EP0590228B1 - Water bath tub with air spray device - Google Patents

Water bath tub with air spray device Download PDF

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Publication number
EP0590228B1
EP0590228B1 EP93103458A EP93103458A EP0590228B1 EP 0590228 B1 EP0590228 B1 EP 0590228B1 EP 93103458 A EP93103458 A EP 93103458A EP 93103458 A EP93103458 A EP 93103458A EP 0590228 B1 EP0590228 B1 EP 0590228B1
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EP
European Patent Office
Prior art keywords
water
air
compressed air
basin according
line
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Lifetime
Application number
EP93103458A
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German (de)
French (fr)
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EP0590228B2 (en
EP0590228A1 (en
Inventor
Günter Schüssler
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Individual
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Individual
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Priority claimed from DE19873715010 external-priority patent/DE3715010C2/en
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Classifications

    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61HPHYSICAL THERAPY APPARATUS, e.g. DEVICES FOR LOCATING OR STIMULATING REFLEX POINTS IN THE BODY; ARTIFICIAL RESPIRATION; MASSAGE; BATHING DEVICES FOR SPECIAL THERAPEUTIC OR HYGIENIC PURPOSES OR SPECIFIC PARTS OF THE BODY
    • A61H33/00Bathing devices for special therapeutic or hygienic purposes
    • A61H33/60Components specifically designed for the therapeutic baths of groups A61H33/00
    • A61H33/601Inlet to the bath
    • A61H33/6021Nozzles
    • A61H33/6063Specifically adapted for fitting in bathtub walls
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61HPHYSICAL THERAPY APPARATUS, e.g. DEVICES FOR LOCATING OR STIMULATING REFLEX POINTS IN THE BODY; ARTIFICIAL RESPIRATION; MASSAGE; BATHING DEVICES FOR SPECIAL THERAPEUTIC OR HYGIENIC PURPOSES OR SPECIFIC PARTS OF THE BODY
    • A61H33/00Bathing devices for special therapeutic or hygienic purposes
    • A61H33/02Bathing devices for use with gas-containing liquid, or liquid in which gas is led or generated, e.g. carbon dioxide baths
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61HPHYSICAL THERAPY APPARATUS, e.g. DEVICES FOR LOCATING OR STIMULATING REFLEX POINTS IN THE BODY; ARTIFICIAL RESPIRATION; MASSAGE; BATHING DEVICES FOR SPECIAL THERAPEUTIC OR HYGIENIC PURPOSES OR SPECIFIC PARTS OF THE BODY
    • A61H33/00Bathing devices for special therapeutic or hygienic purposes
    • A61H33/02Bathing devices for use with gas-containing liquid, or liquid in which gas is led or generated, e.g. carbon dioxide baths
    • A61H33/026Gas nozzles specially adapted therefor
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61HPHYSICAL THERAPY APPARATUS, e.g. DEVICES FOR LOCATING OR STIMULATING REFLEX POINTS IN THE BODY; ARTIFICIAL RESPIRATION; MASSAGE; BATHING DEVICES FOR SPECIAL THERAPEUTIC OR HYGIENIC PURPOSES OR SPECIFIC PARTS OF THE BODY
    • A61H33/00Bathing devices for special therapeutic or hygienic purposes
    • A61H33/02Bathing devices for use with gas-containing liquid, or liquid in which gas is led or generated, e.g. carbon dioxide baths
    • A61H33/027Gas-water mixing nozzles therefor
