Technical field of the present invention
[0001] The present invention relates to the technical sector of accessories for cleaning
and maintaining footwear. In particular, the present invention relates to a device
able to allow the washing of footwear inside common washing machines.
State of the art
[0002] It is well known that given types of footwear can be washed. Among these categories
there are, for example, sneakers, or sport footwear, often made of rubber or rubber/fabric.
Also other types of footwear are able to be washed, for example shoes completely made
of fabric or shoes completely made of rubber. Among them can be usually cited flip-flops,
pool footwear and the like.
[0003] Generally, for washing footwear the washing machine is usually used that, even if
specific for washing garments, can also adapt to washing footwear. However, many drawbacks
and technical problems can occur, as the washing machine is not specifically designed
for washing footwear. Among them, poorly efficient washing and anomalous and undesired
wear and tear of the footwear.
[0004] Firstly, even if presumably washing temperatures are chosen suitable for the material
of which the shoe is made, however the final result is often an uncomfortable permanent
deformation of the shoe, together with wear or even a complete crumpling. This crumpling
is due to the fact that the shoes are free to move in a completely random manner inside
the drum. Hence, during normal washing the shoes bump into each other and against
the drum walls, while during the subsequent drying spin cycle they remain pressed
against the wall. It is clear that, impacts, together with washing temperature, cause
permanent deformations and a strong wear of the footwear. On the other hand, during
the spin cycle the footwear is subject to strong pressures that increase the above
mentioned deformation effect. Independently of the type of footwear, these deformations
often cause the loss of the footwear ergonomic characteristics, making the shoe unusable
since it causes pain and uncomfortable diseases for the user.
[0005] Mainly in the case of sport footwear (typically the running shoes) it is well known
that their shape is fundamental to guarantee good performances. People wearing medium-
and long-distance running shoes expect to run hundreds of kilometers per week during
the training sessions or during races. Clearly, a deformed shoe can cause painful
blisters or even more severe diseases such as tendinitis, therefore making it unusable
for the purpose. The only solution to the problem is therefore that of buying a new
pair of shoes after washing in washing machine. Alternatively, the shoes must be hand
washed.
[0006] A further drawback is directly linked to the drying spin cycle. During this phase,
the shoes remain pressed against the wall in random positions that do not guarantee
a uniform drying thereof. In fact, it is evident that the shoes, even partially overlapping
each other, cannot dry in a uniform manner, as the water cannot flow out properly
through their different components (for example inner sole, upper, outsole, closing
devices such as Velcro fasteners). It is well known, in fact, that the soles of the
shoes are generally impermeable to insulate feet against water penetration, for example
rain, during use. Hence, when the shoe adheres to the wall with the side of the sole
destined to the contact with the ground, the sole, because of the material whereof
it is made and its high thickness, prevents water from flowing toward the outside
via centrifugal force. In this case the shoe cannot therefore dry in a uniform manner,
and remains wet in various parts even after a strong and long spin cycle.
[0007] It is therefore clearly apparent that the above mentioned drawbacks make the washing
of footwear in washing machine inconvenient, and, above all, that the result is really
unforeseeable.
[0009] US 6 067 729 A describes a device that holds two shoes in opposite positions against the drum of
a washing machine by means of a flexible rod inserted in the shoes until it reaches
the inner area of toes. The rod, with a diameter greater than the drum, pushes from
the inside the outer toes of the shoes against the cylindrical wall of the drum. But,
obviously, the rod allows the shoes to rotate around their toe during the rotation
of the drum. It is therefore evident that with this device the following can occur:
the case, wherein the part of the upper near the heel is pressed on the device, or
the case, wherein during the drum rotation the shoe, full of water, tends to rotate
around the toe pulling the part of the upper locally in the position of the instep,
and this occurs particularly during the spin cycle, wherein the shoe can rotate until
the sole goes into contact with the cylindrical walls of the drum. During washing
phases these rotations of the shoes can furthermore move the contact point of the
toes of the shoes on the drum, thus arranging the whole shoes-flexible rod device
diagonally, i.e. geometrically on a non-vertical plane; in this way, the flexible
rod looses its curvature and lastly, as the pressure on the toes decreases, there
is contact loss and hence loss of unity between flexible rod-footwear set and drum
of the washing machine.
[0010] In
US 2003/0084585 A1 the device is provided with an extensible tube with T-shaped ends suitable to be
fit in two shoes pushed with the soles in opposite positions into contact with the
cylindrical lateral walls of the drum. The T-shaped ends do not hinder movement of
the wet upper toward the sole; during the washing cycle continuous stresses and bending
of the fabric/upper therefore occur, dangerous for both seams and heat welds or glued
seams of the upper, for which the shoe is not designed. In addition, during rotation
in vertical position the weight of the whole device and of the upper shoe rests inside
the lower shoe and, moreover, the action produced by the T-shaped part of the device
discharges only locally inside the shoe, in limited portions of the insole, thus causing,
due to high point pressures, permanent deformations of this latter which can make
the footwear uncomfortable.
[0011] In
US 5 365 675 A the shoes rest on pins projecting from an extendable rod inserted diametrically in
the drum, and are bound here through laces surrounding them outside. As the shoe is
constrained only locally below the sole and mainly on the outer surface of the upper,
and as it is fixed much more accurately only in the heel area and less effectively
in the front part of the sole and of the upper, the shoe itself, during washes and
rinses, i.e. during rotation of the drum, is swamped inside and is subject to continuous
flexions in the sole that can cause detachment of the non-fixed inner soles; moreover,
the upper in the front part of the instep is subject to continuous abrasions because
of the laces and the pins, or anyway to cyclical stresses for which the shoe is not
designed.
[0012] In all the three cases the shoe takes such a position that the sole, which is impermeable,
and the perimeter part of upper near the sole, which is often impermeable too, prevent
the water, during rotation of the drum, especially during the spin phases necessary
for an effective washing, from flowing out from the shoe, thus causing stagnation
of possibly dirty water, and the dirt can remain inside the shoe until washing is
finished, thus resulting in a poorly satisfactory or pejorative washing. In fact,
in these examples the sole mostly faces toward the cylindrical lateral walls of the
drum, the drum with the inner concavity of the shoe (i.e. the foot housing shoe zone)
facing the axis of rotation of the drum itself. In
US 2003/084585 A1 this position is constant, while in
US 6 067 729 A and
US 5 365 675 A it occurs particularly during the spin phases. The centrifugal force moves the water
in radial direction and therefore the sole tends to prevent water outflow from the
inside of the shoe. Because of the resulting water stagnation between upper and sole,
the shoe needs a lot of time to dry, and seams, heat welds and glued edges weaken
due to the strong pressures that may be generated in the stagnation areas.
