[0001] The present invention relates to a shower head and a manufacturing method thereof.
[0002] Shower heads of the prior art usually comprise a dispensing plate inserted in a body
connected to a hose or water outlet for receiving inlet water. In further embodiments,
the shower heads are provided with a dispensing plate associated to a connecting plate,
provided with the hose; said plates are associated to one another by the interposition
of a ring fitted with a seal and with holes for the passage of bolts or screws for
closing the shower head. Such shower heads are known from
WO2007/113863 A,
DE9308123U1,
US 2005/284367 A1.
[0003] Prior art shower heads have several disadvantages.
[0004] In fact, such heads are cumbersome, expensive and complex to be made and assembled.
[0005] A difficulty consists, for example, in ensuring the hydraulic seal in the assembly
of the plates without increasing the axial overall dimensions too much. Moreover,
the shower heads of the prior art often have considerable radial overall dimensions,
that is, the shower heads have increasingly larger diameters; thus, it is not possible
to ensure evenness of the flow dispensed on all the area of the dispensing holes.
In the fluid dispensed by the known shower heads are greater at the central holes
and smaller at the peripheral holes.
[0006] The problem of the present invention is to provide a shower head which should solve
the disadvantages mentioned with reference to the prior art.
[0007] Such disadvantages are solved by a shower head in accordance with claim 1 and by
a manufacturing method thereof in accordance with claim 13.
[0008] Other embodiments of the shower head according to the invention are described in
the subsequent claims.
[0009] Further features and the advantages of the present invention will appear more clearly
from the following description of preferred non-limiting embodiments thereof, wherein:
[0010] figure 1 shows a perspective view of a shower head according to an embodiment of
the present invention;
[0011] figure 2 shows a perspective view of the shower head of figure 1, from a different
angle;
[0012] figure 3 shows an exploded perspective view of the shower head of figure 1;
[0013] figure 4 shows a plan bottom view of the shower head of figure 1;
[0014] figure 5 shows a side view of the shower head of figure 1;
[0015] figures 6-8 show partial dissected views of the shower head of figure 1 according
to different embodiment versions.
[0016] Elements or parts of elements in common between the embodiments described below are
referred to with the same reference numerals.
[0017] Shower head 4 comprises a dispensing plate 8 provided with at least one hole 12 for
water dispensing and a closing plate 16 in fluid connection with a water outlet 18.
[0018] Plates 8, 16 are directly facing each other relative to an axial direction X-X. Preferably,
the shower head is axial-symmetrical relative to the axial direction X-X.
[0019] Preferably, the two plates 8, 16 have the same outer overall dimensions so as to
be perfectly overlapped relative to said axial direction X-X.
[0020] According to an embodiment, the dispensing plate 18 is plane and perpendicular to
the axial direction X-X.
[0021] Advantageously, the closing plate 16 comprises a first peripheral portion 20 plane
and parallel to the dispensing plate 8, so as to interface directly in contact with
a corresponding second peripheral portion 24 of the dispensing plate 8, and an intermediate
portion 28 preferably contiguous and integral with the first peripheral portion 20.
[0022] The intermediate portion 28 is at least partly raised relative to the first peripheral
portion 20, opposite the associable dispensing plate 8, so as to form a collecting
chamber 32 between said plates 8, 16 for the fluid to be dispensed, having an axial
thickness 36 that increases gradually moving from the peripheral portions 20, 24 towards
the intermediate portion 28. By axial thickness it is meant a thickness measured along
a direction parallel to the axial direction X-X.
[0023] Shower head 4 further comprises fixing and sealing means 40, better described hereinafter,
arranged at the peripheral portions 20, 24, suitable for obtaining a relative locking
between plates 8, 16 and a hermetic seal, so as to sealingly delimit the collecting
chamber 32 with plates 8, 16 and dispensing the fluid through holes 12 of the dispensing
plate 8.