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61HPHYSICAL THERAPY APPARATUS, e.g. DEVICES FOR LOCATING OR STIMULATING REFLEX POINTS IN THE BODY; ARTIFICIAL RESPIRATION; MASSAGE; BATHING DEVICES FOR SPECIAL THERAPEUTIC OR HYGIENIC PURPOSES OR SPECIFIC PARTS OF THE BODY
    • A61H33/00Bathing devices for special therapeutic or hygienic purposes
    • A61H33/60Components specifically designed for the therapeutic baths of groups A61H33/00
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61HPHYSICAL THERAPY APPARATUS, e.g. DEVICES FOR LOCATING OR STIMULATING REFLEX POINTS IN THE BODY; ARTIFICIAL RESPIRATION; MASSAGE; BATHING DEVICES FOR SPECIAL THERAPEUTIC OR HYGIENIC PURPOSES OR SPECIFIC PARTS OF THE BODY
    • A61H33/00Bathing devices for special therapeutic or hygienic purposes
    • A61H33/60Components specifically designed for the therapeutic baths of groups A61H33/00
    • A61H33/601Inlet to the bath
    • A61H33/6021Nozzles
    • A61H33/6057Comprising means producing pulsating or intermittent streams
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61HPHYSICAL THERAPY APPARATUS, e.g. DEVICES FOR LOCATING OR STIMULATING REFLEX POINTS IN THE BODY; ARTIFICIAL RESPIRATION; MASSAGE; BATHING DEVICES FOR SPECIAL THERAPEUTIC OR HYGIENIC PURPOSES OR SPECIFIC PARTS OF THE BODY
    • A61H33/00Bathing devices for special therapeutic or hygienic purposes
    • A61H2033/0008Arrangement for cleaning the installation before or after use
    • A61H2033/0016Arrangement for cleaning the installation before or after use using cleansing products
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61HPHYSICAL THERAPY APPARATUS, e.g. DEVICES FOR LOCATING OR STIMULATING REFLEX POINTS IN THE BODY; ARTIFICIAL RESPIRATION; MASSAGE; BATHING DEVICES FOR SPECIAL THERAPEUTIC OR HYGIENIC PURPOSES OR SPECIFIC PARTS OF THE BODY
    • A61H33/00Bathing devices for special therapeutic or hygienic purposes
    • A61H2033/0008Arrangement for cleaning the installation before or after use
    • A61H2033/002Arrangement for cleaning the installation before or after use by blowing air through the installation after the bath has been emptied
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61HPHYSICAL THERAPY APPARATUS, e.g. DEVICES FOR LOCATING OR STIMULATING REFLEX POINTS IN THE BODY; ARTIFICIAL RESPIRATION; MASSAGE; BATHING DEVICES FOR SPECIAL THERAPEUTIC OR HYGIENIC PURPOSES OR SPECIFIC PARTS OF THE BODY
    • A61H33/00Bathing devices for special therapeutic or hygienic purposes
    • A61H2033/0008Arrangement for cleaning the installation before or after use
    • A61H2033/0033Arrangement for cleaning the installation before or after use by draining-off pumps, nozzles, waterlines by gravity
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61HPHYSICAL THERAPY APPARATUS, e.g. DEVICES FOR LOCATING OR STIMULATING REFLEX POINTS IN THE BODY; ARTIFICIAL RESPIRATION; MASSAGE; BATHING DEVICES FOR SPECIAL THERAPEUTIC OR HYGIENIC PURPOSES OR SPECIFIC PARTS OF THE BODY
    • A61H33/00Bathing devices for special therapeutic or hygienic purposes
    • A61H33/02Bathing devices for use with gas-containing liquid, or liquid in which gas is led or generated, e.g. carbon dioxide baths
    • A61H2033/023Bathing devices for use with gas-containing liquid, or liquid in which gas is led or generated, e.g. carbon dioxide baths with means in the air supply lines to prevent back-feed of water, e.g. anti-backflow valves, draining devices