[0013] Furthermore, in all the three cases, the devices discharge locally in two more or
less limited and opposite areas of the cylindrical lateral walls of the drum, and
this may result in drum deformation, as the devices are fixed through pressure on
the cylindrical walls of the drum, that sometimes is not designed for these concentrated
actions.
Summary of the present invention
[0014] The object of the present invention is therefore to provide a device to allow the
washing of footwear in a washing machine, which overcomes all the above mentioned
drawbacks.
[0015] In particular, the object of the present invention is to provide a device to allow
effective and uniform washing of footwear in washing machine, and which allows, at
the same time, to obtain a subsequent uniform and effective drying of the shoe.
[0016] A further object of the present invention is to provide a device to allow the washing
of footwear in washing machine, which preserves them from deformations and wear caused
by both the impacts against the drum and by anomalous pressures or tractions, caused
by the spin cycle, that can damage the shoes that do not bear these stresses as they
are not designed for it.
[0017] A further object of the present invention is to provide a device to allow the washing
of footwear in washing machine that, at the same time, preserves the integrity of
the drum, of the seal gaskets between the case containing the drum and the door, and
of the same door.
[0018] These and other objects are achieved through the present device for allowing the
washing in washing machine of footwear in general, particularly sport footwear, characterized
by comprising means (1; 201; 301; 401) designed to allow to hang up at least one shoe
in the drum of the washing machine in such a way that said shoe can be washed maintaining
substantially the position corresponding to where it hangs.
[0019] Hanging (i.e. being suspended) inside the drum always in the same position during
drum rotation in the wash, rinse and spin phases, the shoe is therefore spaced from
the inner surface of the drum (there is no contact between footwear and drum) and
consequently all the drawbacks are avoided linked with hits, abrasions, and damages
of the shoe during washing.
[0020] In particular the above mentioned means (1; 201; 301) comprise a hanging unit (7)
designed to be inserted inside the shoe to be washed (i.e. the hanging unit is designed
to wear the shoe). This unit (7) is associated to the drum so as to rotate rigidly
with it. It should be noted that the part of hanging unit inserted in the shoe is
not into contact with the drum and is spaced from it so as to allow the interposition
of the thickness of the shoe between hanging unit and drum.
[0021] Blocking the shoe by means of an abutment (most of the unit 7) inside the shoe itself,
the contact between the most of the hanging unit 7 and the inner surface of the shoe
is uniformly distributed and not limited to specific inner areas of the shoe, thus
avoiding localized deformations of the shoe during washing, that can generate permanent
deformations of the shoe; moreover, in this way the contact points of the outer surface
of the shoe with the hanging means are reduced or canceled, with consequent reduction
in the wear and tear of the shoe at these points. Furthermore, blocking of the shoe
is also more stable, whilst, as already mentioned, the shoe deformation, if any, is
extremely reduced.
[0022] The hanging unit (7) adequately comprises a part defining a surface facing toward
the inner face of the sole or inner sole, coming into contact preferably with it,
when the unit is inserted inside the shoe. With the unit inserted inside the shoe
(or the shoe fitted on the unit) the above mentioned surface of the hanging unit (7)
faces the axis of rotation of the drum, thus allowing during rotation, particularly
in the spin phase, water outflow from the sole of the shoe toward the upper. Practically,
the above mentioned surface of the unit facing the axis of the drum divides the drum
into two parts, one first of which contains the axis of rotation thereof, while the
second of which is designed to contain the part of shoe relating to the upper, i.e.
outside the sole; this part is conveniently peripheral relative to the axis of rotation,
so as to have geometrically such an axis of rotation as to generate during the spin
phase, an effective centrifugal force in the water contained in the shoe, or with
which the shoe is impregnated.
[0023] Obviously, the shoe fitted on the hanging unit (7) is oriented with the sole facing
the axis of rotation of the drum and with the inner part of the upper facing toward
the cylindrical lateral surface of the drum, i.e. the outside of the drum.
[0024] Clearly, in this configuration during the spin phase the water tends to go out from
the shoe according to a radial direction practically starting from the sole or from
the surface of the upper, lapping the outer and inner surface thereof, until it detaches
itself from the shoe (which is practically the part nearest to the axis of rotation)
and going toward the outside, and therefore it cannot be blocked by the shoe.
[0025] Advantageously, the hanging unit (7) comprises a shoetree or a foot or shoe shape
19, designed to be inserted inside the shoe. In this way the shoe is "filled" with
an undeformable volume and is not subject to deformations.
[0026] Advantageously, a first group of embodiments comprises:
- at least one supporting element (5; 205; 305) comprising fixing means (3; 203; 303)
to fix, in use, the supporting element on the drum outline so that it is family put
into rotation when the drum (2) rotates;
- means (7, 17) to hang up at least one shoe to the supporting element (5; 205; 305)
so that the shoe can be washed and spun maintaining substantially the position corresponding
to the relative supporting element on which it hangs.
[0027] In accord with this solution, the fixing means (3; 203; 303) therefore allow to engage
said supporting element relative to the walls of the washing machine drum, thus allowing
the drum to put the supporting element into rotation in a rigid and integral manner.
This blocking is conveniently obtained at the lateral wall of the drum, i.e. the lateral
wall of the cylinder forming the drum preferably and advantageously in the positions
of the calendered sheets.
[0028] The means (7, 17) therefore serve to hang up physically the shoe to the drum through
the use of said elements. In this way the shoe, through the supporting means, is put
into rotation by the rotating drum, but is forced to maintain the constraining position
given by the means (7, 17), where it physically hangs. According to this solution,
during washing the shoe cannot therefore crash in a random manner against the walls
of the drum or mutually against the other shoes.
[0029] This solution furthermore avoids shoe being pressed, during the spin cycle, against
the lateral wall of the drum, occupying positions unsuitable for a uniform drying.
[0030] Advantageously, according to a possible embodiment of the present invention, the
means (7, 17) comprise in combination at least one seat (17) obtained in correspondence
of the supporting element (5; 205; 305) and said hanging unit (7) for the shoes destined
to be coupled, in use, to said seat (17) in a releasable manner.
[0031] In this way it is therefore possible easily to couple and release the shoes from
the supporting element through this unit (7), both when the supporting element has
been already installed inside the drum and before this installation.
[0032] The unit (7) advantageously comprises a snap pin (18) or the like, connected to a
shoetree (19) designed to be inserted inside the shoe, and means (20, 21) to allow
to secure said shoe to the shoetree.
[0033] According to this solution, the pin 18 is inserted, in use, in the seat 17, thus
hanging the outline to the support, having previously put the shoe on the outline.