[0024] Advantageously, the intermediate portion 28 of the closing plate 16 comprises a variable
height relative to a support plane parallel to the first peripheral portion 20; such
height is gradually variable so that the intermediate portion 28 delimits a collecting
chamber 32v with the dispensing plate 8, having an axial thickness 36 gradually increasing
moving from the periphery of the shower head towards the water outlet, that is, from
the peripheral portions 20, 24 inwards of shower head 4.
[0025] Preferably, the intermediate portion extends radially at least up to the outermost
dispensing holes 12 of the dispensing plate.
[0026] According to an embodiment (figure 6), the intermediate portion 28 comprises a conical
portion converging towards the water outlet.
[0027] According to a further embodiment (figure 7), the intermediate portion 28 comprises
a parabolic portion having concavity opposite the dispensing plate 8.
[0028] According to a further embodiment (figure 8), the intermediate portion 28 comprises
a parabolic portion having concavity facing the dispensing plate 8.
[0029] Advantageously, the intermediate portion 28, thanks to the variable distance from
the associable dispensing plate 8 and thus to the gradually variable height of the
collecting chamber 32, allows even distribution of the pressure inside the shower
head itself. Moreover, the intermediate portion is elastically deformable under the
action of the fluid under pressure so as to ensure a pulsating jet of water. In other
words, the water reaches the maximum pressure at the central portion of the closing
plate, that is, of the water outlet 18, where it encounters the maximum axial thickness
of chamber 32. At the peripheral portions 20, 24 of plates 8, 16 the water arrives
with a reduced pressure, relative to the central portion; such pressure reduction,
essentially due to load losses of water, is compensated by the reduced axial thickness
of chamber 32 at the peripheral portions. In this way, the shower head is capable
of ensuring a highly even dispensing of the fluid. Moreover, the reduced thickness
of plates 8, 16 and the substantially conical or parabolic shape of the closing plate
ensures controlled elastic bending of plates 8, 16 themselves under the pressure action
of water. This elastic bending allows obtaining water dispensing with a sort of pulsating
effect. In other words, the intermediate portion 28 imparts an effect of elastic spring
to the closing plate 16 that makes the fluid dispensed through the dispensing holes
12 even.
[0030] According to a possible embodiment, in the proximity of the water outlet, the intermediate
portion 28 comprises a levelling 48 substantially parallel to the dispensing plate
8.
[0031] According to an embodiment, the fixing and sealing means 40 are made integral to
plates 8, 16 so as to prevent removing plates 8, 16.
[0032] Preferably, the fixing and sealing means 40 have a negligible axial thickness relative
to the axial thickness of plates 8, 16 so that the overall axial thickness of shower
head 4 is substantially equal to the sum of the axial thicknesses of the plates themselves.
[0033] Preferably, the fixing and sealing means 40 are only arranged along the peripheral
portions 20, 24 so as to allow an elastic deformation of plates 8, 16 at the inner
portions, at the dispensing holes 12.
[0034] According to an embodiment, the fixing and sealing means 40 comprise a welding that
circumferentially delimits all the collecting chamber 32 of shower head 4.
[0035] According to an embodiment, said welding is of the radial type, that is, made on
the end of the outer circumference of shower head 4, that is, on the edge or of the
shower head itself.
[0036] According to a further embodiment, the welding is of the axial type, that is, made
on the peripheral portions 20, 24 of plates 8, 16 directly in contact with one another.
[0037] The welding between plates 8, 16, either axial or radial, may be a TIG, MIG, MAG
welding or a laser welding.
[0038] According to a further embodiment, the fixing and sealing means 40 comprise a gluing
portion that circumferentially delimits all the collecting chamber 32 of shower head
4.
[0039] The gluing portion is preferably arranged on the peripheral portions 20, 24 of plates
8, 16 placed in direct axial contact with one another.
[0040] The gluing portion may comprise a silicone or epoxy glue.
[0041] The shower head may comprise nozzles 52 suitable for being partly inserted in holes
12 of the dispensing plate 8.
