. For this reason, the pressing rolls 81 which have
been brought into pressure-contact with the veneer sheet 30 are rotated by frictional
force from the veneer sheet 30 and they are moved in the direction X along the shafts
84 together with the veneer sheet 30 while deforming the compression springs 87 in
a compressing manner.
Next, when the detector 65 detects the right side end portion of the veneer sheet
30 moving in the direction Y shown in Fig. 7 and in the direction X, a detection signal
is input to the controller and the motor 59 is stopped according to a signal from
the controller. As a result, the locating of the veneer sheet 30 in the direction
perpendicular to the conveying direction is performed.
Next, when the upstream side end of the veneer sheet 30 in the conveying direction
passes the detector 63 according respective operations similar to those in the embodiment,
any detection signal is not outputted from the detector 63 to the controller such
that the motor 59 is rotationally driven according to a signal outputted from the
controller and the rods of the cylinders are retracted to ascend the pressing rolls
81 from the state shown in Fig. 14. Like the embodiment, the conveyor 31 is moved
to the initial state and is caused to stand by, and the pressing rolls 81 are returned
back to one end of the initial state along the shafts 84 by forces of the compression
springs 87 because external forces acting in a horizontal direction is cancelled.
In the above modified embodiments, since the veneer sheet 30 is moved in the conveying
direction and in the direction perpendicular thereto in the state where it has been
held between the discs 31b and the pressing rolls 81, the magnitude or valve of the
frictional force acting from the discs 31b to the veneer sheet 30 can be increased
such that accelerations to both the directions can be increased and productivity can
further be improved by moving the veneer sheet in a shorter time.
3. In the modified embodiment where the pressing rolls 81 are provided, respective
cylinders may be used as the returning members instead of the resilient members such
as compression springs 87 or the like.
That is, as shown in Fig. 16, a cylinder 82 provided at its rod 82b extendable/retractable
in directions of arrows with a plate 82a in a state where the plate can abut against
the pressing roll 81, and the cylinder 82 is rotated together with the arm 83 according
to actuation of the cylinder 85.
In this case, in a state that the cylinder 82 has been retracted to retreat the rod
82b each time when the conveyor 31 returns back to the left side initial state shown
in Fig. 16, when the conveyor 31 which has held the veneer sheet in cooperation with
the pressing rolls 81 moves in the direction perpendicular to the conveying direction,
namely, it moves in the right direction on Fig. 16 such that the pressing rolls 81
are moved in the right direction in the above-described manner, the pressing rolls
81 do not come in contact with the plates 82a and they are not subjected to any resistance
from the plates 82a.
On the other hand, after the veneer sheet 30 held between the conveyor 31 and the
pressing rolls 81 moves in the right direction and the detector 65 detects the right
side end portion of the veneer sheet 30, when the upstream side end or the trailing
end of the veneer sheet 30 in the conveying direction passes below the detector 63
according to respective operations similar to those in the above-described embodiment,
the cylinder 85 effects its retracting operation according to a signal from the controller
and the cylinder 82 effects its extending operation slightly thereafter. Thereby,
the pressing rolls 81 ascend and then the plates 82a move to the right side in Fig.
16 such that the plates 82a abuts against the pressing rolls 81 to move the pressing
rolls 81 along the axes 84 to their original positions on the left side.
Also, in order to prevent the pressing rolls 81 with a veneer sheet held in cooperation
with the conveyor 31, which are moving in the direction perpendicular to the conveying
direction from coming in contact with the plates 82a, such a timing can be employed
as a timing for retracting the cylinders 82 that the pressing rolls 81 are descended
for holding a veneer sheet in cooperation with the conveyor 31 and simultaneously
the rod 82b are retracted.
4. In the above modified embodiment, the pressing rolls 81 holding a veneer sheet
in cooperation with the conveyor 31 are provided as separate members , but the following
constitution can be employed.
That is, as shown in Fig. 17 which is a partial front view corresponding to Fig. 12
and in Fig. 18 as viewed in an F-F direction of Fig. 17, a left side lower end of
a gate-like auxiliary stand 91 is coupled to the engagement body 51 described in Figs.
11 and 12, a right side lower end thereof is coupled to a shaft 31a of the conveyor
31 via a bearing (not shown), and a guide member (not shown) is provided such that
the auxiliary stand 91 is always positioned at an illustrated position above the conveyor
31 and it is movable in left and right directions in Fig. 17.
A mounting stand 91a for arranging the pressing roll 81 just above one disc 31b is
provided so as to extend in a vertically at a proper position in left and right directions
in Fig. 17. An arm 93 rotatable about a shaft 93a is generally horizontally mounted
to the mounting stand 91a, the arm 93 is provided at its right end with a pressing
roll 81 similar to the above and is connected at an upper end of its left end to a
distal end of a rod of a cylinder 95 coupled to the mounting stand 91a. As a result,
the pressing roll 81 is reciprocated between a position where it holds a single in
cooperation with the disc 31b and a position where it is separated from the veneer
sheet according to retracting and extending operations.