Definitions

  • the invention is based on a water basin, in the peripheral walls of which jet nozzles for water and / or air are provided and the jet nozzle mouths are closable and whose feed system can be flushed through circulation of the circulating water.
  • Closable jet nozzles are known from EP-A-0 209 646, EP 0215514, DE-U-8631764.4. By the U.S. 4,563,781 circulable supply systems are disclosed. The preamble of claim 1 is based on DE-A-2 940 269. These known devices have the disadvantage that the nozzle orifices open in the direction of flow of the jet medium towards the inner basin and close either by hydrostatic forces or with the aid of spring force. The valve seats do not close forcefully and are always subject to an unknown and changing locking force. With the slightest contamination of the valve seats with lime, hair, etc., a reliable seal is no longer
  • Diaphragm valves flutter in a depressurized state and in particular allow bathing water to enter the supply system when the diaphragm is not pressurized.
  • Residual amounts of water can be blown out of the supply system with the aid of compressed air without splashing water getting into the indoor pool.
  • the closure and / or opening process can be effected both by a gaseous as well as by a liquid medium or in combination.
  • Auxiliary energy such as the power of an additional hydraulic or pneumatic pressure generator, is also possible.
  • the closure and / or opening process is advantageously effected by the transport medium.
  • the transport medium can be: bathing water, circulation medium, compressed air or a mixture or an additional medium that is brought in by another pressure generator, for example fresh water from the domestic water supply, which also serves as a flushing agent.
  • the design of the nozzle housing with several inputs / outputs has the advantage that they can be used mutually, so that the valve body can be moved from different directions through the flowing medium and the nozzle housing itself is designed as a multi-way valve and the various valve movements, according to the desired Functions between inlet openings and outlet opening change their function.
  • the invention enables the design of closable single-jet nozzles which are used to feed two different media, the feeds for each medium being able to be closed or opened individually.
  • the closure of the nozzle mouth is connected to the opening of a further connection, the nozzle housing itself being designed as a multi-way valve.
  • the invention also enables single-jet nozzles which serve to irradiate only one medium and which are opened and closed like a multi-way valve.
  • the illustrations in the drawings are therefore to be seen as examples that can be combined, each of which, viewed individually or in combination, represents a separate invention.
  • Features which are illustrated, for example, by the representation of the jet nozzle for a medium can be seen in detail in their own right, and can also be used for jet nozzles which serve to irradiate two media.
  • the circulation pump 1 and the feed system are preferably arranged in a ring around the water basin 2.
  • the pressure side of the pump 1 is connected to at least one valve, preferably a multi-way valve 4.
  • the pressure line 6 is connected, which leads to at least one jet nozzle 7 in its course.
  • the multi-way valve 4 is preferably designed as a four-way valve.
  • a valve body 10 preferably in a cylindrical or piston-like shape, is inserted, which is movably mounted, serves transverse valve openings and which is in contact with the flowing medium, which preferably acts against its end faces an opening and a closing position is movable.
  • the valve body 10 On the face side, preferably coaxially, the valve body 10 is guided against a valve seat 11.
  • the valve body is preferably sealed in the radial area by two O-rings 12. The medium is radiated into the inner basin through the opening 13.
  • the pressure line 17 is connected, which in its further course leads to the connection 18 of the jet nozzle 7.
  • the pressure line 17 is flooded and the pressure line 6 is released via the connection 5 in the direction B-C.
  • the line 20 leads from the connection 19 to the suction line 15.
  • the medium located within the supply system is accelerated by the pump 1, it pushes the valve body 10 out of its seat 11.
  • the valve body 10 closes the radiation port 13 radially or transversely.
  • the medium flow now leads via the pressure line 6 back to the multi-way valve 4 , passes position BC there and reaches the circulation pump 1 or the closed circulation circuit via the suction line 15.
  • the circulation can detect one or more jet nozzles I, 11, 111, etc.
  • the jet nozzles are preferably arranged parallel to one another.
  • the line section 20 is cut off from the circulation during normal bathing.
  • An addition point 22 is arranged within this route, via which chemicals, for example, chemicals can be added to the circulation circuit.
  • the circulation medium is emptied into the inner pool 14 through the suction line 15 after the circulation operation.
  • the circulation takes place when the water pool is full, the inner pool itself being cut off from the circulation.
  • a controlled circulation medium drain device or a valve that can be closed by pump pressure, as will be described below.
  • the suction line 15 preferably carries a holding valve 30 which can be a check valve which opens during normal bathing operation due to the suction power of the pump 1, but is cut off during the circulation operation through the line section 20, so that the pump suction power does not open the holding valve can It is also conceivable to use a piston valve which, by moving the detergent pressure from line 20, blocks line 15 to the inner basin. The resetting can take place by spring force or by the pump suction power as soon as the flow direction is changed by changing over the multi-way valve 4.
  • the supply line carrying the other medium is also subjected to cleaning and rinsing and the circulation medium is also passed through this line.
  • FIG. 3 it is proposed either to close the radiation opening separately for each medium or, according to FIG. 4, to only close the common radiation opening before entering the inner pool 14.
