Field of the art
[0001] The present invention relates to a horizontal drum washing machine (and washer-dryer)
comprising a cabinet, a tub mounted in the cabinet, a drum rotatably mounted within
said tub about a horizontal axis. Preferably, the present invention relates to a top-loading
washer comprising a tub mounted in the cabinet with an access opening, a perforated
drum rotatably mounted within said tub about a horizontal axis and having an aperture
on its cylindrical side, one or two drum door/s supported by the drum for opening
or closing said. In particular, the present invention relates to a system for recirculating
washing liquid in the rotating drum.
State of the art
[0002] It is known that washing machines, and in particular washing machines and washer-dryers,
include a support cabinet, on which a washing tub is mounted, inside which rotates
a drum, wherein the garments to be washed are placed. The tub has an opening through
which the access to the drum is possible and clothes can be placed inside the drum.
Such machines also comprise a controlled hydraulic system, which provides the water
supply, suitably mixed with detergent substances, so that the garments are subjected
to the washing process. It is also provided a recirculation circuit, which has the
aim to facilitate the dissolution of the detergent in the water and to promote the
circulation of water and detergent into the tub.
[0003] Public document
EP 2 392 720 discloses a washing machine tub arrangement comprising: a tub having an inner surface
and an outer surface, a pump housing for receiving a recirculation pump, wherein the
pump housing comprises a pumping cavity, and a recirculation conduit connecting the
pumping cavity of the pump housing to at least one nozzle for supplying washing liquid
into the tub. The nozzle directs the flow of recirculated washing liquid in an axial
direction from the side wall of the tub towards an outer side wall of the drum. In
the side wall of the drum, corresponding circumferentially distributed holes are formed
such that during the rotation of the drum the recirculated washing liquid can intermittently
enter into the interior of the washing drum.
Object of the invention
[0004] The Applicant observed that known horizontal axis washing machines suffer from some
drawbacks related to the recirculation of the washing liquid.
[0005] In fact, the washing machine described in the above cited document is characterized
by the fact that most of the washing liquid sprayed against the drum does not enter
said drum and does not facilitate the dissolution of the detergent in the water and
does not promote any circulation of water and detergent into the tub. Indeed,
EP 2 392 720 itself recites that the washing liquid can only intermittently enter into the interior
of the washing drum.
[0006] It should be noted that this implies a not effective and not efficient circulation
and/or a waste of the energy used for moving the pump of the recirculation conduit.
[0007] It is the main object of the present invention to overcome the above-mentioned drawbacks
by providing an efficient recirculation system for horizontal axis washing machines
in order to improve the washing performances.
[0008] Another object of the present invention is to provide a recirculation system having
a simple and reliable structure.
[0009] Another object of the present invention is to provide a horizontal axis washing machine
provided with such efficient, simple and reliable recirculation system.
Summary of the invention
[0010] The Applicant has found that such objectives can be obtained by providing a sprayer
that includes nozzles positioned according to a predetermined pattern, wherein these
nozzles work in combination with corresponding apertures/through passages obtained
in the drum so that, during the rotation of the drum, there is always at least one
sprayer's nozzle aligned with the corresponding drum's aperture.
[0011] More specifically, according to one aspect, the present invention relates to a horizontal
drum washing machine with washing liquid recirculation system, comprising: a cabinet;
a tub installed in the cabinet; a sump placed or fashioned at a bottom of the tub
and configured to receive washing liquid; a drum rotatably mounted within said cabinet
about a horizontal axis; a recirculating system in fluid communication with the sump
and comprising at least a sprayer facing a wall of the drum; wherein the sprayer comprises
a plurality of nozzles facing the wall of the drum and said wall presents a plurality
of through passages; wherein the nozzles and the through passages are disposed and
configured such that, during the rotation of the drum, there is always at least one
nozzle aligned with at least a corresponding through passage in the drum.
[0012] According to another aspect, the present invention relates to a method for recirculating
washing liquid in a horizontal drum washing machine, preferably made according to
the previous aspect, comprising: providing a drum rotatably mounted about a horizontal
axis within a cabinet of the horizontal drum washing machine; providing a recirculating
system in fluid communication with a sump and comprising at least a sprayer facing
a wall of the drum; keeping always at least one sprayer's nozzle aligned with a corresponding
drum's through passage during the rotation of the drum.
[0013] The term "substantially horizontal" means that the axis is parallel to a horizontal
plane or inclined of few degrees (0° - 20°) with respect to said horizontal plane.