At this point the shoe is secured to the unit through the above mentioned means (20,
21), which can be constituted, for example, by Velcro or, similarly, button systems,
snaps, belts and the like, all well known.
[0034] Obviously, the shoe can be secured for washing also through the simple closing of
its laces on the shoetree, rather than through said means (20, 21).
[0035] From a structural viewpoint, to allow the arrangement of the supporting element inside
the drum of the washing machine, adhering to the walls, the element, according to
a possible construction solution, is firmly connected to a frame (3; 203).
[0036] Advantageously the frame (3; 203) comprises three rods (8; 208) firmly connected
to three supporting elements (5; 205) through three cradles (4; 204).
[0037] According to a possible configuration of the invention, the three rods (208) are
configured in the frame (203) according to a star arrangement.
[0038] In this way the three rods, in use, extend radially towards the lateral surface of
the drum, bringing the above mentioned three supporting elements, to which they are
firmly connected through the cradles, to grip against the surface. In this way the
device remains stably fixed to the drum, and is dragged by it into rotation firmly.
[0039] Alternatively, the rods (8) are configured in the frame according to a triangular
arrangement. In this case the vertexes of the triangle, in use, bring the elements
5 into contact against the walls of the drum.
[0040] To allow an easy fixing of the device to the drum and an easy extraction and removal
thereof, at least one of the above mentioned rods (8; 208) advantageously comprises
a first (9; 209) and a second (10; 210;) portion assembled in a reciprocally movable
manner.
[0041] In this way, by closing reciprocally the two portions of at least one rod, it is
possible to reduce the overall diameter of the device, thus allowing the detachment
from the walls. On the contrary, the inverse operation of extending the rods allows
the device to be easily applied adhering to the inner walls of the drum.
[0042] Advantageously, according to a possible embodiment of the present invention, the
first (9) and the second (10) portion are respectively hinged so as to be reciprocally
foldable, said second portion (10) comprising a threaded collar (12), integral with
it, on which a sleeve (11) can be screwed, mounted slidable on said first portion
(9) so as to close the hinge and put the rod (8), in use, in extended position. In
this way the device remains fixed to the walls. Alternatively, it is possible to free
the hinge by acting in an opposite direction to what previously said, and close the
two portions one over the other. In this way it is possible to fold the rod closing
the device to extract it.
[0043] Alternatively, the first (209) and the second (210) portion of the rod are arranged
in a telescopic manner,
[0044] In this case, there is a closing with retraction of a portion inside the other, and
an opening with extraction and snap blocking.
[0045] Advantageously, a further embodiment of the present invention provides for a supporting
element (305) comprising magnetic elements (303) to engage it, in use, to the outline
of the drum. This constructively simple solution allows to avoid the use of the frame.
[0046] In a further embodiment of the present invention, the means (401) comprise a unit
(407) designed to be coupled directly to the drum of the washing machine.
[0047] To this end the unit (407) comprises a bayonet joint (418) or the like and at least
one shoetree (19) suitable to be inserted inside the shoe to be washed.
[0048] This solution is particularly convenient to be embodied as it requires a simple unit
(407) and a pre-arranged drum.
[0049] In this regard, a drum for washing machine is furthermore described and foreseen
hereafter, characterized by being designed so that a unit (407) can connect to it
through a bayonet joint (418) or the like.
Brief description of the drawings
[0050] Further characteristics and advantages of the device for washing footwear in washing
machine, according to the present invention, will be more apparent from the description
below of an embodiment thereof, by way of non limiting example, with reference to
the attached drawings, wherein:
- figure 1 and figure 2 show an overall view of the present invention according to a
first possible configuration of embodiment;
- figure 3 shows a side view of the invention, while figure 4 shows a detail of movable
joining between two rods forming the frame of the device;
- figure 5 shows a configuration, wherein the present device is closed to allow its
insertion in the drum of the washing machine or
its extraction at the end of use;
- figure 6 and figure 7 show a second embodiment of the present invention;
- figure 8 shows a third embodiment of the invention;
- figure 9 and figure 10 show a fourth embodiment of the invention together with a detail
of the unit 407 allowing to hang the shoes to the supporting element 405;
- figure 11 shows a detail of the unit 7, which allows to hang the shoes to the supporting
elements;
- figures 12 and 13 show a side view of the two first preferred embodiments, with the
shoes hung and inserted inside the drum of the washing machine.
Description of some preferred embodiments
[0051] With reference to the accompanying drawings, a traditional drum 2 of washing machine
has inside itself a device to allow washing of footwear in general, in particular
sport footwear or footwear made of fabric and/or rubber.
[0052] The device, in its most essential aspects, provides for means
(1; 201; 301; 401) designed to allow to hang up at least one shoe in the drum of the washing machine
so that the shoe can be washed, rinsed, and spun maintaining substantially the position
corresponding to where it hangs.
[0053] In particular, according to a first group of embodiments common to three possible
variants of the invention (to this end, see for example figure 1, figure 6 and figure
8), at least one supporting element
(5; 205; 305) is provided comprising fixing means
(3; 203; 303) so as to engage the supporting element, in use, to the outline of the drum. In this
way, when the drum rotates the above mentioned element is firmly put into rotation.
Together with said supporting element means
(7, 17) therefore cooperate, to hang, in use, at least one shoe to said supporting element
(5; 205; 305) so that the shoe can be washed, rinsed and/or spun maintaining substantially the
position corresponding to the relative support where it hangs (see in particular figure
11).
[0054] Entering in construction details of the present invention, figure 1 and figure 2
specifically show a possible first preferred embodiment of the invention. According
to this configuration, three supporting element
5 are obtained in the form of a plate and are substantially V-shaped, so as to replicate
the three respective classical calendered portions
6 of the drum of the washing machine. The application at the calendered sheets from
the inside of the drum assures a better grip and therefore a better dragging of the
above mentioned elements by the drum.