  • the circulation medium is transferred directly into the air-carrying supply line 24, it only needs to be flooded there or returned to the line 6.
  • the jet opening of the nozzle 26 for the second medium is preferably also closed by a cylindrical valve body 27, which can be a piston. It is proposed to effect the opening process by means of auxiliary energy, preferably by means of a spring 37. The closing process can be effected by the circulation means. However, it is also possible to use the valve body 27 to move by a pressure from a control line 42. In this case, the means of transport from line 6 can be used or an independent pressure generator can be connected via control line 42. The control pressure acts on the valve body via the space 39.
  • the spring 37 can also be accommodated in the space 39 or act against the valve body 27 in the opposite part of the nozzle housing.
  • the control line 42 can, however, also be provided as a bore which transfers the transport medium from the lower part of the nozzle housing with the feed line connection 6 into the upper housing part with the space 39.
  • the valve body 27 is preferably sealed again by O-rings 12.
  • the inlet or outlet opening 13, 26, 36 is radially closed or opened.
  • line 24 is flooded via an opening 36 which is either opened and closed by valve body 27 or via an additional valve 40 which opens under pressure from line 24 and closes automatically.
  • the valve can have a free outlet to the channel or can open into line 6.
  • the nozzle housing in turn becomes a multi-way valve, which on the one hand serves to irradiate the interior 14 of the water basin, and on the other hand serves to continue or flood at least one medium.
  • the closure of the nozzle mouth can of course also be provided by some other device serving for the closure, such as for example caps or balls.
  • the jet nozzles 7 are preferably designed such that the valve bodies for closing or opening orifices and / or drains are built directly into the jet nozzle housing.
  • the flushing mode of operation is characterized by the opposite medium flow direction to the bathing mode.
  • the flow path via the multi-way valve 4 from A to D and from B to C is used.
  • the start of the rinsing phase can be initiated as soon as the pump suction line 15 is supplied with liquid.
  • the flushing operation can be extended.
  • the liquid flushing phase can be followed by a compressed air operated flushing phase.
  • the line 20 is preferably assigned a container 31 which serves as a collecting container for rinsing water both in the open, that is to say depressurized, and in the closed operating mode.
  • the container 31 is connected to the circulation pump 1.
  • the entire system can preferably be emptied via the container, with its own emptying connection 41, and any type of controlled valve can be used.
  • compressed air is supplied to the supply system, which (if necessary) can be supplied with additives for disinfection, etc.
  • compressed air can reach the nozzles 1, 11, 111 via the line 24.
  • valves 10, 27 are reversed, it is possible to flush the entire system with air.
  • Compressed air can also be supplied via line 17, the functions described above being obtained analogously. It is advantageous to use the compressed air generator, which is part of the equipment for generating an air bubble without this in a large number of hydro massage pools. Only a cleaning solution can then be added to the air flow, which can be added, for example, by an atomizer.
  • the closure of the ventilation line 28 against the discharge of the flushing or circulating agent preferably serves a non-return valve 29, preferably a float ball is used for this purpose, which enables ventilation, but closes the valve in the return flow direction.
  • a non-return valve 29 preferably a float ball is used for this purpose, which enables ventilation, but closes the valve in the return flow direction.
  • Fig. 4 shows a further variant of a closable jet nozzle according to the invention through which compressed air is blasted into the inner basin.
  • the nozzle housing 44 is preferably clamped to the surrounding wall of the water basin by a lock nut 38. At least one nozzle mouth 47 points towards the inner basin 14, a multi-jet design and / or a nozzle cover is conceivable.
  • the nozzle housing preferably carries 2 connecting pieces 57, 58 which serve for the supply and discharge of compressed air and / or residual water.
  • a valve body 10 is preferably arranged in a cylindrical shape and radial O-ring seal 12.
  • the valve body opens the nozzle orifice 47 arranged radially to the valve body 10 in the direction of the inner basin 14 by movement in the direction from E to F. If compressed air is supplied to the connecting piece 57, the valve body closes the nozzle orifice 47 by moving in the direction from F to E and at the same time opens the radially arranged bypass 59. The compressed air leaves the nozzle housing through the connecting piece 58. Preferably, several such nozzles are connected in series. The compressed air supplied in the direction from F to E expels any type of residual water that has entered the supply system.
  • valve body on the one hand through the transport medium, for example to open it and on the other hand to close it by means of a compression spring.
  • a non-return valve 60 which closes by spring force in the space between valve body 10 and nozzle orifice 47.
  • Such backflow safeguards are known as check valves.
  • the opening is made by the flowing transport medium, the closure is made by spring force.
  • the switching of the valve body 10 can be effected by reversing the transport medium flow direction as described above, but it is also possible to work with two different pressure generators, one pressure generator generating the compressed air for the formation of air bubbles and the second pressure generator producing the compressed air for closing the Valve body and generated to expel residual water.
  • the bypass 59 can be incorporated directly into the single-jet nozzle housing 44. However, it is also possible to create the bypass by additional connecting pieces and a connecting line. It is conceivable to connect all connections with simple hose lines accordingly.