"Nozzle aligned with at least a corresponding through passage" means that the through
passage is placed on a direction of the flow ejected by the nozzle so that the ejected
flow crosses the through passage and enters the drum with no obstacles.
[0014] The Applicant verified that in such a way, the washing liquid is sprayed into the
drum throughout the entire rotation of the drum, so allowing an improvement of the
washing performances.
[0015] The Applicant also verified that the invention is structurally simple and reliable,
since the sprayer may be motionless and hence said sprayer may be easy connected to
the rest of the recirculation system.
[0016] The present invention, in at least one of the aforesaid aspects, can have one or
more of the preferred characteristics that are described hereinbelow.
[0017] Preferably, the horizontal drum washing machine is a top-loading washer. Preferably,
the drum is perforated and these perforation are preferably other than the through
passages.
[0018] Preferably, the recirculation system comprises a pump placed on a recirculation conduit
which is connected to the sprayer and to the sump.
[0019] Preferably, the sprayer is motionless.
[0020] Preferably, the sprayer is fixed to the tub.
[0021] Preferably, the through passages are elongated slots.
[0022] Preferably, the nozzles are substantially circular and/or shaped like dots. The nozzles
eject jets of washing liquid into the slots as the drum and the slots moves. Preferably,
the wall of the drum comprises a cylindrical wrapper and at least an end wall closing
at least one end of the cylindrical wrapper. Preferably, in a top-loading washer,
another end wall closes the other end of the cylindrical wrapper. Preferably, the
sprayer faces one of the end walls (front or rear end walls). Preferably, said through
passages are fashioned in one of the end walls. Preferably, the sprayer is mounted
on the rear of the tub. Preferably, the sprayer is coaxial to the drum.
[0023] In a different embodiment, said through passages are fashioned in the cylindrical
wrapper and the sprayer faces the cylindrical wrapper.
[0024] Preferably, the plurality of through passages are arranged along circular paths coaxially
disposed with respect to the horizontal axis.
[0025] Preferably, the through passages are arc shaped.
[0026] Preferably, the plurality of through passages comprises groups of through passages.
[0027] Preferably, the through passages of each group are positioned along a respective
circular path.
[0028] Preferably, the circular paths are coaxially disposed with respect to the horizontal
axis and concentric relative to each other.
[0029] Preferably, the through passages of all groups form radial arrays of through passages,
wherein each array comprises a through passage of each group. Preferably, the through
passages of each group are angularly equidistant relative to one another.
[0030] Preferably, the through passages are positioned such that the center of mass of the
end wall is placed substantially at the horizontal axis in order to assure the balance
of the drum about the axis during rotation.
[0031] Preferably, the plurality of nozzles are each arranged along circular paths coaxially
disposed with respect to the horizontal axis.
[0032] Preferably, the nozzles are angularly offset one with respect to the other such that
always during the rotation of the drum at least one nozzle is aligned with at least
a corresponding through passage in the drum.
[0033] Preferably, the plurality of nozzles comprises groups of nozzles, wherein the nozzles
of each group are positioned along a respective circular path facing a respective
circular path of the through passages.
[0034] Preferably, the nozzles of each group are positioned along a respective circular
path.
[0035] Preferably, the nozzles are coaxially disposed with respect to the horizontal axis
and concentric relative to each other.
[0036] Preferably, the nozzles of each group are angularly offset with respect to the nozzles
of another group.
[0037] Preferably, the nozzles of each group are angularly equidistant relative to one another.
[0038] Preferably, always during the rotation of the drum, the nozzles of at least one group
of nozzles are aligned with the corresponding through passages of at least one group
of through passages.
[0039] Preferably, the number of groups of nozzles is equal to the number of groups of through
passages.
[0040] Preferably, the number of nozzles per group is equal to the number of groups. Preferably,
the number of through passages per group is equal to the number of groups. Preferably,
the number of arrays of through passages is equal to the number of groups.
[0041] Preferably, each through passage extends over a first angle, preferably given by
the following formula: α1 = 180°/number of groups.
[0042] Preferably, the through passages of each group are angularly spaced of a second angle
α2, preferably substantially equal to the first angle α1.
[0043] Preferably, the nozzles of each group are angularly spaced of a third angle α3, preferably
given by the following formula: α3 = 2 x α1.