[0055] According to this first preferred embodiment of the invention, the fixing means
3 to engage in use the supporting elements
5 on the outline of the drum comprise a frame
3. In construction detail, the frame is constituted by three cradles
4 having an inner profile suitable to surround the respective three supporting elements
5 and hence approximately V-shaped. In particular, the cradles are firmly connected
to the supporting elements
5 thus obtaining a compact structure in one single piece. As described in figure 1
and figure 2, three rods
8 connect the cradles respectively to each other, thus giving the device 1 as a whole
a substantially triangular shape. Each rod
8 (see to this end figure 3, figure 4, and figure 5) is produced in two portions
9 and
10 respectively hinged, so as to be reciprocally movable, in particular foldable. As
highlighted in figure 3, the portions
9 and
10 of the rods
8 are rigidly maintained reciprocally in-line through the use of a sleeve
11, or similar, slidable on said portions. In particular, with reference, for the sake
of simplicity of the description, to a portion of only one rod
8 highlighted in figure 4, the end
10 provides for a threaded collar
12, rigidly connected to it, on which the sleeve can be screwed. In this way the sleeve
can pass from a first condition, wherein it is unscrewed from the collar and is free
to slide on the portion
9 as shown in figure 5, to a condition, wherein it is screwed on it, closing the hinge
as shown in figure 3. In this way, in the condition shown in figure 5, as the hinges
are free, it is possible to fold the frame, reducing the overall diameter of the whole
triangularly shaped device and thus allowing this latter to be easily inserted in
or removed from the drum of the washing machine. On the contrary, the extended position
of the rods fixes the supporting elements firmly to the walls of the drum
2.
[0056] A second preferred embodiment of the invention (see figure 6 and figure 7) provides
for a star-shaped frame
203. In this case, a central joint
213 couples the rods
208 according to the star arrangement, wherein the rods extend radially toward the walls
of the drum, so that the supporting elements
205 connected to the cradles
204 can grip against the inside of the calendered portions 6 of the drum, exactly as
described for the first configuration.
[0057] As highlighted in figure 6 again, two out of the three rods
208 are monolithic, while a third rod is of the telescopic type. This latter can therefore
comprise a simple release device
211, for example a push button, which allows to release/block to each other the two portions
209 and
210. The portion
210 is therefore obtained slidable inside the cylindrical seat of the portion
209, so that it can move back inside it or extend toward the outside. Going in construction
details of the release device, this comprises an elastic pin arranged at the portion
210. The pin (not represented for the sake of simplicity of the description) extends
externally from a point of the cylindrical surface of the portion
210 and, thanks to an elastic action exerted for example by a spring, is maintained adhering
against the inner cylindrical surface of the portion
209 during the sliding thereof. The portion
209 is furthermore provided with corresponding hole so that, once achieved the preset
height for the extraction, the pin of the portion
210 meets the hole obtained on the portion
209 coming out due to elastic action. In this way the portion
210 is blocked relative to the portion
209. Then, simply by pressing the pin with a finger, it is possible to retract it inside
the hole and retract the portion
210 inside the portion
209.
[0058] The central joint
213, as represented in figure 6 and 7, can connect to the rods
208 in a rotatable manner. To this end, figure 7 better highlights the hinged connection
of the rods
208 with the central joint
213 so that it is furthermore possible to close the rods in a fan manner at the end of
use. This solution is advantageous in terms of bulk. In this way it is possible, in
a simple and fast manner, to release the element
205 from the calendered sheet of the washing machine to remove the entire device integrally
from the drum or to insert the entire device into, and connect it, to the drum.
[0059] The extraction entails the rotation of the rods
208 around the joint. Preferably, for reasons of functional stability of the device,
it is furthermore possible to arrange at least one connection of the rigid type between
rods
208 and cradles
204. It is preferably possible to provide the above mentioned connection rigid relative
to the telescopic rod, while the remaining connections can also be of the rotational
type.
[0060] Obviously, with reference to the above described configurations, solutions with two,
three or more rods can be easily obtained. In addition, even more than one single
rod
(8; 208) can be realized with opening/closing system of the telescopic type, hinge type or
a combination thereof, without however departing from the protective scope of the
present invention.
[0061] A third preferred embodiment of the present invention (see to this end figure 8)
can instead provide for one or more supporting elements
305 devoid of the frame with support function for adherent positioning to the drum. In
this case, the fixing means can be constituted, alternatively, by magnets
303 arranged on the supporting element and realizing directly the adhering connection
of the elements to the drum. Figure 8 shows, for the sake of clarity, the section
of the supporting element
305 according to this configuration with a simple schematization of the magnets
303. Furthermore, from the figure in question it is clear that this support is in the
V-shape completely equivalent to the corresponding elements
5 and
205 described above. Instead of the magnets, it is also possible to use simple screw
devices or the like, which allow a simple removable connection to the drum. In this
case it is therefore possible to provide the supporting elements with screws for a
fast coupling.
[0062] In all the preferred embodiments described above it is furthermore possible to provide,
on the supporting elements, a cover in soft material arranged on the surface destined
to face, in use, the calendered portion of the drum, so as to preserve this surface
of the drum from scratches and to make a contact that eliminates any clearance between
devices and calendered portions and so that there are not noisy contacts during the
rotation of the drum.
[0063] From the above description it is furthermore apparent that the application of the
supporting elements in correspondence of the calendered portions of the drum actually
has, in all the described configurations, the function of assuring a better grip and
therefore a better putting into rotation. However, it is also apparent that this predisposition
is not indispensable, as it is possible to provide connections of the device also
at the smooth portion of the drum.
[0064] Continuing the structural description of the invention, figure 11 describes the means
(7, 17) to hang up at least one shoe to the above mentioned supporting elements
(5; 205; 305) described above with reference to the first three configurations. As it is well shown
in the figures, the shoe hangs from the drum, i.e. it is suspended in the drum without
being into contact with it.
[0065] Entering in construction details, these means comprise in combination at least one
seat
17 obtained in correspondence of the supporting element and destined, in use, to house
a hanging unit
7 for the shoes in a releasable manner. For the sake of clarity this seat
17 is shown in all the figures related to the various preferred configurations of the
present invention.
[0066] As it will be better described hereunder, the unit 7 provides a part to be inserted
inside the shoe, i.e. the shoe to be washed must be wear on said part. This part presents
a surface
19A that comes into contact with, or faces, the inner sole of the shoe. In the preferred
embodiment, this part is a shoetree or, equivalently, a shape imitating a human foot
or a shoe outline, indicated as a whole with number
19. The above mentioned surface
19A of the hanging unit 7 that comes into contact with, or faces, the inner sole of the
shoe is practically the part of shoetree or shape corresponding to the sole of the
human foot. In the preferred embodiment, this surface
19A of the unit
7 faces toward the axis of rotation of the drum.
[0067] Obviously, in other embodiments of hanging unit, this surface may not correspond
to the sole of the human foot. For instance, a unit 7 can provide for a part, to be
inserted inside the shoe, formed only from a toe and a heel connected by a rod which
can be adjustable in length to adapt to the size of the shoe (for example through
a screw/nut screw system, or an elastic rod which can be compressed from a maximum
size to a minimum size, similarly to the shoetrees used to help the shoes keep their
shape when not used); in a case of this type the surface of the unit facing the sole
of the shoe and the axis of rotation of the drum can be the part of rod between the
toe and the heel.
