FIELD OF THE INVENTION
[0001] This invention relates in general to pool cleaners. In particular, this invention
relates to a method of operating a pool cleaner according to the preamble of claim
1, and to a guiding apparatus for operating a pool cleaner according to the preamble
of claim 3.
BACKGROUND TO THE INVENTION
[0002] Pool cleaners, such as pool cleaners widely in use to clean swimming pools, pass
water from a head in a pool cleaner body via a hose into and through a pump system
of the pool. The flow stream of water is cyclically interrupted in the pool cleaner
body which causes a corresponding, cyclic stop - start motion in the body and in turn
causes a cyclic water hammer action and a cyclic to and fro motion in the hose. This
hose is at least slightly resilient in a longitudinal direction such that its end,
remote from the pool cleaner body, can be fixed to a rigid connecting member of a
pump system. Said stop - start motion causes a pool cleaner body to move generally
along the line of the hose portion proximate the body. Various ways and means are
provided to cause the pool cleaner body to follow a random path and not a pattern
such that the whole of the submerged pool surface is covered.
[0003] However, the Inventor has identified two problems in the kind of pool cleaner described.
Firstly, the movement of the body is not in practice entirely random and follows a
pattern which may be caused by a specific pool layout such that some portions of the
submerged surface are covered excessively while other portions are neglected or not
covered at all. Secondly, it does happen that a steady state condition comes about,
especially when the body is in a corner of the pool, and the body gets stuck in one
position.
[0004] The Inventor is aware of International Patent Application
PCT/US98/10628 published under
WO 98/53164. However, the apparatus described by this patent suffers from the disadvantages of
being relatively flimsy and unnecessarily bulky. Furthermore, this apparatus has parts
of the working mechanism thereof uncovered which is not only aesthetically displeasing
but may be dangerous to users of the pool and may also lead to a reduced working lifetime
of the apparatus. Yet further, this apparatus must be anchored to a weir of the pool
in order to operate.
SUMMARY OF THE INVENTION
[0005] According to a first aspect of the invention there is provided a method of operating
a pool cleaner which pool cleaner, in use, passes water from a head in a pool cleaner
body via a hose into and through a pump system of a pool, the flow stream of water
being cyclically interrupted in the pool cleaner body to cause a stop - start motion
in the body and a cyclic water hammer action and to and fro motion in the hose, the
method including the steps of:
connecting a housing to the hose of the pool cleaner so that front and rear parts
of the housing are arranged substantially in line with each other in substantially
the direction in which the hose is received by the housing; and
mechanically, continually or continuously pivoting the front and rear parts in relation
to each other in order to influence movement of the body of the pool cleaner accordingly.
[0006] By "mechanically" is meant that the step is effected "non-manually".
[0007] The pivoting of the front and rear parts in relation to each other may occur in a
cyclical oscillating manner.
[0008] The pivoting of the front and rear parts in relation to each other may occur in a
substantially sideways manner.
[0009] The method may include the step of harnessing the to and fro motion of the hose in
order to pivot the front and rear parts in relation to each other.
[0010] According to a second aspect of the invention there is provided a guiding apparatus
for use in operating a pool cleaner which pool cleaner, in use, passes water from
a head in a pool cleaner body via a hose into and through a pump system of a pool,
the flow stream of water being cyclically interrupted in the pool cleaner body to
cause a stop - start motion in the body and a cyclic water hammer action and to and
fro motion in the hose, the apparatus including
a housing configured for connection to the hose of the pool cleaner, the housing including
front and rear parts configured to pivot, in use, in relation to each other;
a driven member housed within the housing and arranged to be driven by the to and
fro motion of the hose; and
a transducer housed within the housing, connected to the driven member, and adapted
to transduce motion of the driven member to motion to be imparted to pivot the front
and rear parts in relation to each other.
[0011] The apparatus may be configured to receive the hose of the pool cleaner through the
housing. The housing may include outer connection means for connection to an outer
surface of the hose of the pool cleaner.
[0012] Otherwise the apparatus may include a flexible pipe configured for connection to
an end of the hose of the pool cleaner, the end of the hose being an end opposite
the body of the pool cleaner. The pipe may be configured for connection to the pump
system of the pool so that the pipe is able to pass water from the hose of the pool
cleaner into and through the pump system of the pool.
[0013] The front and rear parts may be configured to pivot, in use, in relation to each
other about a zone of contact between the front and rear parts.
[0014] The driven member may include a ratchet and an arm, a first end of the arm being
connected to the ratchet to drive the ratchet. The arm may be configured to hang,
in use, under the influence of gravity from the ratchet so that the to and fro motion
of the hose, in use, causes the arm to rotate the ratchet thereby driving the ratchet.
[0015] A lower portion of the arm opposite the first end of the arm may be weighted so that,
in use, the to and fro motion of the hose causes the ratchet to move to and fro while
a free end of the lower portion remains relatively still which in turn causes the
arm to rotate the ratchet thereby driving the ratchet. The arm may be in the form
of a cradle hanging from the ratchet, a lower portion of the cradle being weighted
so as to remain relatively still during the to and fro motion of the hose.
[0016] The ratchet may include a releasable connection device adapted to releasably connect
to the first end of the arm in order to turn the ratchet in one direction when motion
of the arm is in a first direction, and to disconnect the arm from the ratchet when
motion of the arm is in a second direction opposed to the first direction.
[0017] The ratchet may include a releasable check device arranged to allow turning of the
ratchet in said one direction only and to check the ratchet against rotation in a
direction opposed to said one direction.