[0044] Preferably, corresponding or homologous nozzles belonging to different groups are
angularly spaced of a fourth angle α4, preferably given by the following formula:
α4 = α1 / (number of groups - 1). The corresponding or homologous nozzles belonging
to different groups are the nozzles which, in a predetermined angular position of
the drum, are all aligned with the same radial array of through passages. In other
words, the corresponding or homologous nozzles belonging to different groups are arranged
in radial curved arrays of nozzles.
[0045] Preferably, corresponding or homologous nozzles belonging to different groups span
over a fifth angle α5 preferably equal to α1.
[0046] Preferably, the fifth angle α5 is equal to or greater than the first angle α1.
[0047] Preferably, the number of groups of nozzles and the number of groups of through passages
is of three, the number of nozzles per group and the number of through passages per
group is of three, the first angle α1 and the second angle α2 are 60°, the third angle
α3 is 120°, the fourth angle α4 is 30°, the fifth angle α5 is 60°.
Brief description of the drawings
[0048] Further objects, features and advantages of the present invention will become apparent
from the following detailed description and from the annexed drawings, which are supplied
by way of non-limiting example, wherein:
Fig. 1 is a schematic side view of a horizontal drum washing machine according to
the invention;
Fig. 2 is a schematic rear view of the horizontal drum washing machine of figure 1;
Fig. 3 is an enlarged view of rear wall of the drum of the machine of figures 1 and
2;
Fig. 4 is an enlarged front view of a sprayer of the machine of figures 1 and 2;
Figures 5A to 5D shows schematically respective angular positions of the rotating
drum with respect to the sprayer;
Fig. 6 is a chart representing the relative positions of nozzles of the sprayer with
respect to slots of the drum.
Detailed description of the preferred embodiments of the invention
[0049] Referring now to the annexed drawings, in Fig. 1 reference numeral 1 designates a
top loading horizontal drum washing machine, according to the present invention.
[0050] A perforated drum 2 of the machine 1 comprises a stainless steel cylindrical wrapper
3 provided with a rectangular drum aperture provided with a door 4. The drum 2 is
rotating within a plastic tub T mounted, with the interposition of known dampers,
within a cabinet C. Such cabinet C is provided with a lid L for closing the access
opening towards the drum 2.
[0051] The tub T is fixed to the cabinet C and the drum 2 is mounted within said cabinet
C and within the tub T to rotate about a horizontal axis X-X.
[0052] A bottom of the tub T delimits a sump 5 configured to receive the washing liquid.
A recirculating system 6 is in fluid communication with the sump 5 and it is configured
to recirculate the washing liquid between the sump 5 and the rotating drum 4.
[0053] The machine 1 is provided with other elements which are commonly known and not described
in the present description.
[0054] The recirculating system 6 comprises a recirculation duct 7 having a first end in
fluid communication with the sump 5 and a second end connected to a sprayer 8. A pump
9 is placed on the recirculation conduit 7 to pump the washing fluid form the sump
5 towards the sprayer 8. The sprayer 8 and preferably also the recirculation conduit
7 are installed and supported by the tub T or by the cabinet C and are motionless
with respect to said tub T and cabinet C.
[0055] The drum 2 comprises a cylindrical wrapper 11, a front wall 12 and a rear wall 13
closing the ends of the cylindrical wrapper 11.
[0056] The sprayer 8 has a substantially cylindrical shape coaxial to the drum 2 and provided
with a front face 14 facing the rear wall of the drum 2.
[0057] As shown in figure 4, the front face 14 of the sprayer 8 is provided with a plurality
of nozzles in fluid communication with the recirculation conduit 7 and facing the
rear wall 13 of the drum 2. The plurality of nozzles comprises three groups of nozzles.
Each group of nozzles comprises three nozzles arranged along a respective circular
path coaxially disposed with respect to the horizontal axis X-X. A first group of
nozzles 15 is arranged along a first inner circular path, a second group of nozzles
16 is arranged along a second middle circular path, a third group of nozzles 17 is
arranged along a third outer circular path. The nozzles 15, 16, 17 are substantially
circular and/or shaped like dots. The nozzles 15, 16, 17 of each group are angularly
equidistant relative to one another and the nozzles 15, 16, 17 of each group are angularly
offset with respect to the nozzles of another group.
[0058] As shown in figure 3, the rear wall of the drum 2 is provided with a plurality of
through passages 18, 19, 20 comprising three groups of through passages. Please note
that these through passages are preferably other than the perforations in the drum
2.