[0042] For example, said nozzles 52 comprise a dispensing portion 56 projecting from the
dispensing plate 8 and a stopping portion 60 suitable for forming a stop in the introduction
of nozzles (62) into the relevant holes 12, on the end of the intermediate face of
the dispensing plate, that is, on the end of the collecting chamber 32.
[0043] Preferably, an axial thickness of the stopping portion 60 is smaller than the axial
thickness 36 of the collecting chamber 32 at the nozzle itself, so as to allow the
water to come out from the chamber through the nozzle.
[0044] The nozzles may be separate from one another and individually inserted into the dispensing
holes 12, or they may be made integral with a membrane and inserted in a single solution
in holes 12 of the dispensing plate 8.
[0045] The method for manufacturing a shower head according to the present invention shall
now be described.
[0046] The manufacturing method comprises the steps of shearing the dispensing plate from
a sheet, provided with at least one hole 12 for water dispensing, shearing and drawing
the closing plate from a sheet provided with at least one water outlet hole.
[0047] The shearing may be carried out by laser cutting so as to impart various geometrical
shapes not necessarily axial-symmetric to the plates.
[0048] Preferably, the closing plate 16 is at the same time sheared and spun so as to obtain
in a single operation the shearing from sheet, the second planar peripheral portion
24, that is, plane and parallel to the associable dispensing plate 8, and the intermediate
portion 28 not coplanar to the second peripheral portion 24.
[0049] The method then comprises the step of associating the two plates 8, 16 placing the
respective peripheral portions 20, 24 in contact so that the intermediate portion
28 of the closing plate 16 defines the collecting chamber 32 of the fluid with the
dispensing plate 8 having gradually increasing thickness moving from the peripheral
portion 20, 24 to the intermediate portion 28.
[0050] The two plates 8, 16 are constrained to each other at the respective peripheral portions
20, 24 by fining and sealing means 40 suitable for obtaining both a relative locking
between plates 8, 16 and a hermetic seal of the collecting chamber 32.
[0051] The locking step may comprise welding and/or gluing of plates 8, 16 themselves at
the peripheral portions 20, 24.
[0052] As we can appreciate from the description, the shower head of the present invention
allows overcoming the disadvantages exhibited by the shower heads of the prior art.
[0053] In particular, the shower head according to the invention exhibits assembly easiness
and inexpensiveness.
[0054] As seen, the plates may be simply obtained by shearing from plate or also for example
by laser cutting. It is therefore possible to manufacture plates having any shape,
even asymmetric.
[0055] In other words, unlike the shower heads of the prior art, which are restricted to
few configurations of simple shape, the shower head according to the present invention
allows creating complex shapes, using a production technology that requires no investments
in expensive equipment like moulds, specific tools or else. Complex shapes can be
manufactured in small batches at low cost.
[0056] Moreover, it is possible to carry out the optional sheet polishing before the subsequent
shearing or cutting so as to avoid carrying out the subsequent surface finishing processes
on the single plates. In other words, it is possible to treat the plate in advance
with automatic finishing machines, thus minimising the costs due to the unit component
treatment.
[0057] Moreover, the shower head has very small overall dimensions. For example, it is possible
to manufacture a shower head having an axial thickness, intended as overall thickness
or distance between the plates, equal to the sum of the thickness of the plates themselves.
[0058] The shower heads of the prior art do not allow achieving such small thicknesses.
[0059] The water flow between the plates, that is, the axial thickness of the collecting
chamber is also very reduced and may advantageously range from a maximum value, for
example at a central portion of the shower head, equal to the maximum height of the
intermediate, conical, parabolic or rounded portion, to a minimum value, at the radial
periphery of the shower head, equal to the sum of the plate thicknesses.
[0060] In this way, the even water distribution through all the holes of the distribution
plate is favoured; in particular, it is possible to reduce the axial thickness of
the collecting chamber moving from the central portion to the peripheral portion,
so as to ensure a pressure evenness also on the outermost dispensing holes.