[0018] The transducer may include
an axle for the ratchet, the axle being connected in a fixed manner to the ratchet
so that the ratchet, in use, drives the axle; and
a driven wheel having an axle, the driven wheel and the ratchet axle being configured
so that the ratchet axle rotates the driven wheel about the driven wheel axle when
the ratchet axle is driven by the ratchet.
[0019] The wheel may be a cog wheel and the ratchet axle may include a worm gear which co-operates
with the cog wheel in order to rotate, in use, the cog wheel about the driven wheel
axle.
[0020] In a first embodiment of the invention, the driven wheel may include a protrusion
from a side surface of the driven wheel, the protrusion extending substantially parallel
to the driven wheel axle and spaced a predetermined distance from the driven wheel
axle.
[0021] Either one of the front or rear parts may include a slot extending substantially
longitudinally within such part, the slot being shaped and configured for receiving
the protrusion of the driven wheel thereby limiting movement of the protrusion to
to and fro movement within the slot so that rotation of the driven wheel about the
driven wheel axle causes the front and rear parts to pivot in relation to each other.
[0022] It is to be appreciated that rotation of the driven wheel about the driven wheel
axle causes the protrusion to exert a cyclical, oscillating, lateral force to said
front or rear part by way of the slot which in turn causes the front and rear parts
to pivot in relation to each other.
[0023] The housing may be shaped and configured so as to receive the hose of a pool cleaner,
or a flexible pipe connectable to an end of the hose of a pool cleaner, there through.
[0024] The housing is typically elongate in shape.
[0025] The housing may comprise
a mounting member on which the driven member and the transducer are mounted; and
an outer casing.
[0026] The mounting member and outer casing may be connected to each other by way of at
least one hinge.
[0027] The outer casing may be configured to allow for pivoting of the front and rear parts
in relation to each other.
[0028] The outer casing may include
front, middle, and rear portions which are made from a rigid material; and
two intermediate flexible portions located intermediate the front and middle portions
of the casing and the middle and rear portions of the casing, respectively, so that
the front and rear portions of the casing are able to pivot in relation to each other.
[0029] In a second embodiment of the invention, the transducer may include a hinged elongate
member, wherein a first end of the elongate member is connected to a part of the outer
casing associated with the front part of the housing, the connection being made at
a pre-selected distance from a first hinge connecting the mounting member to the part
of the outer casing associated with the front part of the housing;
a second end of the elongate member is connected to a part of the outer casing associated
with the rear part of the housing, the connection being made at a pre-selected distance
from a second hinge connecting the mounting member to the part of the outer casing
associated with the rear part of the housing; and
the hinge of the elongate member is connected to the driven wheel at a predetermined
distance from the driven wheel axle, so that, in use, rotation of the driven wheel
is translated to substantially longitudinal to and fro motion of the elongate member
resulting in pivoting of the part of the outer casing associated with the front part
of the housing in relation to the part of the outer casing associated with the rear
part of the housing.
[0030] The elongate member may include at least one transversely extending indent allowing
resilient bending of the elongate member about the indent. This feature allows the
elongate member to absorb at least a part of an impact applied to the guiding apparatus
thereby reducing damage resulting from such impact.
[0031] The transducer may include at least one intermediate wheel configured intermediate
the driven member and the driven wheel, the at least one intermediate wheel being
driven by the driven member and being configured to in turn drive the driven wheel
at a slower rate than if the driven member were to drive the driven wheel directly.
The at least one intermediate wheel may be cogged. The at least one intermediate wheel
may be configured so that the front and rear parts pivot in relation to each other
at a period of about 30 minutes.
[0032] It is to be appreciated that rotation of the driven wheel about the driven wheel
axle causes the elongate member to exert a cyclical, oscillating, torsion force between
the part of the outer casing to which the first end of the elongate member is connected
and the mounting member about the first hinge as well as a cyclical, oscillating,
torsion force between the part of the outer casing to which the second end of the
elongate member is connected and the mounting member about the second hinge which
in turn causes the part of the outer casing associated with the front part of the
housing to pivot in relation to the part of the outer casing associated with the rear
part of the housing.
[0033] The apparatus may include a rigid guiding member having one part pivotally connected
to the rear part of the housing and another part configured for pivotal connection
to a weir of the pool, which rigid guiding member aids in influencing the movement
of the body of the pool cleaner so as to reduce the possibility of the body of the
pool cleaner getting stuck in a corner of the pool. The rigid guiding member may be
V - shaped having the point thereof configured for pivotal connection to the weir
of the pool and the two ends thereof pivotally connected to opposite sides of the
rear part of the housing.
DETAILED DESCRIPTION OF THE INVENTION
[0034] The invention will now be described, by way of non-limiting example, with reference
to the accompanying diagrammatic drawings wherein
Figure 1 shows, in sectioned side view, a first embodiment of a guiding apparatus
in accordance with the invention;
Figures 2 and 3 show an isometric, partially transparent view of the guiding apparatus
of Figure 1;
Figure 4 shows an isometric, partially transparent view of the guiding apparatus of
Figures 1 to 3 when provided with a flexible pipe;
Figure 5 shows, in isometric view, the guiding apparatus of Figures 1 to 4 when enclosed
by a flexible outer casing;
Figure 6 shows, in isometric view, a second embodiment of a guiding apparatus in accordance
with the invention;
Figure 7 shows an exploded view of the guiding apparatus of Figure 6;
Figure 8 shows, in isometric view, the guiding apparatus of Figures 6 and 7 when housed
within a lower portion of an outer casing;
Figure 9 shows, in isometric view, the guiding apparatus of Figures 6 and 7 when completely
enclosed within an entire outer casing; and
Figure 10 shows an exploded view of the casing of Figure 9.
