[0001] The present invention relates to a filter and flow-diverter unit for a washing machine
with recirculation.
[0002] It is known that there are washing machines on the market in which the washing bath
is recirculated into the washing tank along a recirculation path, and in which the
draining pump is also used as the pump for supplying the recirculation path.
[0003] It is also known that it is possible to use flow- diverters or three-way valves which
connect an inlet opening to one of two outlet openings for draining and for recirculation
respectively, in a mutually exclusive manner, in order to divert the flow towards
the drain or towards the recirculation path.
[0004] An example of this type of diverter is described schematically in the German patent
application published under the No. 1610190.
[0005] A basic requirement which these diverters have to satisfy is that the drain opening
must close perfectly, without leaks, even after repeated operation.
[0006] In the absence of perfect closure, when the diverter is in the recirculation position,
the the washing liquid, which is circulated for quite considerable periods of time
of the order of tens of minutes, may drain away to a large extent, with a consequent
wastage of detergent and of the heat content of the liquid, which is generally heated,
and with the possibility of the washing machine stopping because insufficient liquid
remains in the washing tank.
[0007] Although a flow filter, generally disposed upstream of the pump, protects the circuit
downstream to a certain extent, the recirculated liquid still contains solid particles
and substances which may form deposits or cause mechanical or chemical wear of the
seals.
[0008] A perfect seal upon closure and the effectiveness of the diverter are therefore ensured
only by regular maintenance which requires skilled intervention and is difficult and
laborious to carry out. In fact, the diverter is not readily accessible and it is
necessary to open panels and/or lift the washing machine from the supporting floor
in order to gain access to the device, to remove and dismantle it, and to check its
efficiency and the state of the seals.
[0009] The installation of the diverter also adds to the construction costs of the machine
since it requires the availability of suitable mechanical supports for fixing the
diverter to the frame of the washing machine.
[0010] These problems are prevented by the filter and flow-diverter unit for a washing machine
according to the present invention, which provides a unit in which the filter and
the diverter are structurally combined in a single unit so that the removal of the
filter element from the filter opens the diverter for inspection and checks on its
condition.
[0011] Moreover, the unit requires a single mechanical support rather than separate supports
for separate functional units.
[0012] According to a further aspect of the invention, the removable filter element also
comprises a pipe or connector portion of the diverter, thus affording free access
to the movable element of the diverter for easier inspection and quicker replacement
of seals where necessary.
[0013] According to a further aspect of the invention, the unit has an attachment to the
body of a pump and a direct connection to the input of the pump so that the number
of connecting pipes and their lengths are reduced to a minimum and a unitary pump,
filter, and diverter unit is formed, which reduces the number of supports needed for
fixing to the structure.
[0014] According to a further aspect of the invention, the design of the unit is such that
it can be formed by the moulding of plastics material, with a small number of parts,
that is, essentially three parts: a first part constituting a housing body, a second,
removable part constituting the filter element and a portion of the diverter, and
a third part constituting the rest of the diverter.
[0015] The characteristics and advantages of the invention will become clearer from the
following description of a preferred embodiment of the invention and from the appended
drawings, in which:
Figure 1 shows a preferred embodiment of the filter and flow-diverter unit according
to the present invention sectioned in a horizontal plane,
Figures 2 to 6 show the filter and flow-diverter unit of Figure 1, sectioned in the
section planes E-E, A-A, B-B, C-C, D-D of Figure 1,
Figure 7 shows a variant of the filter and flow-diverter unit according to the present
invention, sectioned in a horizontal plane,
Figure 8 shows a second variant of the filter and flow-diverter unit formed according
to the present invention.
[0016] With reference jointly to Figures 1 to 6, the filter and flow-diverter unit of the
invention is constituted by a substantially cylindrical body 1, preferably formed
of reinforced plastics, by moulding, and having an annular neck 2 at its open front
end.
[0017] The end referred to as the front end relates to the normal conditions in which a
filter is installed in a washing machine, which in fact provide for the filter device
to be opened at the front.
[0018] The inner end of the body 1, which is also open, has a flange 3 for connection and
attachment to the the body of a pump 4.