  • the end stop of the valve body 10 preferably takes place on the one hand through the cross-sectional constriction 61 towards the connecting piece 58 and on the other hand through the threaded connection 62 screwed in connection nipple 57 which serves as an end stop for the valve body 10 in position F on the inside of the nozzle housing.
  • a check valve in the form of a backflow preventer, which blocks backflow in direction F, can preferably be inserted within the bypass line 59.
  • the blower 63 generates compressed air for air bubbling operation, for switching the valve body 10 and for expelling residual water from the supply system.
  • the nozzle housing 44 is clamped to the peripheral walls of the water basin 2.
  • the compressed air passes via line 64, preferably with backflow-preventing bend 46, to the multi-way valve 4 and via line 65 to the jet nozzles 7/44, which are connected to one another by line 66.
  • the supply of compressed air via line 65 is interrupted and released via line 67 to the jet nozzles 7/44.
  • the valve bodies 10, 27, 43 are switched within the nozzle housings 7, 21, 44, the nozzle orifices are closed, the compressed air reaches the connecting line 66 via the bypass 59 from position F to position E, etc.
  • the multi-way valve 4 blocks the line 65.
  • the compressed air, together with the expelled residual water, reaches the collecting container 68 in which residual water separates from the compressed air. At the lowest point 69 of the collecting container 68, the residual water is drained off to the channel.
  • a float valve is preferably used, which opens when water is generated and is closed in the idle state. Drain 70 serves towards the channel.
  • the compressed air is discharged from the upper area of the collecting container 68, it serves as an air separator, such constructions for separating different media are known.
  • the compressed air is discharged via line 71 from the collection container, preferably a solenoid valve 45 is used to discharge the compressed air, which is switched accordingly with the multi-way valve 4.
  • the compressed air can be discharged or fed back to the blower 63.
  • a pipe loop 46 prevents the supply of water to the fan.
  • a supply container 31 is preferably connected into line 67, from which one or more addition substances can be added during circulation mode of operation.
  • the addition can take place by means of an injection effect or via a controlled valve which controls the discharge from the container 31 accordingly.
  • a separate pressure generator preferably a pump 55
  • the pump 55 can, however, also serve to move the valve bodies 10, 27, 43, it being advantageous to have each air bubbling operation first followed by a liquid flushing phase and then a compressed air flushing phase, with residual water quantities of all kinds from the supply system in the last flushing phase driven out, which are drained together with the liquid detergent from the collecting container 68 to the channel.
  • a pipe loop 46 is also preferably installed in line 71, which prevents water from flowing back to the blower.
  • the line 71 also carries a ventilation 52 through which the fan sucks in fresh air.
  • the blower with feed lines, collecting container and storage container 31 is preferably accommodated below the water basin 2 or within its casing. It is advantageous to place the filling opening 74 for the reservoir 31 in the area of the edge of the water basin so that the refill can be carried out from an easily accessible location.
  • the various supply systems for water and / or air supply with their own circulation pump 55, by means of which the circulation medium can be circulated independently of any other operating mode and from which the valve bodies can alternatively be moved.
  • the main pump 1 with at least 2 power ranges and to use the low power range for the circulation, it is advantageous to choose a small pump for this, which independently takes over the circulation operation with less energy consumption and with far less noise.
  • the circulation pump can also be used to evacuate residual water, it is easy to control and can be included in an automated program.
  • a backflow preventer 60 is inserted into the housing 44 with inlet opening 47 and nozzle opening 13 towards the inner pool 14.
  • the ball valve 43 is movably mounted between the seats in pos. And G.
  • the housing carries two connecting pieces 57 and 58, which serve to supply a medium, preferably compressed air and / or circulation medium. Furthermore, the connection 58 and the connection 57 can be used to discharge residual water.
  • a float ball preferably serves as valve body 43. When residual water enters the nozzle housing 44, the valve body 43 floats and allows the residual water to flow out of the nozzle housing in position F.
  • the drain can be fed to the channel.
  • a collecting container as described above, is also conceivable.
  • circulation means is fed to the nozzle housing 44 via the connection 57.
  • the valve body 43 is guided from position F to position G and closes the entrance to the inner pool 14 there.
  • the circulation medium reaches item E and is continued via the nozzle 58, preferably to one or more subsequent single-jet nozzle housings.
  • the inlet to the inner pool can also be single or multi-jet.
  • a distributor cover is also conceivable. All of the above-described devices according to the invention, which serve to transport a medium or a circulation medium, can be used in combination.
  • the connecting pieces 57, 58 can be molded or attached directly to the nozzle housing, the valve body 43 of course also being able to be used from the inside of the water basin, for this purpose only the constriction in item G needs to be inserted as a screw part into the nozzle housing.
  • the connecting pieces can of course also both be attached to the rear housing part, or be designed as side outlets.
  • a connection to an existing pressure line, such as a water line or compressed air line, can also be used as an additional pressure generator.
  • the pressure generator 55 can thus also be a corresponding connection to an existing pressure line.