[0035] With particular reference to Figures 1 to 5, reference numeral 10 generally indicates
a guiding apparatus. The apparatus 10 is for use in operating a pool cleaner which,
in use, passes water from a head in a pool cleaner body via a hose into and through
a pump system of the pool. The flow stream of water is cyclically interrupted in the
pool cleaner body to cause a stop - start motion in the body and a cyclic water hammer
action and longitudinal to and fro motion in the hose.
[0036] The apparatus 10 includes an elongate housing configured for connection to the hose
of the pool cleaner at a position remote from the body of the pool cleaner. The housing
has front and rear parts 12, 14 arranged substantially in line with each other in
the direction in which the hose is received. The front and rear parts 12, 14 are configured
to pivot in relation to each other about a zone of contact between the front and rear
parts 12, 14. In this embodiment of the invention, the zone of contact is defined
by cooperating teeth 16, 18 of the front and rear parts 12, 14 respectively.
[0037] The apparatus 10 also includes a driven member housed within the housing and arranged
to be driven by the to and fro motion of the hose. The driven member includes a ratchet
20 and an arm 22. A first end of the arm 22 is connected to the ratchet 20 to drive
the ratchet 20. The arm 22 is configured to hang under the influence of gravity from
the ratchet 20 so that the to and fro motion of the hose causes the arm 22 to rotate
the ratchet 20. A free end of the arm 22 opposite the first end of the arm 22 is weighted
so that, in use, the to and fro motion of the hose causes the ratchet 20 to move to
and fro while the free end of the arm 22 remains relatively still which causes the
arm 22 to rotate the ratchet 20 thereby driving the ratchet 20.
[0038] The arm 22 is typically in the form of a cradle hanging from the ratchet 20, a lower
portion of the cradle being made from lead so as to weight the free end of the arm
22 to remain relatively still during the to and fro motion of the hose.
[0039] The ratchet 20 includes a releasable connection device adapted to releasably connect
to the first end of the arm 22 in order to turn the ratchet 20 in one direction when
motion of the arm 22 is in a first direction, and to disconnect the arm 22 from the
ratchet 20 when motion of the arm 22 is in a second direction opposed to the first
direction. The ratchet 20 also includes a releasable check device arranged to allow
turning of the ratchet 20 in said one direction only and to check the ratchet 20 against
rotation in a direction opposed to said one direction.
[0040] The apparatus 10 further includes a transducer housed within the housing, connected
to the driven member, and adapted to transduce motion of the driven member to motion
to be imparted to pivot the front and rear parts 12, 14 in relation to each other.
[0041] The transducer includes an axle 24 for the ratchet 20. The ratchet axle 24 is connected
in a fixed manner to the ratchet 20 so that the ratchet 20 drives the ratchet axle
24. The transducer also includes a driven wheel 26 having a driven wheel axle (not
shown in Figures 1 to 5). The wheel 26 and the ratchet axle 24 are configured so that
the ratchet axle 24 rotates the wheel 26 about the driven wheel axle when the ratchet
axle 24 is driven by the ratchet 20. The wheel 26 is typically in the form of a cog
wheel and the ratchet axle 24 typically includes a worm gear (not shown) which co-operates
with the wheel 26 in order to rotate the wheel 26 about the driven wheel axle.
[0042] In the embodiment of the invention shown in Figures 1 to 5, the wheel 26 includes
a protrusion 28 from a side surface of the wheel 26. The protrusion 28 extends substantially
parallel to the driven wheel axle and is spaced a predetermined distance from the
driven wheel axle. The rear part 14 includes a slot 30 extending substantially longitudinally
within the rear part 14 substantially in the direction in which the hose is received.
The slot 30 is shaped and configured for receiving the protrusion 28 thereby limiting
movement of the protrusion 28 to to and fro movement within the slot 30.
[0043] The ratchet axle 24 is connected to a holding member 52 in a manner which allows
axial rotation of the ratchet axle 24 in relation to the holding member 52. The holding
member 52 is configured to receive and hold the hose of the pool cleaner and in this
way the to and fro motion of the hose is translated to the ratchet 20 thereby driving
the ratchet 20 as described above. The holding member 52 is rigidly mounted to a mounting
member 54 which is in turn connected to the front and rear parts 12, 14 of the housing
by way of hinges 50. This enables the front and rear parts 12, 14 to pivot in relation
to each other.
[0044] It is accordingly to be appreciated that rotation of the wheel 26 about the wheel
axle causes the protrusion 28 to rotate about the wheel axle. As the longitudinal
component of such rotation of the protrusion 28 is taken up by the slot 30, the lateral
component of such rotation exerts a cyclical, oscillating, lateral force to the rear
part 14 by way of the slot 30. This causes the front and rear parts 12, 14 to pivot
in relation to each other about the cooperating teeth 16, 18.
[0045] It is to be appreciated that, in this way, the longitudinal to and fro motion in
the hose is harnessed to mechanically, continually or continuously pivot the front
and rear parts 12, 14 in relation to each other in a cyclical oscillating and substantially
sideways manner ie. in a horizontal plane when the apparatus 10 is aligned parallel
with the surface of the water. This in turn influences the body of the pool cleaner
to move accordingly.
[0046] With particular reference to Figures 4 and 5, the apparatus 10 optionally includes
a flexible pipe 32 which extends through the housing. The pipe 32 is configured for
connection, by way of connector 34, to an end of the hose of the pool cleaner, the
end of the hose being an end opposite the body of the pool cleaner. The pipe 32 is
also configured for connection, by way of connector 36, to the pump system of the
pool so that the pipe 32 is able to pass water from the hose of the pool cleaner into
and through the pump system of the pool.