[0068] In the preferred embodiment, the unit
7 comprises a snap pin
18 connected to the shoetree
19 and means
(20, 21) to allow to secure the shoe to the shoetree. These means
(20, 21) can comprise a ribbon
20 connected to the shoetree and provided at the ends with Velcro-type closure
21. Alternatively, the closure can be obtained with a button/buttonhole system, snap
button or the like. According to all the preferred configurations of the invention,
each supporting element
(5; 205; 305) preferably provides for two seats
17.
[0069] A fourth preferred configuration of the invention (to this end see figure 9 and 10)
provides that the above mentioned means
401 comprise substantially a hanging unit
407 for the footwear that is substantially identical to the previous unit 7 described
above. The only substantial difference (see figure 9 and 10) is that the unit comprises
a bayonet joint
418 or the like, arranged to be inserted in an adequate seat
417 obtain directly or already pre-arranged in the drum of the washing machine. In this
sense the drum can provide, on the calendered portion or in a different area, simple
couplers designed to receive the joint
418. The drum is therefore already pre-arranged to be connected to this unit
407.
[0070] Alternatively (see specifically figures 9 and 10), in order to strengthen the connection,
the drum can comprise or be directly produced with a supporting element
405 prearranged from the outside inside the calendered portion
6. The connection of the element
405 can occur for example through common screws or by closing the calendered portion
from the outside through the same sheet of the drum which defines the cylindrical
shape thereof. In this regard, as indicated in figure 10, the triangular shape is
particularly convenient, suitable to adapt to the shape of the external seat of the
calendered portion. According to this solution the seat
417 is therefore obtained in the joint
405 so as to engage in use with the unit
407.
[0071] For all the described configurations of the units
(7; 407) it should be specified that the shoetree
19 is produced in a plastic material or in metal light alloys, or anyway in an adequately
non-absorbent material, and provided with a plurality of through holes 19B. In particular,
a particularly advantageous embodiment comprises the production of the shoetree so
that it is hollow (cavity signed with a broken line only in figure 11 and indicated
with 19C) inside and of adequate thickness. In this way water flows through the holes
inside the cavity, and exits from it at high speed. In this way the shoetree has also
an additional function of efficient rinse, in addition to guaranteeing an optimum
outflow of the liquid, thus avoiding water stagnation due to the presence of the the
shoetree.
[0072] Furthermore, thanks to the presence of a plurality of through holes with small diameter,
the water outflow speed is significantly greater than the water speed due to rotation,
and this has a further beneficial washing effect.
[0073] As it is readily apparent from the figures, it should be noted again that the position
of the shoetree 19, on which the shoe is worn, is such that the "sole" of the shoetree
faces toward the axis of the drum, as consequently the sole of the shoe is equally
oriented. In this way the water, during rotation of the spin cycle, moving in radial
direction toward the cylindrical lateral surface of the drum, is not hindered in its
outflow from the impermeable sole of the shoe or from the impermeable perimeter of
the upper near it.
[0074] In general, the term "facing" and "faces toward" the axis of the drum relating to
the surface of the unit 7, refers to a surface of a body which lies mainly on a plane
and does not pass through the axis of the drum. From a geometric viewpoint, it is
possible practically to say that the surface of the unit facing the axis of the drum
divides the drum into two parts, of which one first contains the axis of rotation
thereof, while the second is suitable to contain the part of shoe relating to the
upper, i.e. outside the sole;
[0075] Having structurally described the invention in its more essential aspects, the operation
thereof will be now described in the following.
[0076] Figure 12 and figure 13 show respectively the first and the second preferred configuration
mounted in use inside the drum of the washing machine. Obviously, also the third configuration
and the fourth configuration has a completely similar function, that is not represented
only for the sake of simplicity. First of all, the device is inserted inside the drum
so as to be fixed to the walls through the frame (as regards first and second configuration)
or through magnets or the like as described for the third configuration. As described
in the two phases of figure 11, the shoe is then put on the shoetree
19 and fixed to the shoetree
19 through the ribbon
20 or through the shoe laces. At this point the shoe is hung on the respective seat
17 by coupling the snap pin
18 inside the seat
17.
[0077] In the case of fourth preferred embodiment, the bayonet joint
418 is inserted in the already pre-arranged seat of (or in) the drum. This operation
is repeated for the desired number of shoes, until to achieve for example the case
represented in figure 12 and 13, wherein the device supports six shoes (three on the
front and three on the back - see also seats 17 in figure 1). As clearly highlighted
in figure 2, the present device can house, in fact, up to three pairs of shoes. At
this point it is possible to wash the shoes that, being constrained to the device,
are hindered from bumping and moving randomly inside the drum, remaining fixed in
the position in which they have been hung.
[0078] At the end of the washing, by acting on the snap pin 18 the whole unit 7 with the
hung shoe is removed from the drum, or the bayonet joint 418 is removed in the case
of unit 407 as regards the means 401. Lastly, the device is removed by folding the
rods (8; 208) of the frame in the case of the first two configurations or removing
directly the elements 305 of the third configuration.
[0079] It should be noted that, during the spin cycle, the centrifugal force acting on the
shoe will maintain the shoe immovable, pressing it with the inner sole on the shoetree
inside the sole. In this way, the fabrics of the upper, which generally expand for
some centimeters inside the shoe between lower sole and inner sole, will be highly
compressed by the outer sole of the shoe, that pressing the inner sole against the
shoetree will hold the fabrics effectively without the heat welds, or glued seams
or seams, of the uppers to the soles being subject to stresses due to the centrifugal
force able to generate in the fabrics in the gluing areas or similar unidirectional
tractions able to cause the detachment of the fabric of the upper from the soles.
[0080] During the spin cycle, the water with which the shoes are impregnated will be subjected
to the centrifugal force and flow toward the outside of the shoe in the area for the
entrance of the foot or through the parts of the upper which are water permeable,
or it lap the inner or outer surface of the upper. In this way the spin action will
be homogeneous for each shoe and very effective; in fact the soles of sport shoes
or technical shoes in general, which are usually impermeable, will be (they are fixed
to the device) with the inner concavity facing the cylindrical lateral walls of the
drum, and therefore, during the spin action, with the use of the invented device,
the water can flow from the shoe toward said walls of the drum without being hindered
by the impermeable sole.
[0081] During the spin phases the sole of the shoe will be therefore mainly subject to a
uniform pressure on the sole of the same type of that generated during walking, i.e.
to stresses for which the shoe is expressly designed.