Abstract

A water bathtub with air spray device comprises at least one pressure generator (55), medium feed lines (24) which can be circulated and at least one spray nozzle (7) for spraying in one or more media. In such a water bathtub it is proposed that the feed line (24) conveying the other medium be blown out with a gaseous medium or a mixture and that residual water be discharged to the drain by blowing-out, preferably disinfected by addition of suitable agents. <IMAGE>

Description

Stand der TechnikState of the art

Die Erfindung geht aus von einem Wasserbekken, in dessen Umfassungswände Einstrahldüsen für Wasser und/oder Luft vorgesehen sind und die Einstrahldüsenmündungen verschließbar sind und dessen Zuleitungssystem durch Zirkulation des Umlaufwassers gespült werde kann.The invention is based on a water basin, in the peripheral walls of which jet nozzles for water and / or air are provided and the jet nozzle mouths are closable and whose feed system can be flushed through circulation of the circulating water.

Aus der EP-A-0 209 646, EP 0215514, DE-U-8631764.4, sind verschließbare Einstrahldüsen bekannt. Durch die U.S. 4.563.781 sind zirkulierbare Zuleitungssysteme offenbart. Der Oberbegriff des Anspruchs 1 geht von der DE-A-2 940 269 aus. Diese bekannten Einrichtungen haben den Nachteil, daß die Düsenmündungen jeweils in Flußrichtung des Einstrahlmediums zum Innenbecken hin öffnen und entweder durch hydrostatische Kräfte oder unter Zuhilfenahme von Federkraft schließen. Die Ventilsitze schließen dabei nicht kraftvoll und unterliegen stets einer unbekannten und sich ändernden Verschlußkraft. Bei der geringsten Verschmutzung der Ventilsitze durch Kalk, Haare etc. ist eine zuverlässige Abdichtung nicht mehr gege-Closable jet nozzles are known from EP-A-0 209 646, EP 0215514, DE-U-8631764.4. By the U.S. 4,563,781 circulable supply systems are disclosed. The preamble of claim 1 is based on DE-A-2 940 269. These known devices have the disadvantage that the nozzle orifices open in the direction of flow of the jet medium towards the inner basin and close either by hydrostatic forces or with the aid of spring force. The valve seats do not close forcefully and are always subject to an unknown and changing locking force. With the slightest contamination of the valve seats with lime, hair, etc., a reliable seal is no longer