[0061] Moreover, the shape of the intermediate portion allows obtaining a spring effect
between the plates that favours the evenness of the dispensed flow of water.
[0062] The assembly may be advantageously obtained by welding or gluing.
[0063] The welding allows obtaining a safe connection between the plates suitable for preventing
the detachment of the same and at the same time ensuring the fluid seal. The welding
also ensures that the shower head thickness remains substantially unchanged and equal
to the sum of the plate thicknesses.
[0064] The welding further allows a high assembly accuracy, as well as the possibility of
perfectly combining thin surfaces to one another. The welding further allows a high
automation degree; for example, a laser welding is advantageous since the same head
may be used both for shearing the plates from sheet and for making the subsequent
welding.
[0065] The welding also requires a reduced addition of heat so as to prevent deforming the
thin plates; it is possible to carry out an autogenous welding, that is, without using
added material, so as to limit as much as possible the axial overall dimensions of
the shower head.
[0066] Gluing allows quick and inexpensive assembly of the plates. The adhesive layer is
capable of ensuring the fluid seal and also of withstanding the axial separation force
between the plates due to the water pressure.
[0067] In one embodiment it is possible to assist the gluing also with screw connecting
means that substantially have the function of withstanding the axial forces exerted
between the plates; in this way, the glue portion takes the function of hydraulic
seal and the screws take the function of locking between the plates.
[0068] The welding and/or gluing allow assembling the plates without the interposition of
external rings or seals. In this way, assembly costs and times are reduced.
[0069] A man skilled in the art may make several changes and adjustments to the shower heads
described above in order to meet specific and incidental needs, all falling within
the scope of protection defined in the following claims.
1. A shower head (4) comprising
a dispensing plate (8) provided with at least one hole (12) for dispensing water,
a closing plate (16), in fluid connection with a water outlet (18), wherein
said plates (8,16) are directly facing each other relative to an axial direction (X),
and wherein the dispensing plate (8) is plane and perpendicular to the axial direction
(X),
wherein
the closing plate (16) comprises a first peripheral portion (20) plane and parallel
to the dispensing plate (8), so as to directly interface in contact with a corresponding
second peripheral portion (24) of the dispensing plate (8), and an intermediate portion
(28) at least partly raised relative to the first peripheral portion (20), opposite
the associable dispensing plate (8), so as to form a collecting chamber (32) for the
fluid to be dispensed between said plates (8, 16) having an axial thickness (36) that
gradually increases moving from the peripheral portions (20, 24) towards the intermediate
portion (28),
the shower head (4) comprising fixing and sealing means (40), arranged at said peripheral
portion (20, 24), suitable for obtaining a relative locking between the plates (8,
16) and a hermetic seal, so as to sealingly delimit the collecting chamber (32) with
the plates (8, 16) and dispensing the fluid through the holes (12) of the dispensing
plate (8), wherein the intermediate portion (28) is elastically deformable under the
action of the fluid under pressure so as to ensure a pulsating jet of water.
2. Shower head (4) according to claim 1, wherein the intermediate portion (28) extends
radially at least up to the outermost dispensing holes (12) of the dispensing plate
(8).
3. Shower head (4) according to claim 1 or 2, wherein said intermediate portion (28)
comprises a conical portion converging towards the water outlet (18).
4. Shower head (4) according to claim 1, 2 or 3, wherein said intermediate portion (28)
comprises a parabolic portion having concavity opposite the dispensing plate (8).
5. Shower head (4) according to claim 1, 2, 3 or 4, wherein said intermediate portion
(28) comprises a parabolic portion having concavity facing the dispensing plate (8).
6. Shower head (4) according to any one of the previous claims, wherein said fixing and
sealing means (40) are integral to the plates (8, 16) so as to prevent the removal
of the plates (8, 16).