[0082] In this way, with the use of the invented device it will not occur what easily occurs
when one doesn't use it, washing the shoes free to move randomly inside the drum,
providing the possibility that the underlying sole of the shoe is placed into contact
with the cylindrical walls of the drum, avoiding water, flowing towards the impermeable
sole, under the action of the centrifugal force, detaching from the shoe, remaining
or on the inner sole or inside the spaces of the inner frame of the sole which is
almost always constituted by convex spaces with the aperture facing the inner sole,
thus thwarting the scope of the spin operation. With the invented device at the end
of washing the shoes will have in fabrics a very low residual humidity rate and, above
all, the distribution of the humidity in the shoe will be uniform and such that a
subsequent uniform drying will occur, which will not cause deformations of the shoe.
[0083] It should be noted that with the loading of the wash and prewash water, which achieves
a given height inside the drum, also the alternative rotation will start, i.e. a series
of turns in clockwise direction and series of turns in counterclockwise direction.
When the shoes rotate in the lower part, they ship water in a very effective manner
thanks to the way in which they move. Water will flow inside the shoe through the
perforated shoetrees 19 of the hanging unit 7 and, during movement, water will flow
inside the cavity 19C defined inside the shoetree 19 exiting from the other holes
19B, therefore generating at the same time numerous washing jets in the inner walls
of the shoe. When, during rotation, the shoe will go up at a greater height inside
the drum, contemporaneously the water will flow in the inner areas of the shoe not
already achieved; therefore water, flowing from the inside of the shoetree through
the holes 19B, will produce jets with an increased flow speed.
[0084] The perforated shoetree 19 on one hand allows flowing in all the inner areas of the
shoe increasing the efficiency of the washing thanks to the greater speed of water
flowing from the jets, on the other hand it maintains during washing the shoe in shape
and prevents it from pressing or deforming even if washing cycles with hot water are
provided.
[0085] With reference to the currently known devices described in the cited patents, it
is clearly apparent that the device according to the present invention is able to
block more stably the shoes to be washed, avoiding impacts or abrasions on the shoes,
as well as their deformations, and furthermore allows to avoid water stagnation on
the areas inside the shoes related to the soles and the perimeter areas adjacent to
them. Lastly, it allows to obtain a surely more effective washing effect, as at the
end of each rinse cycle, after the spin phase the water remaining in the shoe is minimum
due to the effect of non-stagnation and therefore each load of clean water contributes
to an effective washing ending with the last spin cycle.
[0086] At this point, it is clearly apparent that all the objects of the present invention
have been achieved. It is particularly clearly apparent that such a device allows
washing shoes avoiding them from impact against each other and against the walls of
the drum, thus avoiding damages to the drum, deformations and wear of the shoes. Furthermore,
the drying is now very effective, as the shoes during the spin cycle cannot place
themselves with the sole facing the cylindrical lateral walls of the drum.
1. Device to allow the washing in washing machine of footwear, particularly sport footwear,
comprising means (1; 201; 301; 401) designed to allow to hang up at least one shoe
on the drum of the washing machine, so that said shoe can be washed substantially
maintaining the position corresponding to where it hangs, that is a position in which
the shoe is spaced from the drum, said means (1; 201; 301, 401) comprising at least
one hanging unit able to be inserted inside the shoe to be washed; in use, said unit
(7) being associated to said drum so as to rigidly rotate with it.
2. Device as claimed in claim 1, wherein said hanging unit (7) comprises a part (19)
defining a surface (19A) facing the sole of the shoe when inserted inside the shoe;
in use, said surface (19A) of the hanging unit (7) facing the axis of rotation of
the drum, thus allowing, during rotation, water outflow from the sole of the shoe
toward the upper.
3. Device as claimed in claim 1 or 2, wherein said hanging unit (7) comprises a shoetree
or a foot shape or shoe shape, designed to be inserted inside the shoe.
4. A device as claimed in one or more of the previous claims, wherein said means (1;
201; 301) comprise:
- at least one supporting element (5; 205; 305) comprising fixing means (3; 203; 303)
to fix, in use, said supporting element on the outline of the drum in such a way it
rotates rigidly when the drum (2) rotates;
- means (7, 17) to hang up at least one shoe on said supporting element (5; 205; 305)
in such a way that the shoe can be washed maintaining substantially the position corresponding
to the corresponding support on which it hangs.
5. Device as claimed in claim 4, wherein said means (7, 17) comprise in combination at
least one seat (17) obtained in correspondence of said at least one supporting element
(5; 205; 305) and a said hanging unit (7) for footwear destined to be coupled, in
use, to said seat in a releasable manner.
6. A device as claimed in claim 5, wherein said unit (7) comprises a snap pin (18), connected
to a shoetree (19), to be inserted inside the shoe and means (20, 21) to allow to
secure said shoe to the shoetrees.
7. A device as claimed in one or more of claims 4 to 6, wherein said at least one supporting
element (5; 205) is firmly connected to a frame (3; 203) designed in such a way to
constrain said supporting element (5; 205) against the surface of the drum.
8. A device as claimed in claim 7, wherein the frame (3; 203) comprises three rods (8;
208) rigidly connected to three supporting elements (5; 205) through three cradles
(4; 204).
9. A device as claimed in claim 8, wherein said three rods (208) are configured in the
frame (203) according to a star arrangement.
10. A device as claimed in claim 8, wherein said three rods (8) are configured in the
frame according to a triangle arrangement.
11. A device as claimed in clam 9 or 10, wherein at least one of said rods (8; 208) comprises
a first (9; 209) and a second (10; 210) portion assembled reciprocally movable.
12. A device as claimed in claim 11, wherein the first (9) and the second (10) portion
are respectively hinged so as to be reciprocally foldable, said second portion (10)
comprising a threaded collar (12), on which a sleeve (11) can be screwed, assembled
slidable on said first portion (9) so as to close the hinge and to block the rod (8).
13. A device as claimed in claim 11, wherein said first (209) and said second (210) portion
are assembled in a telescopic manner.
14. A device as claimed in one or more of claims 4 to 6, wherein said supporting element
(305) comprises magnetic elements (303) to engage, in use, said supporting element
on the outline of the drum.
15. A device as claimed in one or more of claims 1 to 3, wherein said means (401) comprise
a unit (407) configured to couple directly to the drum of the washing machine.
16. A device as claimed in claim 15, wherein said unit (407) comprises a bayonet joint
(418) and at least one shoetree (19) or the like able to be inserted inside the shoe.
17. A device as claimed in one or more of claims 2 to 16, wherein said shoetree (19) or
the like is provided with a plurality of through holes (19B) for water passage.