ben. Bei Spülung unter Druck heben die Ventilsitze ab und das Spülwasser gelangt nachteiligerweise in das Innenbecken. Eine druckabhängige und leistungsstarke Spülung und Reinigung, wie diese für solche unzugängigen Zuleitungssysteme gefordert wird, ist daher mit den bekannten Düsenverschlußeinrichtungen nicht möglich. Diese Nachteile führen auch bei der Beseitigung von Restwasser aus den Zuleitungssystemen zu Problemen. Die zur Austreibung von Restwasser eingeblasene Druckluft entweicht an den Düsenverschlüßen, die unter dem Druck der Luft die Düsenmündungen zum Innenbecken hin öffnen.ben. When flushing under pressure, the valve seats lift off and the flushing water disadvantageously gets into the inner basin. A pressure-dependent and powerful flushing and cleaning, as is required for such inaccessible supply systems, is therefore not possible with the known nozzle closure devices. These disadvantages also lead to problems when removing residual water from the supply systems. The compressed air blown in to expel residual water escapes at the nozzle closures, which open the nozzle openings towards the inner pool under the pressure of the air.

Membranventile flattern in drucklosem Zustand und lassen insbesondere dann Badewasser in das Zuleitungssystem einlaufen, wenn die Membrane nicht von Druck beaufschlagt ist.Diaphragm valves flutter in a depressurized state and in particular allow bathing water to enter the supply system when the diaphragm is not pressurized.

Vorteile der ErfindungAdvantages of the invention

Die durch den kennzeichnenden Teil des Hauptanspruchs beschriebenen Merkmale schließen die Nachteile bekannter Whirlpools aus.The features described by the characterizing part of the main claim exclude the disadvantages of known whirlpools.

Restwassermengen können unter Zuhilfenahme von Druckluft aus dem Zuleitungssystem ausgeblasen werden, ohne daß Spritzwasser in das Innenbecken gelangt. Der Verschluß und/oder Öffnungsvorgang kann sowohl durch ein gasförmiges, wie auch durch ein flüssiges Medium oder kombiniert bewirkt werden. Auch Hilfsenergie, wie beispielsweise die Kraft eines zusätzlichen Druckerzeugers hydraulischer oder pneumatischer Art ist möglich.Residual amounts of water can be blown out of the supply system with the aid of compressed air without splashing water getting into the indoor pool. The closure and / or opening process can be effected both by a gaseous as well as by a liquid medium or in combination. Auxiliary energy, such as the power of an additional hydraulic or pneumatic pressure generator, is also possible.

Vorteilhafterweise wird der Verschluß- und oder der Öffnungsvorgang durch das Transportmedium bewirkt. Transportmedium kann sein: Badewasser, Zirkulationsmittel, Druckluft oder ein Gemisch oder ein zusätzliches Medium, das durch einen weiteren Druckerzeuger herangeführt wird, beispielsweise Frischwasser aus der Hauswasserversorgung, das gleichzeitig als Spülmittel dient.The closure and / or opening process is advantageously effected by the transport medium. The transport medium can be: bathing water, circulation medium, compressed air or a mixture or an additional medium that is brought in by another pressure generator, for example fresh water from the domestic water supply, which also serves as a flushing agent.

Die Ausgestaltung des Düsengehäuses mit mehreren Ein-/Ausgängen hat den Vorteil, daß diese wechselseitig genutzt werden können, sodaß der Ventilkörper aus verschiedenen Richtungen durch das strömende Medium bewegt werden kann und das Düsengehäuse selbst zum Mehrwegeventil gestaltet ist und die verschiedenen Ventilbewegungen, entsprechend den gewünschten Funktionen zwischen Einlaßöffnungen und Auslaßöffnung ihre Funktion ändern.The design of the nozzle housing with several inputs / outputs has the advantage that they can be used mutually, so that the valve body can be moved from different directions through the flowing medium and the nozzle housing itself is designed as a multi-way valve and the various valve movements, according to the desired Functions between inlet openings and outlet opening change their function.

Weitere Vorteile sind der nachfolgenden Beschreibung eines bevorzugten Ausführungsbeispiels, den Zeichnungen und den Ansprüchen entnehmbar.Further advantages can be found in the following description of a preferred exemplary embodiment, the drawings and the claims.