[0019] The cylindrical body 1 constitutes a housing for a removable element constituted
by a filter element 5, a separating diaphragm 6, perpendicular to the axis of the
cylindrical body, a diametral pipe or connector portion 7 and a plug 8 for closing
the front opening of the cylindrical body 1.
[0020] The plug 8 which engages the body 1 with a screw or bayonet connection, has a seal
9 and an operating knob 10.
[0021] The separating diaphragm 6, which has a sealing ring (an O-ring) cooperating with
the body 1, separates a first front housing space in the cylindrical body from a second
inner space which houses the filter 5.
[0022] The filter 5 has a diaphragm 11 which is parallel to the diaphragm 6, has a sealing
ring (an O-ring) cooperating with the body 1, and is connected to the diaphragm 6
by a scoop-like element 12 (Figure 4).
[0023] Above the scoop 12, the body 1 opens into a first peripheral connector 13 for connection
to a flow-inlet pipe coming from the washing tank.
[0024] The diaphragm 11 has a through-hole 14 between the dish of the scoop 12 and the space
within the filter so that a flow admitted through the connector 13 passes from the
scoop into the filter 5 and, having been filtered, emerges peripherally therefrom
to be drawn through the intake 15 of the pump 4.
[0025] The cylindrical body 1 has a second peripheral connector 16 (Figures 1 and 5) in
correspondence with the front housing space, and a third peripheral connector 17 (Figures
1 and 6) which opens in a position diametrally opposite a large lateral connector
with a coupling flange 18.
[0026] A plug 19 having a counter-flange 20 cooperating with the flange 18 and a fourth
connector 21 closes the lateral connector of the body 1. The connector 21 terminates
within the plug in a rim parallel to the plane of the counter-flange 20.
[0027] The plug 19 houses a closure diaphragm 22, which is parallel to the plane of the
counter-flange 20, has seals on both faces, and is supported by a rod 23 which is
perpendicular to the diaphragm and is operated by an electromagnetic or, preferably,
a thermal-expansion, actuator 24 in order to close and open the connector 21.
[0028] The diaphragm 6 of the removable element is fixed to the plug 8 by means of connecting
arms 25, 26 resiliently supporting the connector 7 (Figures 1 and 6) which is disposed
diametrally with one end facing the connector 17 and in contact with the body 1, preferably
with sealing provided by a resilient seal 28, and the other end facing the diaphragm
22, in order to be closed thereby under the control of the actuator 24, as a mutually
exclusive alternative to the closure of the connector 21.
[0029] As indicated in Figure 1, the outlet 29 of the pump 4 is connected to the connector
16 by a pipe 27 so that the output flow of the pump is admitted to the front housing
space of the body 1, which it leaves through the connector 17 or the connector 21
according to whether the diaphragm 20 is in a position for closing the connector 21
(and hence opening the connector 7) or in a position for closing the connector 7 (and
hence for opening the connector 21).
[0030] A unitary and compact filter-diverter unit, constituted by a small number of parts
which can be produced easily by the moulding of plastics material, is thus formed.
[0031] This unit, which is easy to install, can be supported directly by the body of the
pump, constituting a unitary structure therewith, or may be fixed to the frame of
the washing machine by very simple means, for example, by a flange 30 disposed on
the periphery of the neck 2.
[0032] The most important characteristic of this unit is that when the filter element housed
in the body 1 is removed, the connector 7, which forms part of the removable element,
and the diaphragm 22, are made readily accessible for inspection, checking and maintenance,
without the need to dismantle parts or to carry out skilled operations.
[0033] Naturally, Figures 1 to 6 show only a preferred embodiment of the invention to which
many variations may be introduced.
[0034] Figure 7 shows schematically an alternative embodiment in which the positions of
the connector 13 for admitting the flow to the filter and of the inlet 15 to the pump
4 are interchanged in comparison with the embodiment of Figure 1.
[0035] In this case, the filter element 5 is open at its inner end in order to receive the
flow from the connector 13 which is formed in the body 1 and is disposed axially,
and the flange 3 for connection to the body of the pump 4 is formed laterally or,
more generally, peripherally, on the body 1.