In such a constitution, when a veneer sheet is conveyed in the direction perpendicular
to the conveying direction, since the disc 31b, or the conveyor 31 and the pressing
roll 81 are moved together with the conveyor 31, the movement of the veneer sheet
is conducted almost without any resistance, and returning members such as the compression
spring 87, the cylinder 82 and the like can be omitted.
5. In the above-described embodiment and modified embodiments, after the attitude
of a veneer sheet has been corrected, for example, as shown in Fig. 7, a veneer sheet
30 is conveyed in the direction of arrow Y by extending the rods of the cylinders
71 to rotate the blocking members 67 in the direction of arrow to the outside of the
conveying path and simultaneously it is conveyed in the direction of arrow X by rotationally
driving the motor 59 shown in Fig. 8 to move the conveyors 31, which are rotating
via the connection rod 57, the arms 55, the joints 53 and the engagement bodies 51,
in the direction of arrow X.
Meanwhile, such a constitution can be employed that, after the attitude of a veneer
sheet has been corrected, the blocking members 67 are first rotated in the direction
of arrow to the outside of the conveying path to start conveyance of the veneer sheet
30 in the direction of arrow Y, and the motor 59 is then rotationally driven to move
the conveyors 31 in the direction of arrow Y.
Also, such a constitution can be employed that, after the attitude of a veneer sheet
30 has been corrected, the motor 59 is first rotationally driven to start movement
of the conveyors 31 in the direction of arrow X and the blocking members 67 are then
rotated to the outside of the conveying path to convey the veneer sheet 30 in the
direction of arrow Y.
6. In the above-described embodiment and modified embodiments, the conveyor 31 serving
as the conveying member is always put in a rotating state, but it may be constituted
such that it can be rotationally driven and stopped.
That is, in the modified embodiments explained with reference to Figs. 15, 16, for
example, the conveyor 31 is constituted so as to be capable of being rotationally
driven and stopped, in which respective members are operated in the following manner.
After the veneer sheet conveyed by the conveyor 31 abuts against two blocking members
67 and the attitude thereof is corrected like the above-described embodiment, the
conveyor 31 is first stopped so that conveyance of the veneer sheet is suspended.
Next, after the pressing rolls 81 are descended to hold the veneer sheet in cooperation
with the conveyor 31, the blocking members 67 are moved out of the conveying path.
Then, rotational driving of the conveyor 31 is restarted and the conveyor 31 is moved
in a direction perpendicular to the conveying direction of the veneer sheet so that
locating of the veneer sheet in the direction X is completed. Thereafter, movement
of the conveyor 31 in the direction perpendicular to the conveying direction is suspended.
Next, when the detector 63 detects that the veneer sheet held has passed through a
predetermined position, the pressing rolls 81 are ascended according to a signal from
the detector 63, and the conveyor 31 is then moved to its original or home position
in a direction inverse to the direction perpendicular to the conveying direction.
With such a configuration, the correction of the attitude of the veneer sheet can
be performed excellently and effectively.
7. When the pressing roll 81 and the disc 31d of the conveyor 31 holding a veneer sheet therebetween are constituted to be wider in the axial central line direction than those in the embodiment and proj ecting portions are formed on peripheral faces of the pressing roll 81 and the disc 31b, locating of a veneer sheet can further securely be performed.
8. In the above embodiments, the conveyor 31 has been shown as one example of the conveying member, but such a constitution can be employed in this invention that a running or travelling body or member such as a belt, a chain or the like, which travels in the conveying direction of the veneer sheet is entrained between sprockets and the running body is movable in the direction perpendicular to the conveying direction like the above embodiments.
causing a downstream side end portion of a sheet-like body conveyed by a travelling conveying member to abut against a blocking member to correct the attitude of the sheet-like body in such a state that the downstream side end of the sheet-like body is perpendicular to the conveying direction of the sheet-like body;
moving the conveying member in a direction perpendicular to the conveying direction until one side end of the sheet-like body in the direction perpendicular to the conveying direction reaches a predetermined position and stopping movement of the conveying member in the direction perpendicular to the conveying direction; and
moving the blocking member to a position where the blocking member does not abut against the sheet-like body.
causing a downstream side end portion of a sheet-like body conveyed by a travelling conveying member to abut against a blocking member to correct the attitude of the sheet-like body in such a state that the downstream side end portion of the sheet-like member is perpendicular to the conveying direction of the sheet-like body;
moving the blocking member to a position where the blocking member does not abut against the sheet-like body; and
moving the conveying member in the direction perpendicular to the conveying direction until one side end of the sheet-like body in the direction perpendicular to the conveying direction reaches a predetermined position.
causing a downstream side end of a sheet-like body conveyed by a travelling conveying member to abut against a blocking member to correct the attitude of the sheet-like body in such a state that the downstream side end of the sheet-like body is perpendicular to the conveying direction of the sheet-like body; and
stopping travelling of the conveying member to move the conveying member in a direction perpendicular to the conveying direction until one side end of the sheet-like body in the direction perpendicular to the conveying direction reaches a predetermined position;
moving the blocking member at a position where the blocking member does not abut on the sheet-like body; and
restarting travelling of the conveying member.