7. Shower head (4) according to any one of the previous claims, wherein the fixing and
sealing means (40) have a negligible axial thickness relative to the axial thickness
of the plates (8, 16) so that the overall axial thickness of the shower head (4) is
substantially equal to the sum of axial thicknesses of the plates (8, 16) at the peripheral
portions (20, 24).
8. Shower head (4) according to any one of the previous claims, wherein said fixing and
sealing means (40) comprise a welding (54) that circumferentially delimits all the
collecting chamber (32) of the shower head (4).
9. Shower head (4) according to claim 8, wherein said welding is of the radial type,
that is, made on the end of the outer circumference of the shower head (4).
10. Shower head (4) according to claim 8, wherein said welding is of the axial type, that
is, made on the peripheral portions (20, 24) of the plates (8, 16) directly in contact
with one another.
11. Shower head (4) according to any one of claims 1 to 7, wherein said fixing and sealing
means (40) comprise a gluing portion (54) that circumferentially delimits all the
collecting chamber (32) of the shower head (4).
12. Shower head (4) according to any one of the previous claims, comprising nozzles (52)
suitable for being partly inserted in the holes (12) of the dispensing plate (8).
13. Method of manufacture of a shower head comprising the steps of:
- shearing from sheet a dispensing plate (8) provided with at least one hole (12)
for dispensing water and with a second peripheral portion (24),
- shearing and drawing from sheet a closing plate (16) provided with at least one
water outlet hole (18), so as to impart to the closing plate (16) a first peripheral
portion (20) plane and parallel to the associable dispensing plate (8) and an intermediate
portion (28) raised relative to said first peripheral portion (20),
- associating the two plates (8, 16) placing the respective peripheral portions (20,
24) in contact, the intermediate portion (28) of the closing plate (16) defining a
collecting chamber (32) of the fluid with the dispensing plate (8) having gradually
increasing thickness (36) moving from the peripheral portion (20, 24) to the intermediate
portion (28),
- locking the two plates (8, 16) to each other at the respective peripheral portions
(20, 24) by fining and sealing means (40) suitable for obtaining a relative locking
between the plates (8, 16) and a hermetic seal of the collecting chamber (32).
14. Method according to claim 13, wherein the step of locking the plates (8, 16) comprises
a step of welding the same at the peripheral portions (20, 24).
15. Method according to claim 13 or 14, wherein the step of locking the plates (8, 16)
comprises a step of gluing the same at the peripheral portions (20, 24).
1. Duschkopf (4), umfassend
eine Abgabeplatte (8), die mit zumindest einem Loch (12) zum Abgeben von Wasser versehen
ist,
eine Schließplatte (16), die mit einem Wasserauslass (18) in Flüssigkeitsver-bindung
steht, wobei
die Platten (8, 16) relativ zu einer axialen Richtung (X) direkt einander zuge-wandt
sind,
und wobei die Abgabeplatte (8) eben und senkrecht zu der axialen Richtung (X) ist,
wobei
die Schließplatte (16) einen ersten peripheren Abschnitt (20), der eben und parallel
zu der Abgabeplatte (8) ist, um direkt mit einem entsprechenden zweiten peripheren
Abschnitt (24) der Abgabeplatte (8) in Kontakt zu kommen, und einen Zwischenabschnitt
(28) umfasst, der relativ zu dem ersten peripheren Abschnitt (20) zumindest teilweise
erhöht ist und gegenüberliegend bzw. entgegengesetzt zu der assoziierbaren Abgabeplatte
(8) ist, um eine Sammelkammer (32) für die abzugebende Flüssigkeit zwischen den Platten
(8, 16) zu bilden, die eine axiale Dicke (36) aufweist, die sich von den peripheren
Abschnitten (20, 24) zu dem Zwischenabschnitt (28) hin bewegend graduell zunimmt,
der Duschkopf (4) Befestigungs- und Dichtungsmittel (40) umfasst, die an dem peripheren
Abschnitt (20, 24) angeordnet sind und geeignet sind, eine relative Verriegelung zwischen
den Platten (8, 16) und eine hermetische Abdichtung zu erreichen, um die Sammelkammer
(32) mit den Platten (8, 16) auf dichtende Weise zu begrenzen und die Flüssigkeit
durch die Löcher (12) der Abgabeplatte (8) abzugeben, wobei der Zwischenabschnitt
(28) unter der Einwirkung von unter Druck stehender Flüssigkeit elastisch verformbar
ist, um einen pulsierenden Wasserstrahl zu gewährleisten.