[0036] The other characteristics of the unit are substantially unchanged from those of the
unit of Figure 1.
[0037] Figure 8 shows schematically a third alternative embodiment which may be adopted
in washing machines which have self-cleaning pumps and are therefore intrinsically
protected from lint and dirt, and in which the filter has the sole function of cleaning
the recirculated flow.
[0038] In Figure 8, the filter element 5 is housed in a cylindrical casing 31 which in turn
is housed in the cylindrical body 1.
[0039] The cylindrical casing 31 communicates with the housing space within the body 1 through
an axial connector 32 facing an axial connector 34 formed in an internal closure plug
35 of the body 1, which is wholly equivalent to the flanged plug 19 of Figure 1.
[0040] A diaphragm 33 interposed between the connectors 32 and 34 is controlled by an actuator
40 in exactly the same way as that of Figure 1, in order to close and open the connectors
32 and 34 in a mutually exclusive manner.
[0041] A connector 36 which opens into the inner portion of the body 1 admits the output
flow of a pump to the body 1.
[0042] According to the position of the diaphragm 33, the flow is discharged through the
connector 34 or is admitted to the casing 31 from which, having been filtered, it
emerges through a hole 37 in the casing and an outlet connector 38 of the body 1.
[0043] A sealing ring (an O-ring) 39 between the body 1 and the casing 31 separates an inner
space of the body, into which the connectors 36 and 34 open and which houses the diaphragm
33, from an outer space which houses most of the casing 31, including the hole 37,
and in which the connector 38 opens.
[0044] The plug 8, which is fixed to the casing 31, closes the front of the body 1.
[0045] The removal of the casing 31 and of the filter element housed therein clearly enables
inspection and maintenance of the diaphragm 33 and of its seals.
1. A filter and flow-diverter unit for a washing machine comprising:
- a cylindrical housing body (1) with at least one open end and having at least first
(17, 38), second (21, 34), and third (16, 35) connectors, each connectible to a fluid
inlet/outlet pipe,
- a removable element (5, 8, 31) housed in the cylindrical body and comprising a plug
(8) for closing the open end of the cylindrical body, a filter unit (5), and means
(7, 37) for forming a first flow path, connected to the first connector (17, 38) and
terminating in a fourth connector (7, 32) facing the second connector (21, 34),
- a diverter diaphragm (22, 33), housed in the cylindrical body, between the second
(21, 34) and fourth (7, 32) connectors and controlled by an actuator (24, 40) in order
to close and open the second (21, 34) and fourth (7, 32) connectors in a mutually
exclusive manner so that an output flow admitted to the cylindrical body by the third
connector (16, 36) is discharged selectively through the first connector (17, 38),
which is connected to the fourth connector (7, 32), or through the second connector
(21, 34).
2. A filter unit according to Claim 1, in which the filter unit (5) is inserted in
the flow path between the first (38) and fourth (32) connectors.
3. A filter unit according to Claim 1, in which the cylindrical body has a fourth,
inlet opening (13) and a fifth, outlet opening (15) for a second flow path and in
that the filter unit (5) is inserted in the second flow path between the fourth (13)
and fifth (15) openings.
4. A filter unit according to Claim 3, also comprising a pump (4) with its intake
connected to the fifth opening (15) and its output connected to the third opening
(16).
5. A filter unit according to Claim 3, in which the cylindrical body (1) has a flanged
connector (18) and comprises a plug (19) with a counter-flange (20) for closing the
flanged connector (18), the second connector (21) opening in the plug (19).
6. A filter unit according to Claim 5, in which the diaphragm (22) is supported by
a rod (23) slidable in the plug (19) and controlled by the actuator (24).
7. A filter and diverter unit according to Claim 6, in which the means for forming
a first flow path comprise a tubular element (7) disposed diametrally in the cylindrical
body (1) with one end facing the first connector (17) and the other end facing the
closure diaphragm (22).
8. A filter and diverter unit according to Claim 7, in which the removable element
comprises resilient means (25, 26) for supporting the tubular element (7) to enable
axial adaptation of the tubular element (7) to the cylindrical body (1).