[0047] However, it is to be appreciated that, in embodiments of the invention where the
pipe 32 is not provided with the apparatus 10, the apparatus 10 is typically configured
to receive the hose of the pool cleaner through the housing. The housing then typically
includes outer connection means (not shown) for connection to an outer surface of
the hose of the pool cleaner.
[0048] With particular reference to Figure 5, the housing also includes a flexible outer
casing 40. The casing 40 includes front, middle, and rear portions 42, 44, 46. The
rear portion 46 is preferably locked to the pipe 32. The casing 40 also includes two
rubber boots 48 aiding in holding the front, middle, and rear portions 42, 44, 46
together.
[0049] Figure 5 also shows a rigid guiding member 90 of the apparatus 10, typically made
from a rigid plastics material. The guiding member 90 is V - shaped and the point
thereof is configured for pivotal connection to the weir of the pool and the two ends
thereof are pivotally connected to opposite sides of the rear part 14 of the housing.
The rigid guiding member 90 aids in influencing the movement of the body of the pool
cleaner so as to reduce the possibility of the body of the pool cleaner getting stuck
in a corner of the pool. It is to be appreciated that the rigid guiding member 90
also finds ready application in embodiments of the invention where the pipe 32 is
not provided with the apparatus 10.
[0050] Figures 6 to 10 show a second, and preferred, embodiment of the invention incorporating
many of the features shown in Figures 1 to 5. Accordingly, like reference numerals
are used to indicate like or similar features.
[0051] In this embodiment of the invention, the protrusion 28 and slot 30 mechanism of the
transducer shown in Figures 1 to 5 has essentially been replaced by an elongate hinged
mechanism which works on the outer casing 40 as described hereafter. It is to be appreciated
that other changes have also been made to the guiding apparatus 10 in order to facilitate
the proper working of such elongate hinged mechanism.
[0052] Accordingly, in this embodiment of the invention, the transducer includes a hinged
elongate member 60. A first end 62 of the elongate member 60 is connected via a hinge
(not shown) to a part of the outer casing 40 (shown in Figures 8 to 10) associated
with the front part 12 of the housing. This connection is made at a pre-selected,
substantially transverse, distance from a first hinge 64 connecting the mounting member
54 to the part of the outer casing 40 associated with the front part 12 of the housing.
[0053] A second end 66 of the elongate member 60 is connected to a part of the outer casing
40 associated with the rear part 14 of the housing. This connection is made at a pre-selected,
substantially transverse, distance from a second hinge 68 connecting the mounting
member 54 to the part of the outer casing 40 associated with the rear part 14 of the
housing. The hinge 70 of the elongate member 60 is connected to the driven wheel 26
at a predetermined distance from the driven wheel axle (indicated by reference numeral
72 in Figures 6 to 8), so that, in use, rotation of the driven wheel 26 is translated
to substantially longitudinal to and fro motion of the elongate member 60 resulting
in pivoting of the part of the outer casing 40 associated with the front part 12 of
the housing in relation to the part of the outer casing 40 associated with the rear
part 14 of the housing.
[0054] The elongate member 60 includes two transversely opposing transversely extending
indents 74, 76 allowing resilient bending of the elongate member 60 about the indents
74, 76. This feature allows the elongate member 60 to absorb at least a part of an
impact applied to the guiding apparatus 10 thereby reducing damage resulting from
such impact.
[0055] Furthermore, the transducer optionally includes first and second cogged intermediate
wheels 78, 80 configured intermediate the driven member and the driven wheel 26. The
first intermediate wheel 78 is driven, in use, by the driven member via the axle 24.
The first wheel intermediate wheel 78 in turn drives the second intermediate wheel
80 which in turn drives the driven wheel 26. It is to be appreciated that the first
and second intermediate wheels 78, 80 are configured to drive the driven wheel 26
at a slower rate than if the driven member were to drive the driven wheel 26 directly.
The first and second intermediate wheels 78, 80 are typically configured so that the
front 12 and rear 14 parts pivot in relation to each other at a period of about 30
minutes.
[0056] It is to be appreciated that rotation of the driven wheel 26 about the driven wheel
axle 72 causes the elongate member 60 to exert a cyclical, oscillating, torsion force
between the part of the outer casing 40 to which the first end 62 of the elongate
member 60 is connected and the mounting member 54 about the first hinge 64 aswell
as a cyclical, oscillating, torsion force between the part of the outer casing 40
to which the second end 66 of the elongate member 60 is connected and the mounting
member 54 about the second hinge 68 which in turn causes the part of the outer casing
40 associated with the front part 12 of the housing to pivot in relation to the part
of the outer casing 40 associated with the rear part 14 of the housing. With particular
reference to Figure 8, the apparatus 10 also includes an outer elongate casing 40
for the housing. It is to be appreciated that Figure 8 only shows a lower portion
of the casing 40.
[0057] The casing 40 includes front, middle, and rear portions 42, 44, 46 which are made
from a rigid plastics material. The casing 40 also includes two intermediate flexible
portions 56, 58 made from a flexible plastics material. The portions 56, 58 are located
intermediate the front and middle portions 42, 44, and the middle and rear portions
44, 46, respectively.
[0058] The intermediate flexible portions 56, 58 allow the front and rear portions 42, 46
to pivot in relation to each other. As the first end 62 of the elongate member 60
is connected to portion 56 and the second end 66 of the elongate member 60 is connected
to portion 58, it is to be appreciated that this effectively facilitates pivoting
of the front and rear parts 12, 14 of the housing in relation to each other.
[0059] Figures 9 and 10 show an entire casing 40 wherein the lower portion of the casing
40 shown in Figure 8 has been connected to a like upper portion to form an entire
casing 40.
