[0001] The present invention relates to a dispenser device of a jet of water, such as a
hand shower, shower head or bulb, in particular of the plate-type, i.e. having a flattened
shape, with an extension in the plane perpendicular to the dispensing direction of
the jet of water much greater than the thickness or height of the dispenser device.
[0002] In sanitary systems for dispensing or distributing water, once the dispensing is
interrupted for example by a user, the water present in the end dispensing device
does not flow away immediately and completely. On the contrary, the dispensing device
continues to dispense a quantity, even if minimal, of water, for example in the form
of drops, for several seconds.
[0003] In some sanitary appliances, for example in the case of shower heads of particularly
large dimensions and a flattened shape, this phenomenon is very accentuated and is
somewhat unpleasant. In fact, in this type of dispensing device the surface tension
of the thin layer of water between opposite walls of greater dimensions than the dispensing
device contributes to preventing an immediate and complete emptying of the water.
[0004] Attempts have been made to overcome this drawback by providing the dispensing device
for example with an external air intake valve, so that, at the end of dispensing the
flow of water from a supply duct to the dispensing device, the aspirated air pushes
the residual water out.
[0005] However, this problem has not yet been solved in a satisfactory way, especially in
the case of dispensing devices having a flattened shape and large size.
[0006] The need is therefore deeply felt to remedy such a drawback, and thereby provide
a dispensing or distribution system of a liquid in which, at the moment of interrupting
the supply, all the liquid is immediately emptied without giving rise to dripping
phenomena.
[0007] The purpose of the present invention is to propose a dispensing device of a jet of
water able to satisfy this need, even in the case of plate-type and large dispensing
devices.
[0008] Such purpose is achieved by a dispenser device according to claim 1. The dependent
claims describe preferred or advantageous embodiments of the dispenser device according
to the invention.
[0009] The characteristics and advantages of the dispenser device according to the invention
will, in any case, be evident from the description given below of its preferred embodiments,
made by way of a non-limiting example with reference to the appended drawings, wherein:
-figure 1 is a perspective view in axial cross-section of the dispenser device according
to the invention;
Figure 2 is an axial cross-section of the dispenser device;
- Figure 2a is an enlarged view of the detail A circled in figure 2;
Figure 3 is an exploded perspective view from above of the dispenser device;
Figure 4 is an exploded perspective view from below of the dispenser device; and
- Figure 5 is a perspective view of the dispenser plate and the inner plate assembled
together.
[0010] In said drawings, reference numeral 1 globally denotes a dispenser device of a jet
of water according to the invention. The device 1 illustrated in the drawings is in
the form of a shower head, in particular of the plate-type, i.e. having an extension
in the plane perpendicular to the dispensing direction of the jet of water much greater
than the thickness of the shower head. It is clear, however, that the teaching of
the present invention could likewise be implemented in a hand-held shower, or even
a dispenser head of a tap such as for a bathtub.
[0011] In the following description, for simplicity, a jet of water directed vertically
will be considered. The dispenser device, in this case, has a main extension in the
horizontal plane.
[0012] The device 1 comprises, in a general embodiment, a device body 10 defining a dispensing
chamber 100 of a flat shape, i.e. suitable to receive a layer of water extending horizontally
but very thin.
[0013] The device body 1 is provided with a connection element 200 suitable to fluidically
connect the dispensing chamber 100 with a water supply pipe - not shown.
[0014] The device body 1 is delimited at the bottom by a dispenser plate 14. In this dispenser
plate 14 a plurality of outlet holes 16 of the water are made.
[0015] In a preferred embodiment, the water outlet holes 16 are uniformly distributed in
the dispenser plate 14, so as to generate a rain-like jet of water.
[0016] On the inner side of the dispenser plate 14, i.e. on the side facing the dispensing
chamber 100, an inner plate 18 is positioned. From this inner plate 18 a plurality
of dispensing nozzles 20 extend which are inserted in the respective water outlet
holes 16. Each dispensing nozzle 20 is in fluidic communication with the dispensing
chamber 100.
[0017] In one embodiment, the dispensing nozzles 20 pass through the entire thickness of
the dispenser plate 14 and protrude downwards from it.
[0018] In one embodiment, the inner plate 18 and the dispensing nozzles 20 are made in a
single body made of a soft material. The dispensing nozzles 20 of soft material protruding
from the dispenser plate can be pressed by the user to remove limescale.
[0019] Therefore, the dispensing chamber 100 is delimited below by the inner plate 18.
[0020] The device body 1 comprises a closure plate 22 which delimits the dispensing chamber
100 above.
[0021] The device body 1 further comprises a side wall 24 which connects the dispenser plate
14 to the closure plate 22.
[0022] According to one aspect of the invention, in the thickness of the inner plate 18
a plurality of concave, truncated-pyramid portions 26 is made.
[0023] Each of these concave, truncated-pyramid portions 26 has a base 262 open towards
the dispensing chamber 100 and the vertex 264 coinciding with a respective dispensing
nozzle 20. More precisely, the vertex 264 coincides with the inlet opening of the
water of a respective nozzle 20.