[0059] Each group of through passages comprises three through passages arranged along a
respective circular path coaxially disposed with respect to the horizontal axis X-X.
A first group of through passages 18 is arranged along a first inner circular path,
a second group of through passages 19 is arranged along a second middle circular path,
a third group of through passages 20 is arranged along a third outer circular path.
[0060] The first circular path of nozzles 15, 16, 17 faces the first circular path of through
passages 18, 19, 20, the second circular path of nozzles 15, 16, 17 faces the second
circular path of through passages 18, 19, 20, the third circular path of nozzles 15,
16, 17 faces the third circular path of through passages 18, 19, 20. Each through
passage 18, 19, 20 is an arch shaped elongated slot and extends along the respective
circular path. The through passages 18, 19, 20 of each group are angularly equidistant
relative to one another. The through passages 18, 19, 20 of the three groups are positioned
in three radial rows to form three radial arrays A1, A2, A3 of through passages.
[0061] Each through passage 18, 19, 20 extends over a first angle α1 = 60° and it is spaced
from another through passage of the same group of a second angle α2 = α1. In other
words, as shown in figure 3, the three radial arrays span over the first angle α1
and are spaced one from the other of the second angle α2. The through passages 18,
19, 20 are positioned such that the center of mass of the rear wall 13 is placed substantially
at the horizontal axis X-X in order to assure the balance of the drum 2 about the
axis during rotation.
[0062] As shown in figure 4, the nozzles 15, 16, 17 of each group are angularly spaced of
a third angle α3 = 2 x α1 = 120°. The through the nozzles 15, 16, 17 of the three
groups are positioned in three radial rows to form three radial curved arrays of nozzles
15, 16, 17. The nozzles 15, 16, 17 of each curved array are angularly spaced one form
the other of a fourth angle α4 = 30°. The nozzles 15, 16, 17 of each curved array
span over a fifth angle α5 = α1 = 60°.
[0063] The nozzles 15, 16, 17 eject jets of washing liquid into the slots 18, 19, 20 as
the drum 2 and the slots moves.
[0064] The nozzles 15, 16, 17 and the through passages 18, 19, 20 are disposed and configured
such that, always during the rotation of the drum 2, at least three nozzles are always
aligned with corresponding three through passages 18, 19, 20. Three sprayer's nozzles
15, 16, 17 are kept always aligned with three through passages 18, 19, 20 during the
rotation of the drum 2.
[0065] Figures 5A - 5D show respective positions of the through passages 18, 19, 20 of the
rotating drum 2 with respect to the nozzles 15, 16, 17 of the sprayer 8 during a rotation
of the drum 2 of about 90°.
[0066] In figure 5A (taken as position 0°), all the nozzles 15, 16, 17 of all the groups
are aligned with the respective through passages 18, 19, 20 and the washing liquid
sprayed by all said nozzles enters the drum 2. The array A1 is the uppermost one.
Figure 5B shows the drum 2 and the through passages 18, 19, 20 rotated counterclockwise
of 30° with respect to the position of figure 5A. The nozzles 15 of the inner group
are no more aligned with the respective through passages while the nozzles 16, 17
of the middle and outer groups are still aligned. Only the washing liquid sprayed
by the nozzles 16, 17 of the middle and outer groups enters the drum 2.
[0067] Figure 5C shows the drum 2 and the through passages 18, 19, 20 rotated counterclockwise
of 60° with respect to the position of figure 5A. The nozzles 16 of the middle group
are no more aligned with the respective through passages while the nozzles 15, 17
of the inner and outer groups are aligned. Only the washing liquid sprayed by the
nozzles 15, 17 of the inner and outer groups enters the drum 2.
[0068] Figure 5D the drum 2 and the through passages 18, 19, 20 rotated counterclockwise
of 90° with respect to the position of figure 5A. The nozzles 17 of the outer group
are no more aligned with the respective through passages while the nozzles 15, 16
of the inner and middle groups are aligned. Only the washing liquid sprayed by the
nozzles 15, 16 of the inner and middle groups enters the drum 2.
[0069] A further rotation of 30° (120° with respect to figure 5A) gives rise to the same
configuration shown in figure 5A, wherein the array A3 is the uppermost one.
[0070] The chart of figure 6 shows the above described positions and the transitions between
said positions. Dots and lines on the chart represent the alignment of the nozzles
15, 16, 17 with the three arrays A1, A2, A3 of through passages 18, 19, 20.