18. A device as claimed in one or more of claims 2 to 16, wherein said shoetree (19) or
the like is hollow inside; on the thickness of said shoetree (19) being present a
plurality of through holes for water passage, communicating between said cavity (19C)
and the outside of the shoetree (19).
19. A system for washing footwear inside washing machines, comprising a device as claimed
in previous claims 15 and/or 16 and/or the following, and a drum for washing machine,
wherein said drum is pre-arranged so that said unit (407) of said device can connect
to the drum through a bayonet joint (418) or the like.
1. Vorrichtung zum Ermöglichen des Waschens von Fußbekleidung, insbesondere Sportfußbekleidung,
in einer Waschmaschine, wobei die Vorrichtung Mittel (1; 201; 301; 401) umfasst, die
so entworfen sind, dass sie das Aufhängen mindestens eines Schuhs an der Trommel der
Waschmaschine ermöglicht, so dass der Schuh gewaschen werden kann, wobei er im Wesentlichen
die entsprechende Position, wo er hängt, beibehält, das heißt eine Position, in welcher
der Schuh von der Trommel beabstandet ist, wobei das Mittel (1; 201; 301; 401) mindestens
eine Hängeeinheit umfasst, die in das Innere des zu waschenden Schuhs eingeführt werden
kann; wobei die Einheit (7), bei Verwendung, mit der Trommel so verbunden ist, dass
sie starr mit ihr rotiert.
2. Vorrichtung gemäß Anspruch 1, wobei die Hängeeinheit (7) einen Teil (19) umfasst,
der eine Oberfläche (19A) definiert, die, wenn sie in das Innere des Schuhs eingeführt
ist, der Sohle gegenüberliegt; die Oberfläche (19A) der Hängeeinheit (7), bei Verwendung,
der Rotationsachse der Trommel gegenüberliegt, so dass sie, während der Drehung, das
Ausfließen von Wasser von der Sohle des Schuhs in Richtung des Oberteils erlaubt.
3. Vorrichtung gemäß Anspruch 1 oder 2, wobei die Hängeeinheit (7) einen Schuhspanner
oder eine Fußform oder eine Schuhform umfasst, die zum Einführen in das Innere des
Schuhs entworfen ist.
4. Vorrichtung gemäß einem oder mehreren der vorhergehenden Ansprüche, wobei das Mittel
(1; 201; 301) umfasst:
- mindestens ein Tragelement (5; 205; 305), das Befestigungsmittel (3; 203; 303) zum
Befestigen, bei Verwendung, des Tragelements am Umfang der Trommel auf eine solche
Weise umfasst, dass es starr rotiert, wenn die Trommel (2) rotiert;
- Mittel (7, 17) zum Aufhängen mindestens eines Schuhs an dem Tragelement (5; 205;
305) auf eine solche Weise, dass der Schuh gewaschen werden kann, wobei er im Wesentlichen
die Position, die dem entsprechenden Träger, an dem er hängt, entspricht, beibehält.
5. Vorrichtung gemäß Anspruch 4, wobei die Mittel (7, 17) in Kombination mindestens einen
Sitz (17) umfassen, der in Übereinstimmung von dem mindestens einen Tragelement (5;
205; 305) und der Hängeeinheit (7) für Fußbekleidung, zur Verbindung, bei Verwendung,
mit dem Sitz auf lösbare Weise bestimmt, erhalten wird.
6. Vorrichtung gemäß Anspruch 5, wobei die Einheit (7) einen Raststift (18), der mit
einem Schuhspanner (19) zum Einführen in das Innere des Schuhs verbunden ist, und
Mittel (20, 21) zum Ermöglichen des Sicherns des Schuhs an dem Schuhspanner umfasst.
7. Vorrichtung gemäß einem oder mehreren der Ansprüche 4 bis 6, wobei das mindestens
eine Tragelement (5; 205) mit einem Rahmen (3; 203) fest verbunden ist, der auf eine
solche Weise konstruiert ist, dass er das Tragelement (5; 205) gegen die Oberfläche
der Trommel zwingt.
8. Vorrichtung gemäß Anspruch 7, wobei der Rahmen (3; 203) drei Stangen (8; 208) umfasst,
die mit drei Tragelementen (5; 205) durch drei Aufnahmen (4; 204) starr verbunden
sind.
9. Vorrichtung gemäß Anspruch 8, wobei die drei Stangen (208) in dem Rahmen (203) entsprechend
einer Sternanordnung konfiguriert sind.
10. Vorrichtung gemäß Anspruch 8, wobei die drei Stangen (8) in dem Rahmen gemäß einer
Dreiecksanordnung konfiguriert sind.
11. Vorrichtung gemäß Anspruch 9 oder 10, wobei mindestens eine der Stangen (8; 208) einen
ersten (9; 209) und einen zweiten (10; 210) Teil umfasst, die wechselseitig beweglich
zusammengesetzt sind.
12. Vorrichtung gemäß Anspruch 11, wobei der erste (9) und der zweite (10) Teil jeweils
gelenkig sind, so dass sie wechselseitig faltbar sind, der zweite Teil (10) einen
Gewindehals (12) umfasst, auf den eine Hülse (11) geschraubt werden kann, die verschiebbar
auf dem ersten Teil (9) angebracht ist, um so das Gelenk zu schließen und die Stange
(8) zu blockieren.
13. Vorrichtung gemäß Anspruch 11, wobei der erste (209) und der zweite (210) Teil auf
eine teleskopierbare Weise zusammengesetzt sind.
14. Vorrichtung gemäß einem oder mehreren der Ansprüche 4 bis 6, wobei das Tragelement
(305) magnetische Elemente (303) zum Eingriff, bei Verwendung, des Tragelements an
dem Umfang der Trommel umfasst.
15. Vorrichtung gemäß einem oder mehreren der Ansprüche 1 bis 3, wobei das Mittel (401)
eine Einheit (407) umfasst, die zur direkten Verbindung mit der Trommel der Waschmaschine
konfiguriert ist.
16. Vorrichtung gemäß Anspruch 15, wobei die Einheit (407) eine Bajonett-Verbindung (418)
und mindestens einen Schuhspanner (19) oder dergleichen, der in das Innere des Schuhs
eingeführt werden kann, umfasst.
17. Vorrichtung gemäß einem oder mehreren der Ansprüche 2 bis 16, wobei der Schuhspanner
(19) oder dergleichen mit einer Anzahl von Durchgangslöchern (19B) zum Wasserdurchtritt
versehen ist.
18. Vorrichtung gemäß einem oder mehreren der Ansprüche 2 bis 16, wobei der Schuhspanner
(19) oder dergleichen im Inneren hohl ist; in der Dicke des Schuhspanners (19) eine
Anzahl von Löchern zum Wasserdurchtritt, die zwischen dem Hohlraum (19C) und dem Äußeren
des Schuhspanners (19) kommunizieren, vorhanden ist.