[0060] It is further to be appreciated that the housing of the embodiment of the invention
shown in Figures 6 to 10 is shaped and configured so as to receive the hose of a pool
cleaner there through. The housing also includes two connection means (not shown),
each located at opposite ends of the housing, for connection to the hose of the pool
cleaner. Each connection means includes a clip shaped and configured for clipping
to a grooved outer surface of the hose.
[0061] It is to be appreciated that the invention is not limited to the precise constructional
details as herein exemplified. In particular, it is to be appreciated certain features
shown in combination with other features in one drawing can also be extended to other
embodiments where these features can be combined with further features shown in other
drawings. The invention is limited by the appended claims.
[0062] The Inventor believes that the invention is advantageous in that it provides a compact,
simple, neat, aesthetically pleasing, user-friendly, impact-absorbent and relatively
inexpensive apparatus for guiding a pool cleaner body within a pool to reduce the
possibility of the pool cleaner body omitting to clean certain portions of the submerged
surface of the pool and to reduce the possibility of the pool cleaner body getting
stuck in one position in a corner of the pool. Furthermore, the Inventor believes
that the apparatus (excluding the flexible pipe in embodiments where the flexible
pipe is provided with the apparatus) is versatile in that it need not be connected
to the weir of the pool and can be connected to the hose (or the flexible pipe in
embodiments where the flexible pipe is provided with the apparatus) anywhere between
the weir and the pool cleaner body.
[0063] According to the Inventor, it is yet a further advantage that the apparatus is driven
by means of energy associated with the pumping of water by means of the existing pool
pumping system. Thus, in the embodiments illustrated, it will not be necessary to
provide a dedicated power or energy source. It is however possible, still in accordance
with the invention, to provide a dedicated power or energy source to drive the apparatus.
1. A method of operating a pool cleaner (10) which pool cleaner, in use, passes water
from a head in a pool cleaner body via a hose into and through a pump system of a
pool, the flow stream of water being cyclically interrupted in the pool cleaner body
to cause a stop - start motion in the body and a cyclic water hammer action and to
and fro motion in the hose, the method including the step of:
connecting a housing to the hose of the pool cleaner so that front (12) and rear (14,46)
parts of the housing are arranged substantially in line with each other in substantially
the direction in which the hose is received by the housing; characterized by including to step of:
mechanically, continually or continuously pivoting the front (12) and rear (14) parts
in relation to each other in order to influence movement of the body of the pool cleaner
(10) accordingly.
2. A method as claimed in claim 1, which includes the step of harnessing the to and fro
motion of the hose in order to pivot the front and rear parts in relation to each
other.
3. A guiding apparatus for use in operating a pool cleaner which pool cleaner, in use,
passes water from a head in a pool cleaner body via a hose into and through a pump
system of a pool, the flow stream of water being cyclically interrupted in the pool
cleaner body to cause a stop - start motion in the body and a cyclic water hammer
action and to and fro motion in the hose, the apparatus including
a housing configured for connection to the hose of the pool cleaner
a driven member (20, 22) housed within the housing and arranged to be driven by the
to and fro motion of the hose; and
a transducer (24, 26, 28) housed within the housing, connected to the driven member;
characterized in that the housing includes front (12) and rear (14) parts configured to pivot, in use,
in relation to each other;
and in that the transducer is adapted to transduce motion of the driven member (20, 22) to motion
to be imparted to pivot the front (12) and rear (14) parts in relation to each other.
4. An apparatus as claimed in claim 3, which is configured to receive the hose of the
pool cleaner through the housing, and wherein the housing includes outer connection
means for connection to an outer surface of the hose of the pool cleaner.
5. An apparatus as claimed in claim 3, which includes a flexible pipe (32) configured
for connection to an end of the hose of the pool cleaner, the end of the hose being
an end opposite the body of the pool cleaner, and wherein the pipe is configured for
connection to the pump system of the pool so that the pipe is able to pass water from
the hose of the pool cleaner into and through the pump system of the pool.
6. An apparatus as claimed in any one of claims 3 to 5, wherein the housing comprises
a mounting member (54) on which the driven member (20, 22) and the transducer (24,
26, 28) are mounted; and
an outer casing (40) connected to the mounting member by way of at least one hinge,
the outer casing including
front (42), middle (44), and rear (46) portions which are made from a rigid material;
and
two intermediate flexible portions (48) located intermediate the front (42) and middle
(44) portions of the casing and the middle (44) and rear (46) portions of the casing,
respectively, so that the front and rear portions of the casing are able to pivot
in relation to each other.
7. An apparatus as claimed in claim 6, wherein the driven member includes a ratchet (20)
and an arm (22), a first end of the arm (22) being connected to the ratchet (20) to
drive the ratchet, and wherein the transducer (24, 26, 28) includes
an axle (24) for the ratchet, the axle being connected in a fixed manner to the ratchet
(20) so that the ratchet, in use, drives the axle; and
a driven wheel (26) having an axle (24), the driven wheel (26) and the ratchet axle
(24) being configured so that the ratchet axle (24) rotates the driven wheel (26)
about the driven wheel axle (24) when the ratchet axle is driven by the ratchet.
8. An apparatus as claimed in claim 7, wherein the transducer (24, 26, 28) includes a
hinged elongate member (60), wherein
a first end (62) of the elongate member is connected to a part of the outer casing
(40) associated with the front part of the housing, the connection being made at a
pre-selected distance from a first hinge connecting the mounting member to the part
of the outer casing associated with the front part of the housing (12);
a second end (66) of the elongate member is connected to a part of the outer casing
associated with the rear part (14) of the housing, the connection being made at a
pre-selected distance from a second hinge connecting the mounting member to the part
of the outer casing associated with the rear part of the housing; and
the hinge (70) of the elongate member (60) is connected to the driven wheel (26) at
a predetermined distance from the driven wheel axle (24), so that, in use, rotation
of the driven wheel (26) is translated to substantially longitudinal to and fro motion
of the elongate member (60) resulting in pivoting of the part of the outer casing
associated with the front part (12) of the housing in relation to the part of the
outer casing associated with the rear part (14) of the housing.