causing a downstream side end of a sheet-like body conveyed by a travelling conveying member to abut against a blocking member to correct the attitude of the sheet-like body in such a state that the downstream side end of the sheet-like body is perpendicular to the conveying direction of the sheet-like body;
moving the blocking member at a position where the blocking member does not abut on the sheet-like body;
stopping travelling of the conveying member;
moving the conveying member in the direction perpendicular to the conveying direction until one side end of the sheet-like body in the direction perpendicular to the conveying direction reaches a predetermined position;
stopping the conveying member; and
restarting travelling of the conveying member.
causing a downstream side end of a sheet-like body conveyed by a travelling conveying member to abut against a blocking member to correct the attitude of the sheet-like member in such a state that the downstream side end of the sheet-like member is perpendicular to the conveying direction of the sheet-like member;
stopping travelling of the conveying member;
moving the conveying member in the direction perpendicular to the conveying direction until one side end portion of the sheet-like body in the direction perpendicular to the conveying direction reaches a predetermined position to stop the conveying member;
moving the blocking member at a position where the blocking member does not abut against the sheet-like body; and
restarting travelling of the conveying member.
a conveying member which conveys a sheet-like body in a conveying direction by travelling thereof and which can reciprocate in an X direction perpendicular to the conveying direction;
a moving mechanism which reciprocates the conveying member in the X direction;
a blocking member which can reciprocate between a position where the blocking member abuts against the sheet-like body conveyed in the conveying direction by the conveying member to block conveyance of the sheet-like body and a position where the blocking member allows passing of the sheet-like body;
a first detector which detects whether or not the downstream side end of the sheet-like body is positioned to abut against the blocking member which stands by at a position where the blocking member prevents the conveyance;
a second detector which detects that one side end of the sheet-like body in the direction perpendicular to the conveying direction of the sheet-like body has reached the predetermined position by movement of the conveying member in the X direction effected by actuation of the moving mechanism;
a controller which performs such control that both of moving the blocking member at the position where the blocking member allows passing of the sheet-like body and actuating the moving mechanism to move the conveying member in the X direction are simultaneously performed or either one thereof is first performed on the basis of a signal form the first detector which has detected the downward side end of the sheet-like body conveyed by the conveying member in the state where the blocking member stands by at the position where the blocking member prevents the conveyance, and
the moving mechanism is then stopped on the basis of a signal from the second detector which has detected the sheet-like body.
a conveying member which conveys a sheet-like body in a conveying direction by travelling, and can stop and reciprocate in an X direction perpendicular to the conveying direction;
a moving mechanism which reciprocates the conveying member in the X direction;
a blocking member which can reciprocate between a position where the blocking member abuts against the sheet-like body conveyed in the conveying direction by the conveying member to block conveyance of the sheet-like body and a position where the blocking member allows passing of the sheet-like body;
a first detector which detects whether or not the downstream side end of the sheet-like body is positioned to abut against the blocking member which stands by at a position where the blocking member prevents the conveyance;
a second detector which detects that one side end of the sheet-like body in the direction perpendicular to the conveying direction of the sheet-like body has reached the predetermined position by movement of the conveying member in the X direction effected by actuation of the moving mechanism; and
a controller which performs such control that travelling of the conveying member is stopped on the basis of a signal from the first detector which has detected the downstream side end of the sheet-like body conveyed by the conveying member in the state where the blocking member stands by at the position where the blocking member prevents the conveyance,
whereby after the blocking member has been moved at the position where the blocking member allows passing of the sheet-like body, restarting travelling of the conveying member and activating the moving mechanism to move the conveying member in the X direction are simultaneously performed or either one thereof is first performed, and the moving mechanism is stopped on the basis of a signal from the second detector which has detected the sheet-like body.
a conveying member which conveys a sheet-like body in a conveying direction by travelling, and can stop and reciprocate in an X direction perpendicular to the conveying direction;
a moving mechanism which reciprocates the conveying member in the X direction;
a blocking member which can reciprocate between a position where the blocking member abuts against the sheet-like body conveyed in the conveying direction by the conveying member to block conveyance of the sheet-like body and a position where the blocking member allows passing of the sheet-like body;
a first detector which detects whether or not the downstream side end of the sheet-like body is positioned to abut against the blocking member which stands by at a position where the blocking member prevents the conveyance;
a second detector which detects that one side end of the sheet-like body in the direction perpendicular to the conveying direction of the sheet-like body has reached the predetermined position by movement of the conveying member in the X direction effected by actuation of the moving mechanism; and
a controller which performs such control that travelling of the conveying member is stopped on the basis of a signal from the first detector which has detected the downstream side end of the sheet-like body conveyed by the conveying member in the state where the blocking member stands by at the position where the blocking member prevents the conveyance,
whereby after the blocking member has been moved at the position where the blocking member allows passing of the sheet-like body, the moving mechanism is actuated to move the conveying member in the X direction, and after the moving mechanism is stopped on the basis of a signal from the second detector which has detected the sheet-like body, travelling of the conveying member is restarted.