2. Duschkopf (4) nach Anspruch 1, wobei sich der Zwischenabschnitt (28) radial zumindest
bis zu den äußersten Abgabelöchern (12) der Abgabeplatte (8) erstreckt.
3. Duschkopf (4) nach Anspruch 1 oder 2, wobei der Zwischenabschnitt (28) einen konischen
Abschnitt umfasst, der zu dem Wasserauslass (18) hin konvergiert.
4. Duschkopf (4) nach Anspruch 1, 2 oder 3, wobei der Zwischenabschnitt (28) einen parabolischen
Abschnitt umfasst, der eine Konkavität bzw. hohle Be-schaffenheit entgegen bzw. abgewandt
von der Abgabeplatte (8) aufweist.
5. Duschkopf (4) nach Anspruch 1, 2, 3 oder 4, wobei der Zwischenabschnitt (28) einen
parabolischen Abschnitt aufweist, der eine Konkavität bzw. hohle Beschaffenheit zu
der bzw. zugewandt zu der Abgabeplatte (8) aufweist.
6. Duschkopf (4) nach einem der vorhergehenden Ansprüche, wobei die Befes-tigungs- und
Dichtungsmittel (40) integral bzw. einstückig mit den Platten (8, 16) sind, um das
Entfernen der Platten (8, 16) zu verhindern.
7. Duschkopf (4) nach einem der vorhergehenden Ansprüche, wobei die Befes-tigungs- und
Dichtungsmittel (40) eine relativ zu der axialen Dicke der Platten (8, 16) vernachlässigbare
axiale Dicke aufweisen, so dass die insgesamte axiale Dicke des Duschkopfs (4) im
Wesentlichen gleich der Summe der axia-len Dicken der Platten (8, 16) an den peripheren
Abschnitten (20, 24) ist.
8. Duschkopf (4) nach einem der vorhergehenden Ansprüche, wobei die Befes-tigungs- und
Dichtungsmittel (40) eine Schweißung (54) umfassen, welche die gesamte Sammelkammer
(32) des Duschkopfs (4) entlang des Umfangs begrenzt.
9. Duschkopf (4) nach Anspruch 8, wobei die Schweißung von der radialen Art ist, das
heißt, an dem Ende des Außenumfangs des Duschkopfs (4) gemacht ist.
10. Duschkopf (4) nach Anspruch 8, wobei die Schweißung von der axialen Art ist, das heißt,
an den peripheren Abschnitten (20, 24) der Platten (8, 16) gemacht ist, die direkt
miteinander in Kontakt sind.
11. Duschkopf (4) nach einem der Ansprüche 1 bis 7, wobei die Befestigungs- und Dichtungsmittel
(40) einen Klebeabschnitt (54) umfassen, der die gesamte Sammelkammer (32) des Duschkopfs
(4) entlang des Umfangs begrenzt.
12. Duschkopf (4) nach einem der vorhergehenden Ansprüche, umfassend Düsen (52), die geeignet
sind, zumindest teilweise in die Löcher (12) der Abgabeplatte (8) eingesetzt zu werden.