[0071] Between 0° and 30°, only the nozzles 16, 17 of the middle and outer groups are aligned.
Between 30° and 60°, only the nozzles 17 of the outer group are aligned. Between 60°
and 90°, only the nozzles 15 of the inner group are aligned. Between 90° and 120°,
only the nozzles 15, 16 of the inner and middle groups are aligned. The washing liquid
is sprayed into the drum 2 throughout the entire rotation of the drum 2.
[0072] The top-loading washing machine with recirculation system described herein by way
of example may be subject to many possible variations without departing from the novelty
spirit of the inventive idea.
[0073] For instance, the through passages may be fashioned in the cylindrical wrapper 11
and the sprayer may face the cylindrical wrapper 11.
[0074] It is also clear that in the practical implementation of the invention the illustrated
details may have different shapes or be replaced with other technically equivalent
elements.
[0075] It can therefore be easily understood that the present invention is not limited to
the above-described top-loading washing machine but may be subject to many modifications,
improvements or replacements of equivalent parts and elements without departing from
the inventive idea, as clearly specified in the following claims.
1. A horizontal drum washing machine with washing liquid recirculation system, comprising:
a cabinet (C);
a tub (T) installed in the cabinet (C);
a sump (5) placed or fashioned at a bottom of the tub (T) and configured to receive
washing liquid;
a drum (2) rotatably mounted within said cabinet (C) about a horizontal axis (X-X);
a recirculating system (6) in fluid communication with the sump (5) and comprising
at least a sprayer (8) facing a wall (13) of the drum (2);
wherein the sprayer (8) comprises a plurality of nozzles (15, 16, 17) facing the wall
(13) of the drum (2) and said wall (13) presents a plurality of through passages (18,
19, 20); wherein the nozzles (15, 16, 17) and the through passages (18, 19, 20) are
disposed and configured such that, during the rotation of the drum (2), there is always
at least one nozzle (15, 16, 17) aligned with at least a corresponding through passage
(18, 19, 20) in the drum (2).
2. The machine of claim 1, wherein the through passages (18, 19, 20) are elongated slots
and the nozzles (15, 16, 18) are substantially circular and/or shaped like dots.
3. The machine of claim 1 or 2, wherein the wall (11, 12, 13) of the drum (2) comprises
a cylindrical wrapper (11) and at least an end wall (12, 13) closing at least one
end of the cylindrical wrapper (11); wherein the sprayer (8) faces the end wall (13).
4. The machine of claim 3, wherein the through passages (18, 19, 20) and the nozzles
(15, 16, 17) are arranged along respective circular paths coaxially disposed with
respect to the horizontal axis (X-X).
5. The machine of claim 4, wherein the through passages (18, 19, 20) are arc shaped.
6. The machine of claim 4 or 5, wherein each through passage (18, 19, 20) extends over
a first angle, preferably given by the following formula: α1 = 180°/number of groups.
7. The machine of any of claims 4 to 6, wherein the plurality of through passages (18,
19, 20) comprises groups of through passages, wherein the through passages (18, 19,
20) of each group are positioned along a respective circular path.
8. The machine of claim 7, wherein the through passages (18, 19, 20) of all groups form
radial arrays (A1, A2, A3) of through passages, wherein each array (A1, A2, A3) comprises
a through passage of each group.
9. The machine of claim 7 or 8, wherein the through passages (18, 19, 20) of each group
are angularly equidistant relative to one another.
10. The machine of any of claims 7 to 9, wherein the nozzles (15, 16, 17) are angularly
offset one with respect to the other.
11. The machine of any of claims 7 to 10, wherein the plurality of nozzles (15, 16, 17)
comprises groups of nozzles, wherein the nozzles (15, 16, 17) of each group are positioned
along a respective circular path facing a respective circular path of the through
passages (18, 19, 20).
12. The machine of claim 11, wherein the nozzles (15, 16, 17) of each group are angularly
offset with respect to the nozzles (15, 16, 17) of another group.
13. The machine of claim 11 or 12, wherein the nozzles (15, 16, 17) of each group are
angularly equidistant relative to one another.
14. The machine of any of claims 11 to 13, wherein, during the rotation of the drum (2),
there are always the nozzles (15, 16, 17) of at least one group of nozzles aligned
with the corresponding through passages (18, 19, 20) of at least one group of through
passages.
15. The machine of any of claims 1 to 14, wherein the sprayer (8) is motionless and it
is preferably fixed to the tub (T).