[0024] In other words, each concave truncated-pyramid portion 26 and the respective dispensing
nozzle 20 form a sort of funnel for the water present in the dispensing chamber 100.
[0025] As illustrated in the drawings, since the inner plate 18 also has an extension in
the plane perpendicular to the dispensing direction of the jet of water much greater
than its thickness, the base 262 of each concave truncated-pyramid portion 26 is greater
than the height. In other words, the side walls 266 of the concave portions 26 have
a slightly accentuated slope, but in any case sufficient to overcome the surface tension
of the molecules of water so as to cause, by gravity, the exit of the water from the
side walls towards the respective dispensing nozzles 20.
[0026] In addition, each concave portion 26 has each side of its base 262 in common with
a side or with a portion of the side of an adjacent conical portion, in such a way
that the surface of the inner plate 18 facing towards the dispensing chamber is substantially
devoid of flat portions.
[0027] In other words, the upper surface of the inner plate is formed exclusively by concave
portions 26 adjacent to each other seamlessly.
[0028] In other terms again, the bases 262 of the concave portions form a lattice of edges.
[0029] Preferably, the sides, or edges, which delimit the open bases 262 of the concave
portions 26, lie on the same horizontal plane.
[0030] Therefore, when the water supply to the dispensing chamber 100 is interrupted the
layer of water present in the dispensing chamber 100, even if devoid of pressure,
does not find any flat surface that prevents, due to the surface tension of the molecules
of water, the complete emptying towards the dispensing nozzles.
[0031] On the contrary, as mentioned above, the layer of water slides by gravity along the
side walls of the concave portions 266 and reaches the dispensing nozzles 20.
[0032] In an embodiment illustrated in the drawings, the device body 10, the dispenser plate
14 and the inner plate 18 have a circular outline. In this case, the concave truncated-pyramid
portions 26 may be made along concentric circular crowns.
[0033] As a result, the sides of the base 262 of each concave truncated-pyramid portion
26 form a circular crown sector.
[0034] In an embodiment variant in which the device body, the dispenser plate and the inner
plate have a rectangular shape, the concave truncated-pyramid portions have a rectangular
base.
[0035] In one embodiment, to further accentuate the sliding of the water along the side
walls 266 of the concave portions, said side walls are provided with ribs 268 which
extend from the sides of the base 262 towards the respective dispensing nozzle 20.
These ribs 268 further prevent the adhesion of the water molecules to the side walls
266.
[0036] In a preferred embodiment, particularly suitable in the case of dispensing devices
in which the dispensing chamber is so thin that it also creates a surface tension
between the water molecules and the upper wall of the device body, i.e. the wall which
delimits the dispensing chamber from the side opposite the dispenser plate, the complete
and immediate emptying of the dispensing chamber is further facilitated by providing
in the connection element 200 suction means 300 suitable to aspirate air from the
outside and to introduce the aspirated air into the dispensing chamber 100.
[0037] An example of such of air suction means is described in
DE202010001468 U1, on behalf of the same Applicant.
[0038] The connection element 200 comprises a connection body 202 in which an inlet duct
204 connected to the water supply pipe, an outlet duct 206 in fluidic communication
with the dispensing chamber 100, and at least one intermediate passage placing the
inlet duct in fluidic communication with the outlet duct, are made. In the connection
body 202 an air suction channel 208 communicating with the outside and open towards
the outlet duct 206 is also made. An obturator movable between a closed position of
the suction channel 208 and an open position of the suction channel 208 for the aspiration
of air from the outside toward the outlet duct 206 is associated with this suction
channel 208.
[0039] In particular, the obturator device is kept in the closed position of the suction
channel 208 by the water pressure flowing through the connection element 200; when
the water supply stops, and therefore the pressure on the obturator stops, the latter
returns, for example by gravity, to the open position of the suction channel 208,
so that an air flow is aspirated from the outside and introduced into the dispensing
chamber 100. This air flow helps to overcome the force of cohesion between the water
molecules and the walls which delimit the dispensing chamber 100, in particular the
wall of the closure plate 22.
[0040] Returning now to the structure of the device body, in one embodiment the dispenser
plate 14 has a peripheral edge which forms the side wall 24 of the device body. For
example, this side wall 24 extends perpendicular to the plane where the water outlet
holes 16 are made.
[0041] In one embodiment, a plurality of fastening pins 142 extend from the dispenser plate
14 into the dispensing chamber, in each of which a threaded hole 144 is made. The
closure plate 22 of the device body 10 is connected to the dispenser plate 14 by means
of fastening screws 222 screwed into the threaded holes 144.
[0042] In the sectional view of Figure 2 and in the enlarged detail of Figure 2a, one can
see how the closure plate 22 is provided, around each fastening pin and along its
peripheral edge, with sealing walls 224, 226 which extend towards the inner plate
and which are provided with sealing ribs 228 suitable to incise the inner plate 18
so as to completely seal the dispensing chamber 100.