13. Verfahren zum Herstellen eines Duschkopfs, umfassend die Schritte:
- Abscheren bzw. Schneiden einer Abgabeplatte (8) aus Blech, die mit zu-mindest einem
Loch (12) zum Abgeben von Wasser und mit einem zweiten peripheren Abschnitt (24) versehen
ist,
- Abscheren bzw. Schneiden und Ziehen einer Schließplatte (16) aus Blech, die mit
zumindest einem Wasserauslassloch (18) versehen ist, um der Schließplatte (16) einen
ersten peripheren Abschnitt (20), der eben und parallel zu der assoziierbaren Abgabeplatte
(8) ist, und einen Zwischenabschnitt (28) zu verleihen, der relativ zu dem ersten
peripheren Abschnitt (20) erhöht ist,
- Assoziieren der beiden Platten (8, 16) durch Inkontaktbringen bzw.
- platzieren der jeweiligen peripheren Abschnitte (20, 24), wobei der Zwi-schenabschnitt
(28) der Schließplatte (16) einen Sammelkammer (32) für Flüssigkeit mit der Abgabeplatte
(8) definiert, die eine sich von den peripheren Abschnitten (20, 24) zu dem Zwischenabschnitt
(28) hin bewegend graduell zunehmende Dicke (36) aufweist,
- Verriegeln der beiden Platten (8, 16) miteinander an den jeweiligen peri-pheren
Abschnitten (20, 24) durch Klärungs- bzw. Befestigungs- und Dichtungsmittel (40),
die geeignet sind, eine relative Verriegelung zwischen den Platten (8, 16) und eine
hermetische Abdichtung der Sammelkammer (32) zu erhalten.
14. Verfahren nach Anspruch 13, wobei der Schritt des Verriegelns der Platten (8, 16)
einen Schritt des Schweißens bzw. Anschweißens derselben an den peripheren Abschnitten
(20, 24) umfasst.
15. Verfahren nach Anspruch 13 oder 14, wobei der Schritt des Verriegelns der Platten
(8, 16) einen Schritt des Klebens bzw. Anklebens derselben an die peripheren Abschnitte
(20, 24) umfasst.
1. Pomme de douche (4) comprenant :
une plaque de distribution (8) prévue avec au moins un trou (12) pour distribuer l'eau,
une plaque de fermeture (16) en raccordement de fluide avec une sortie d'eau (18),
dans laquelle :
lesdites plaques (8, 16) se font directement face par rapport à une direction axiale
(X),
et dans laquelle la plaque de distribution (8) est plane et perpendiculaire à la direction
axiale (X),
dans laquelle
la plaque de fermeture (16) comprend une première partie périphérique (20) plane et
parallèle à la plaque de distribution (8), afin de s'interfacer directement en contact
avec une deuxième partie périphérique (24) correspondante de la plaque de distribution
(8), et une partie intermédiaire (28) au moins partiellement relevée par rapport à
la première partie périphérique (20),
opposée à la plaque de distribution (8) qui peut y être associée, afin de former une
chambre de collecte (32) pour le fluide à distribuer entre lesdites plaques (8, 16)
ayant une épaisseur axiale (36) qui augmente progressivement en se déplaçant des parties
périphériques (20, 24) vers la partie intermédiaire (28),
la pomme de douche (4) comprenant des moyens de fixation et d'étanchéité (40) agencés
au niveau de ladite partie périphérique (20, 24), appropriés pour obtenir un blocage
relatif entre les plaques (8, 16) et un joint hermétique,
afin de délimiter de manière étanche la chambre de collecte (32) avec les plaques
(8, 16) et distribuer le fluide à travers les trous (12) de la plaque de distribution
(8), dans laquelle la partie intermédiaire (28) est élastiquement déformable sous
l'action du fluide sous pression afin de garantir un jet d'eau pulsée.
2. Pomme de douche (4) selon la revendication 1, dans laquelle la partie intermédiaire
(28) s'étend de manière radiale au moins jusqu'aux trous de distribution situés le
plus à l'extérieur (12) de la plaque de distribution (8).
3. Pomme de douche (4) selon la revendication 1 ou 2, dans laquelle ladite partie intermédiaire
(28) comprend une partie conique convergeant vers la sortie d'eau (18).
4. Pomme de douche (4) selon la revendication 1, 2 ou 3, dans laquelle ladite partie
intermédiaire (28) comprend une partie parabolique ayant une concavité opposée à la
plaque de distribution (8).