9. An apparatus as claimed in claim 8, wherein the transducer (24, 26, 28) includes at
least one intermediate wheel (78, 80) configured intermediate the driven member (20,
22) and the driven wheel (26), the at least one intermediate wheel, (78, 80) being
driven by the driven member (20, 22) and being configured to in turn drive the driven
wheel at a slower rate than if the driven member were to drive the driven wheel directly.
10. An apparatus as claimed in any one of claims 3 to 9, which includes a rigid guiding
member (90) having one part pivotally connected to the rear part of the housing and
another part configured for pivotal connection to a weir of the pool, which rigid
guiding member aids in influencing the movement of the body of the pool cleaner so
as to reduce the possibility of the body of the pool cleaner getting stuck in a corner
of the pool.
1. Verfahren zum Betrieb eines Beckenreinigers (10), wobei der Beckenreiniger in Gebrauch
Wasser über einen Schlauch von einem Kopf in einem Körper des Beckenreinigers in und
durch ein Pumpsystem eines Beckens führt, wobei der Wasserstrom im Körper des Beckenreinigers
zyklisch unterbrochen wird, um im Körper eine Stop-Start-Bewegung und im Schlauch
eine zyklische Hämmerbewegung des Wassers und eine Hin- und Herbewegung zu bewirken,
wobei das Verfahren folgenden Schritt einschließt:
Verbinden eines Gehäuses mit dem Schlauch des Beckenreinigers, so dass Vorder- (12)
und Rückbereiche (14, 46) des Gehäuses im Wesentlichen zueinander in einer Linie in
im Wesentlichen der Richtung, in der der Schlauch vom Gehäuse aufgenommen wird, angeordnet
sind;
dadurch gekennzeichnet, dass folgender Schritt eingeschlossen ist:
mechanisches, wiederkehrendes oder kontinuierliches Drehen der Vorder- (12) und Rückbereiche
(14) relativ zueinander, um die Bewegung des Körpers des Beckenreinigers (10) entsprechend
zu beeinflussen.
2. Verfahren wie in Anspruch 1 beansprucht, das den Schritt einschließt, sich die Hin-
und Herbewegung des Schlauches zu Nutze zu machen, um die Vorder-und Rückbereiche
relativ zueinander zu drehen.
3. Führungsvorrichtung zur Verwendung beim Betrieb eines Beckenreinigers, wobei der Beckenreiniger
in Gebrauch Wasser über einen Schlauch von einem Kopf in einem Körper des Beckenreinigers
in und durch ein Pumpsystem eines Beckens führt, wobei der Wasserstrom im Körper des
Beckenreinigers zyklisch unterbrochen wird, um im Körper eine Stop-Start-Bewegung
und im Schlauch eine zyklische Hämmerbewegung des Wassers und eine Hin- und Herbewegung
zu bewirken, wobei die Vorrichtung folgendes einschließt:
ein Gehäuse, das zur Verbindung mit dem Schlauch des Beckenreinigers ausgebildet ist;
ein angetriebenes Teil (20, 22), das innerhalb des Gehäuses untergebracht und so angeordnet
ist, dass es durch die Hin- und Herbewegung des Schlauches antreibbar ist; und
einen Umwandler (24, 26, 28), der innerhalb des Gehäuses untergebracht und mit dem
angetriebenen Teil verbunden ist;
dadurch gekennzeichnet, dass das Gehäuse Vorder-(12) und Rückbereiche (14) einschließt, die so ausgebildet sind,
dass sie sich in Gebrauch relativ zueinander drehen;
und dass der Umwandler geeignet ist, die Bewegung des angetriebenen Teils (20, 22)
in eine Bewegung, die übertragen wird, um die Vorder- (12) und Rückbereiche (14) relativ
zueinander zu drehen, umzuwandeln.
4. Vorrichtung wie in Anspruch 3 beansprucht, die so aufgebaut ist, dass sie den Schlauch
des Beckenreinigers durch das Gehäuse aufnimmt und wobei das Gehäuse äußere Verbindungsmittel
zur Verbindung mit einer äußeren Oberfläche des Schlauches des Beckenreinigers einschließt.
5. Vorrichtung wie in Anspruch 3 beansprucht, die ein flexibles Rohr(32) einschließt,
der zur Verbindung mit einem Ende des Schlauches des Beckenreinigers ausgebildet ist,
wobei das Ende des Schlauches ein dem Körper des Beckenreinigers gegenüberliegendes
Ende ist, und wobei das Rohr zur Verbindung mit dem Pumpsystem des Beckens ausgebildet
ist, so dass das Rohr in der Lage ist, Wasser vom Schlauch des Beckenreinigers in
und durch das Pumpsystem des Beckens zu führen.
6. Vorrichtung wie in einem der Ansprüche 3 bis 5 beansprucht, wobei das Gehäuse folgendes
umfasst:
ein Befestigungsteil (54), an dem das angetriebene Teil (20, 22) und der Umwandler
(24, 26, 28) befestigt sind; und
eine äußere Umhüllung (40), die mit dem Befestigungsteil durch mindestens ein Gelenk
verbunden ist, wobei die äußere Umhüllung folgendes einschließt:
Vorder- (42), Mittel- (44) und Rückabschnitte (46), die aus einem starren Material
hergestellt sind; und
zwei dazwischenliegende flexible Abschnitte (48), die jeweils zwischen den Vorder-
(42) und Mittelabschnitten (44) der Umhüllung und den Mittel- (44) und Rückabschnitten
(46) der Umhüllung angeordnet sind, so dass die Vorder- und Rückabschnitte der Umhüllung
in der Lage sind, sich relativ zueinander zu drehen.