19. System zum Waschen von Fußbekleidung im Inneren von Waschmaschinen, das eine Vorrichtung
gemäß den vorhergehenden Ansprüchen 15 und/oder 16 und/oder den folgenden und eine
Trommel für eine Waschmaschine umfasst, wobei die Trommel vorbereitet ist, so dass
die Einheit (407) der Vorrichtung mit der Trommel durch eine Bajonett-Verbindung (418)
oder dergleichen verbunden werden kann.
1. Dispositif permettant le lavage dans une machine à laver de chaussures, en particulier
de chaussures de sport, comprenant des moyens (1; 201;301; 401) conçus pour permettre
de suspendre au moins une chaussure au tambour de la machine à laver, de sorte que
ladite chaussure puisse être lavée substantiellement en se maintenant à l'endroit
où elle est suspendue, qui est un endroit où la chaussure est espacée du tambour,
lesdits moyens (1; 201; 301; 401) comprenant au moins une unité de suspension susceptible
d'être introduite à l'intérieur de la chaussure à laver ; lors de l'utilisation, ladite
unité (7) étant associée audit tambour de manière à tourner solidairement avec lui.
2. Un dispositif selon la revendication 1, dans lequel ladite unité de suspension (7)
comprend une partie (19) définissant une surface (19a) faisant face à la semelle de
la chaussure lorsqu'elle est introduite à l'intérieur de la chaussure ; lors de l'utilisation,
ladite surface (19A) de l'unité de suspension (7) faisant face à l'axe de rotation
du tambour, permettant ainsi, durant la rotation, la circulation de l'eau de la semelle
de chaussure vers le haut.
3. Un dispositif selon la revendication 1 ou 2, dans lequel ladite unité de suspension
(7) comprend un arbre à chaussures ou une forme de pied ou une forme de chaussure,
conçu(e) pour être introduit(e) à l'intérieur de la chaussure.
4. Un dispositif selon une ou plusieurs des revendications précédentes, dans lequel lesdits
moyens (1; 201; 301) comprennent :
- au moins un élément de support (5; 205; 305) comprenant des moyens de fixation (3;
203; 303) pour fixer, lors de l'utilisation, ledit élément support sur la périphérie
du tambour de telle manière qu'il tourne solidairement lorsque le tambour (2) tourne
;
- des moyens (7; 17) pour suspendre au moins une chaussure audit élément de support
(5; 205; 305) de telle manière que la chaussure puisse être lavée en se maintenant
substantiellement à l'endroit correspondant au support correspondant auquel elle est
suspendue.
5. Un dispositif selon la revendication 4, dans lequel lesdits moyens (7; 17) comprennent
en combinaison au moins un siège (17) obtenu en correspondance dudit élément de support
(5; 205; 305) et une unité de suspension (7) pour chaussure destinée à être couplée,
lors de l'utilisation, audit siège d'une manière amovible.
6. Un dispositif selon la revendication 5, dans lequel ladite unité (7) comprend une
tige de fixation par encliquetage (18) reliée audit arbre à chaussures (19), destinée
à être introduite à l'intérieur de la chaussure et des moyens (20,21) pour permettre
la fixation de ladite chaussure audit arbre à chaussures.
7. Un dispositif selon une ou plusieurs des revendications 4 à 6, dans lequel ledit élément
de support (5; 205) est fermement relié à un cadre (3; 203) conçu de manière à plaquer
ledit élément de support (5; 205) contre la surface du tambour.
8. Un dispositif selon la revendication 7, dans lequel le cadre (3; 203) comprend trois
tiges (8; 208) reliées solidairement à trois éléments de support (5; 205) par l'intermédiaire
de trois brides de fixation (4; 204).
9. Un dispositif selon la revendication 8, dans lequel lesdites trois tiges (208) sont
configurées dans le cadre (203) selon un agencement en étoile.
10. Un dispositif selon la revendication 8, dans lequel lesdites trois tiges (8) sont
configurées dans le cadre selon un agencement en triangle.
11. Un dispositif selon la revendication 9 ou 10, dans lequel au moins l'une des tiges
(8; 208) comprend une première partie (9; 209) et une seconde partie (10; 201) assemblées
de manière à être déplaçables l'une par rapport à l'autre.
12. Un dispositif selon la revendication 11, dans lequel lesdites première (9) et seconde
(10) parties sont articulées l'une par rapport à l'autre de manière à pouvoir être
pliables l'une par rapport à l'autre, ladite seconde partie (10) comprenant un col
fileté (12), sur lequel un manchon (11) peut être vissé, monté coulissant sur ladite
première partie (9) de manière à fermer l'articulation et à bloquer la tige (8).
13. Un dispositif selon la revendication 11, dans lequel ladite première partie (209)
et ladite seconde partie (210) sont assemblées de manière télescopique.
14. Un dispositif selon une ou plusieurs des revendications 4 à 6, dans lequel ledit élément
de support (305) comprend des éléments magnétiques (303) destinés à venir en prise,
lors de l'utilisation, avec ledit élément de support sur la périphérie du tambour.
15. Un dispositif selon une ou plusieurs des revendications 1 à 3, dans lequel lesdits
moyens (401) comprennent une unité (407) configurée pour se coupler directement au
tambour de la machine à laver.
16. Un dispositif selon la revendication 15, dans lequel ladite unité (407) comprend un
joint à baïonnette (418) et au moins un arbre à chaussures (19) ou similaire, apte
à être introduit dans la chaussure.
17. Un dispositif selon une ou plusieurs des revendications 2 à 16, dans lequel ledit
arbre à chaussures (19) ou similaire est pourvu d'une pluralité de trous traversants
(19B) pour le passage de l'eau.
18. Un dispositif selon une ou plusieurs des revendications 2 à 16, dans lequel ledit
arbre à chaussures (19) ou similaire est creux ; sur l'épaisseur dudit arbre à chaussures
(19) étant présente une pluralité de trous traversants pour le passage de l'eau, communiquant
entre ladite cavité (19C) et l'extérieur de l'arbre à chaussures (19).
19. Un système pour le lavage de chaussures à l'intérieur de machines à laver, comprenant
un dispositif selon l'une des revendications précédentes 15 et/ou 16 et/ou suivantes,
et un tambour pour machine à laver, dans lequel ledit tambour est pré-agencé de manière
à ce que ladite unité (407) dudit dispositif puisse se reliée au tambour au moyen
d'un joint à baïonnette (418) ou similaire.