5. Pomme de douche (4) selon la revendication 1, 2, 3 ou 4, dans laquelle ladite partie
intermédiaire (28) comprend une partie parabolique ayant une concavité faisant face
à la plaque de distribution (8).
6. Pomme de douche (4) selon l'une quelconque des revendications précédentes, dans laquelle
lesdits moyens de fixation et d'étanchéité (40) sont solidaires des plaques (8, 16)
afin d'empêcher le retrait des plaques (8, 16).
7. Pomme de douche (4) selon l'une quelconque des revendications précédentes, dans laquelle
les moyens de fixation et d'étanchéité (40) ont une épaisseur axiale négligeable par
rapport à l'épaisseur axiale des plaques (8, 16) de sorte que l'épaisseur axiale globale
de la pomme de douche (4) est sensiblement égale à la somme des épaisseurs axiales
des plaques (8, 16) au niveau des parties périphériques (20, 24).
8. Pomme de douche (4) selon l'une quelconque des revendications précédentes, dans laquelle
lesdits moyens de fixation et d'étanchéité (40) comprennent une soudure (54) qui délimite
de manière circonférentielle la totalité de la chambre de collecte (32) de la pomme
de douche (4).
9. Pomme de douche (4) selon la revendication 8, dans laquelle ladite soudure est du
type radial, c'est-à-dire réalisée sur l'extrémité de la circonférence externe de
la pomme de douche (4).
10. Pomme de douche (4) selon la revendication 8, dans laquelle ladite soudure est du
type axial, c'est-à-dire réalisée sur les parties périphériques (20, 24) des plaques
(8, 16) directement en contact les unes avec les autres.
11. Pomme de douche (4) selon l'une quelconque des revendications 1 à 7, dans laquelle
lesdits moyens de fixation et d'étanchéité (40) comprennent une partie de collage
(54) qui délimite de manière circonférentielle la totalité de la chambre de collecte
(32) de la pomme de douche (4).
12. Pomme de douche (4) selon l'une quelconque des revendications précédentes, comprenant
des buses (52) appropriées pour être partiellement insérées dans les trous (12) de
la plaque de distribution (8).
13. Procédé pour fabriquer une pomme de douche comprenant les étapes consistant à :
Couper, dans une feuille, la plaque de distribution (8) prévue avec au moins un trou
(12) pour distribuer l'eau et avec une deuxième partie périphérique (24),
couper et emboutir dans la feuille, une plaque de fermeture (16) prévue avec au moins
un trou de sortie d'eau (18), afin de transmettre à la plaque de fermeture (16), une
première partie périphérique (20) plane et parallèle à la plaque de distribution (8)
pouvant y être associée et une partie intermédiaire (28) relevée par rapport à ladite
première partie périphérique (20), associer les deux plaques (8, 16) en plaçant les
parties périphériques (20, 24) respectives en contact, la partie intermédiaire (28)
de la plaque de fermeture (16) définissant une chambre de collecte (32) du fluide
avec la plaque de distribution (8) qui a une épaisseur (36) progressivement croissante
qui se déplace de la partie périphérique (20, 24) jusqu'à la partie intermédiaire
(28),
bloquer les deux plaques (8, 16) entre elles au niveau des parties périphériques (20,
24) respectives par des moyens de fixation et d'étanchéité (40) appropriés pour obtenir
un blocage relatif entre les plaques (8, 16) et
un joint hermétique de la chambre de collecte (32).
14. Procédé selon la revendication 13, dans lequel l'étape consistant à bloquer les plaques
(8, 16) comprend une étape consistant à souder ces dernières au niveau des parties
périphériques (20, 24).
15. Procédé selon la revendication 13 ou 14, dans lequel l'étape consistant à bloquer
les plaques (8, 16) comprend une étape consistant à coller ces dernières au niveau
des parties périphériques (20, 24).