7. Vorrichtung wie in Anspruch 6 beansprucht, wobei das angetriebene Teil eine Ratsche
(20) und einen Arm (22) einschließt, wobei ein erstes Ende des Arms (22) mit der Ratsche
(20) verbunden ist, um die Ratsche anzutreiben, und wobei der Umwandler (24, 26, 28)
folgendes einschließt:
eine Achse (24) für die Ratsche, wobei die Achse auf feste Weise mit der Ratsche (20)
verbunden ist, so dass die Ratsche in Gebrauch die Achse antreibt; und
ein angetriebenes Rad (26), das eine Achse (24) besitzt, wobei das angetriebene Rad
(26) und die Ratschenachse (24) so ausgebildet sind, dass die Ratschenachse (24) das
angetriebene Rad (26) um die Achse (24) des angetriebenen Rades dreht, wenn die Ratschenachse
durch die Ratsche angetrieben wird.
8. Vorrichtung wie in Anspruch 7 beansprucht, wobei der Umwandler (24, 26, 28) ein in
Gelenken gelagertes längliches Teil (60) einschließt, wobei
ein erstes Ende (62) des länglichen Teils mit einem dem Vorderbereich des Gehäuses
zugehörigen Bereich der äußeren Umhüllung (40) verbunden ist, wobei die Verbindung
in vorgewähltem Abstand von einem ersten Gelenk, welches das Befestigungsteil mit
dem dem Vorderbereich des Gehäuses (12) zugehörigen Bereich der äußeren Umhüllung
verbindet, hergestellt ist;
ein zweites Ende (66) des länglichen Teils mit einem dem Rückbereich (14) des Gehäuses
zugehörigen Bereich der äußeren Umhüllung verbunden ist, wobei die Verbindung in vorgewähltem
Abstand von einem zweiten Gelenk, welches das Befestigungsteil mit dem dem Rückbereich
des Gehäuses zugehörigen Bereich der äußeren Umhüllung verbindet, hergestellt ist;
und
das Gelenk (70) des länglichen Teils (60) mit dem angetriebenen Rad (26) in vorgewähltem
Abstand von der Achse (24) des angetriebenen Rades verbunden ist, so dass in Gebrauch
die Drehbewegung des angetriebenen Rades (26) in eine im Wesentlichen längsgerichtete
Hin- und Herbewegung des länglichen Teils (60) überführt wird, was in einer Drehbewegung
des Bereichs der äußeren Umhüllung, der dem Vorderbereich (12) des Gehäuses zugehörig
ist, relativ zu dem Bereich der äußeren Unhüllung, der dem Rückbereich (14) des Gehäuses
zugehörig ist, resultiert.
9. Vorrichtung wie in Anspruch 8 beansprucht, wobei der Umwandler (24, 26, 28) mindestens
ein Zwischenrad (78, 80) einschließt, das zwischen dem angetriebenen Teil (20, 22)
und dem angetriebenen Rad (26) angeordnet ist, wobei das mindestens eine Zwischenrad
(78, 80) durch das angetriebene Teil (20, 22) angetrieben wird und so ausgebildet
ist, dass es im Gegenzug das angetriebene Rad mit einer langsameren Geschwindigkeit
antreibt, als wenn das angetriebene Teil das angetriebene Rad direkt antreiben würde.
10. Vorrichtung wie in einem der Ansprüche 3 bis 9 beansprucht, die ein starres Führungsteil
(90) einschließt, das einen drehbar mit dem Rückbereich des Gehäuses verbundenen Bereich
und einen weiteren zur drehbaren Verbindung mit einem Überlauf des Beckens ausgebildeten
Bereich besitzt, wobei das starre Führungsteil dazu beiträgt, die Bewegung des Körpers
des Beckenreinigers so zu beeinflussen, dass die Möglichkeit, dass der Körper des
Beckenreinigers in einer Ecke des Beckens stecken bleibt, verringert wird.
1. Procédé de fonctionnement d'un nettoyeur de piscine (10), lequel nettoyeur de piscine
fait passer de l'eau lors de son utilisation d'une tête dans un corps de nettoyeur
de piscine par le biais d'un tuyau dans et à travers un système de pompe d'une piscine,
le courant d'écoulement d'eau étant interrompu de manière cyclique dans le corps de
nettoyeur de piscine pour provoquer un mouvement d'arrêt-marche dans le corps et une
action de marteau d'eau cyclique et un mouvement de va-et-vient dans le tuyau, le
procédé comprenant l'étape consistant à :
connecter un logement au tuyau du nettoyeur de piscine de sorte que les parties avant
(12) et
arrière (14, 46) du logement sont agencées essentiellement en ligne les unes avec
les autres essentiellement dans la direction dans laquelle le tuyau est reçu par le
logement ;
caractérisé par l'inclusion de l'étape consistant à :
faire pivoter de manière mécanique, continuelle ou continue les parties avant (12)
et arrière (14) l'une par rapport à l'autre afin d'influencer le mouvement du corps
du nettoyeur de piscine (10) en conséquence.
2. Procédé selon la revendication 1, qui comprend l'étape consistant à aménager le mouvement
de va-et-vient du tuyau afin de faire pivoter les parties avant et arrière l'une par
rapport à l'autre.