[0043] In one embodiment, the connection element 200 comprises a ball joint 210 which allows
the oscillation of the dispensing device relative to the water supply pipe. To such
purpose, the closure plate 22 is provided with a threaded collar 230 which forms a
joint seat for the ball joint 210. The latter is retained in the joint seat with the
possibility of oscillation by means of a threaded sleeve 232 screwed onto the threaded
collar.
[0044] In one embodiment, the closure plate 22, fixed by means of screws 222 to the dispenser
plate 14, is coated with a cover plate 30, for example bent around or welded to the
closure plate 22, so as to conceal from view the heads of the screws 222.
[0045] A person skilled in the art may make modifications and adaptations to the embodiments
of the dispenser device according to the invention, replacing elements with others
functionally equivalent so as to satisfy contingent requirements while remaining within
the sphere of protection of the following claims. Each of the characteristics described
as belonging to a possible embodiment may be realised independently of the other embodiments
described.
1. Dispenser device of a jet of water, comprising:
- a device body (10) defining a dispensing chamber (100) of a flattened shape with
a main extension in the direction perpendicular to that of the output jet of water,
said device body (10) being provided with a connection element (200) suitable to fluidly
connect the dispensing chamber (100) to a water supply pipe;
- a dispenser plate (14) which forms a wall of the device body and in which a plurality
of outlet holes (16) of the water are made,
- an inner plate (18) which rests on the dispenser plate and from which a plurality
of dispensing nozzles (20) extend which are inserted in respective outlet holes (16)
of the water, each dispensing nozzle (20) being in fluidic communication with the
dispensing chamber (100),
the device being
characterised in that in the thickness of the inner plate (18) a plurality of concave truncated-pyramid
portions (26) are made, each having its base (262) open towards the dispensing chamber
and the vertex (264) coinciding with a respective dispensing nozzle (20), each concave
portion (26) having each side of its base in common with a side or with a portion
of the side of an adjacent concave portion (26), in such a way that the surface of
the inner plate (18) facing towards the dispensing chamber (100) is substantially
devoid of flat portions.
2. Device according to claim 1, wherein the outlet holes (16) of the water, with their
respective dispensing nozzles (20), are uniformly distributed over the entire surface
of the dispenser plate (14).
3. Device according to claim 1 or 2, wherein the inner plate (18) and the dispensing
nozzles (20) are made in a single body made of a soft material.
4. Device according to any one of the preceding claims, wherein the device body, the
dispenser plate and the inner plate have a circular shape, and wherein the concave
truncated-pyramidal portions (26) are made along concentric circular crowns.
5. Device according to the preceding claim, in which the sides of the base (262) of each
concave truncated pyramid portion (26) form a circular crown sector.
6. Device according to any one of the claims 1-3, wherein the device body, the dispenser
plate and the inner plate have a rectangular shape, and wherein the concave truncated-pyramid
portions have a rectangular base.
7. Device according to any one of the preceding claims, wherein the side walls (266)
of each concave truncated-pyramid portion are provided with ribs (268) which extend
from the sides of the base towards the respective dispensing nozzle.
8. Device according to any one of the preceding claims, wherein the connection element
(200) is provided with suction means (300) suitable to aspirate air from the outside
and to introduce the aspirated air into the dispensing chamber (100).
9. Device according to the preceding claim wherein the connection element (200) comprises
a connection body (202) in which an inlet duct (204) connected to the water supply
pipe, an outlet duct (206) in fluidic communication with the dispensing chamber, at
least one intermediate passage placing the inlet duct in fluidic communication with
the outlet duct, are made, wherein in the connection body an air suction channel (208)
communicating with the outside and open towards the outlet duct (206), is also made,
an obturator movable between a closed position of the suction channel (208) and an
open position of the suction channel (208) for the aspiration of air from the outside
toward the outlet duct (206) being associated with said suction channel.
10. Device according to the preceding claim, wherein the obturator device is kept in the
closed position of the suction channel (208) by the water pressure flowing through
the connection element (200) and returns to the open position of said suction channel
opening (208) as a result of the interruption of the water supply.
11. Device according to any one of the preceding claims, wherein the dispenser plate (14)
has a peripheral edge which forms the side wall (24) of the device body, and wherein
the device body comprises a closure plate (22) which delimits the dispensing chamber
(100) on the opposite side to the dispenser plate.
12. Device according to the preceding claim, wherein a plurality of fastening pins (142)
extend from the dispenser plate (14) into the dispensing chamber, in each of which
a threaded hole (144) is made and wherein the closure plate is connected to the dispenser
plate by means of fastening screws (222) screwed into said threaded holes.
13. Device according to any one of the preceding claims, wherein the closure plate (22)
is provided with a threaded collar forming a seat for a ball joint of the connection
element, said ball joint being retained in said seat with the possibility of oscillation
by means of a threaded sleeve screwed to said threaded collar.