3. Appareil de guidage destiné à être utilisé dans le fonctionnement d'un nettoyeur de
piscine, lequel nettoyeur de piscine fait passer de l'eau lors de son utilisation
d'une tête dans un corps de nettoyeur de piscine par le biais d'un tuyau dans et à
travers un système de pompe d'une piscine, le courant d'écoulement d'eau étant interrompu
de manière cyclique dans le corps de nettoyeur de piscine pour provoquer un mouvement
d'arrêt-marche dans le corps et une action de marteau d'eau cyclique et un mouvement
de va-et-vient dans le tuyau, l'appareil comprenant
un logement configuré pour la connexion au tuyau du nettoyeur de piscine ;
un élément entraîné (20, 22) logé au sein du logement et agencé pour être entraîné
par le mouvement de va-et-vient du tuyau ; et
un transducteur (24, 26, 28) logé au sein du logement, connecté à l'élément entraîné
;
caractérisé en ce que le logement comprend des parties avant (12) et arrière (14) configurées pour pivoter
lors de leur utilisation l'une par rapport à l'autre ;
et en ce que le transducteur est adapté à effectuer la transduction du mouvement de l'élément
entraîné (20, 22) en un mouvement devant être conféré pour faire pivoter les parties
avant (12) et arrière (14) l'une par rapport à l'autre.
4. Appareil selon la revendication 3, qui est configuré pour recevoir le tuyau du nettoyeur
de piscine à travers le logement, et dans lequel le logement comprend des moyens de
connexion externes pour la connexion à une surface externe du tuyau du nettoyeur de
piscine.
5. Appareil selon la revendication 3, qui comprend une conduite flexible (32) configurée
pour la connexion à une extrémité du tuyau du nettoyeur de piscine, l'extrémité du
tuyau étant une extrémité en face du corps du nettoyeur de piscine, et dans lequel
la conduite est configurée pour la connexion au système de pompe de la piscine de
sorte que la conduite est capable de faire passer de l'eau du tuyau du nettoyeur de
piscine dans et à travers le système de pompe de la piscine.
6. Appareil selon l'une quelconque des revendications 3 à 5, dans lequel le logement
comprend
un élément de montage (54) sur lequel l'élément entraîné (20, 22) et le transducteur
(24, 26, 28) sont montés ; et
un boîtier externe (40) connecté à l'élément de montage au moyen d'au moins une charnière,
le boîtier externe comprenant
des portions avant (42), médiane (44) et arrière (46) qui sont fabriquées en un matériau
rigide ; et deux portions flexibles intermédiaires (48) situées entre les portions
avant (42) et médiane (44) du boîtier et les portions médiane (44) et arrière (46)
du boîtier, respectivement, de sorte que les portions avant et arrière du boîtier
sont capables de pivoter l'une par rapport à l'autre.
7. Appareil selon la revendication 6, dans lequel l'élément entraîné comprend un cliquet
(20) et un bras (22), une première extrémité du bras (22) étant connectée au cliquet
(20) pour entraîner le cliquet, et dans lequel le transducteur (24, 26, 28) comprend
un essieu (24) pour le cliquet, l'essieu étant connecté de manière fixe au cliquet
(20) de sorte que le cliquet entraîne l'essieu lors de son utilisation ; et
une roue entraînée (26) ayant un essieu (24), la roue entraînée (26) et l'essieu (24)
du cliquet étant configurés de sorte que l'essieu (24) du cliquet fait tourner la
roue entraînée (26) autour de l'essieu (24) de la roue entraînée lorsque l'essieu
du cliquet est entraîné par le cliquet.
8. Appareil selon la revendication 7, dans lequel le transducteur (24, 26, 28) comprend
un élément allongé à charnière (60), dans lequel
une première extrémité (62) de l'élément allongé est connectée à une partie du boîtier
externe (40) associée à la partie avant du logement, la connexion étant réalisée à
une distance présélectionnée depuis une première charnière connectant l'élément de
montage à la partie du boîtier externe associée à la partie avant (12) du logement
;
une seconde extrémité (66) de l'élément allongé est connectée à une partie du boîtier
externe associée à la partie arrière (14) du logement, la connexion étant réalisée
à une distance présélectionnée depuis une seconde charnière connectant l'élément de
montage à la partie du boîtier externe associée à la partie arrière du logement ;
et
la charnière (70) de l'élément allongé (60) est connectée à la roue entraînée (26)
à une distance prédéterminée depuis l'essieu (24) de la roue entraînée de sorte que,
lors de son utilisation, la rotation de la roue entraînée (26) est translatée en un
mouvement de va-et-vient essentiellement longitudinal de l'élément allongé (60) conduisant
au pivotement de la partie du boîtier externe associée à la partie avant (12) du logement
par rapport à la partie du boîtier externe associée à la partie arrière (14) du logement.
9. Appareil selon la revendication 8, dans lequel le transducteur (24, 26, 28) comprend
au moins une roue intermédiaire (78, 80) configurée entre l'élément entraîné (20,
22) et la roue entraînée (26), l'au moins une roue intermédiaire (78, 80) étant entraînée
par l'élément entraîné (20, 22) et étant configurée pour entraîner à son tour la roue
entraînée à une vitesse plus lente que si l'élément entraîné devait entraîner la roue
entraînée directement.
10. Appareil selon l'une quelconque des revendications 3 à 9, qui comprend un élément
de guidage rigide (90) ayant une partie connectée à pivotement à la partie arrière
du logement et une autre partie configurée pour la connexion pivotante à un déversoir
de la piscine, lequel élément de guidage rigide aide à influencer le mouvement du
corps du nettoyeur de piscine de manière à réduire la possibilité de blocage du corps
du nettoyeur de piscine dans un coin de la piscine.