Es zeigt:

  • Fig. 1 einfache schematische Darstellung des Zuleitungssystemes, in das Einstrahldüsen für kombinierte Wasser- /Lufteinstrahlung eingesetzt sind.
  • Fig. 2 Schematische Darstellung des Zuleitungssystems wie vor, jedoch mit Vorratsbehälter für Spülwasser und separatem Druckerzeuger.
  • Fig. 3 Detail einer Einstrahldüse für Wasser-und Lufteinstrahlung, mit kolbenartigem Ventilkörper, mit Ansicht vom Innenbecken aus.
  • Fig. 4 Detail einer Einstrahldüse für ein Medium, in Seitenansicht und Teilschnitt.
  • Fig. 5 schematische Darstellung eines Zuleitungssystemes in das Einstrahldüsen gemäß Fig. 5 eingesetzt sind.
  • Fig. 6 Detail einer Einstrahldüse für ein Medium, mit einer Kugel als Ventilkörper in Seitenansicht und Teilschnitt.
It shows:
  • Fig. 1 is a simple schematic representation of the supply system, are used in the jet nozzles for combined water / air radiation.
  • Fig. 2 Schematic representation of the supply system as before, but with a reservoir for rinse water and a separate pressure generator.
  • Fig. 3 Detail of a single jet nozzle for water and air radiation, with a piston-like valve body, with a view from the inner pool.
  • Fig. 4 Detail of a single jet nozzle for a medium, in side view and partial section.
  • FIG. 5 shows a schematic representation of a feed line system in which single-jet nozzles according to FIG. 5 are used.
  • Fig. 6 Detail of a single jet nozzle for a medium, with a ball as a valve body in side view and partial section.

Die Erfindung ermöglicht die Ausgestaltung von verschließbaren Einstrahldüsen, die der Zuführung von zwei verschiedenen Medien dienen, wobei die Zuführungen für jedes Medium für sich geschlossen bzw. geöffnet werden kann.The invention enables the design of closable single-jet nozzles which are used to feed two different media, the feeds for each medium being able to be closed or opened individually.

Erfindungsgemäß ist es auch möglich, Düsen für zwei verschiedene Medien an deren gemeinsamen Düsenmündung zu verschließen. Der Verschluß der Düsenmündung ist erfindungsgemäß verbunden mit der Öffnung eines weiterführenden Anschlusses, wobei das Düsengehäuse selbst als Mehrwegeventil gestaltet ist. Die Erfindung ermöglicht jedoch auch Einstrahldüsen, die der Einstrahlung von nur einem Medium dienen und die wie ein Mehrwegeventil geöffnet und geschlossen werden. Die Darstellungen in den Zeichnungen sind daher als kombinationsfähige Beispiele zu sehen, die jeweils für sich betrachtet oder in Kombination eine eigene Erfindung darstellen. Merkmale, welche beispielsweise an der Darstellung der Einstrahldüse für ein Medium veranschaulicht sind, können im Detail für sich gesehen, auch für Einstrahldüsen genutzt werden, die der Einstrahlung von zwei Medien dienen.
Fig.1 1
Die Umlaufpumpe 1 und das Zuleitungssystem sind vorzugsweise ringartig um das Wasserbecken 2 angeordnet. Die Pumpe 1 steht mit ihrer Druckseite 3 mit wenigstens einem Ventil, bevorzugt einem Mehrwegeventil 4 in Verbindung. An dem Anschluß 5 ist die Druckleitung 6 angeschlossen, die in ihrem Verlauf zu wenigstens einer Einstrahldüse 7 hinführt. Das Mehrwegeventil 4 ist bevorzugt als Vierwegeventil ausgebildet.
According to the invention, it is also possible to close nozzles for two different media at their common nozzle mouth. According to the invention, the closure of the nozzle mouth is connected to the opening of a further connection, the nozzle housing itself being designed as a multi-way valve. However, the invention also enables single-jet nozzles which serve to irradiate only one medium and which are opened and closed like a multi-way valve. The illustrations in the drawings are therefore to be seen as examples that can be combined, each of which, viewed individually or in combination, represents a separate invention. Features which are illustrated, for example, by the representation of the jet nozzle for a medium can be seen in detail in their own right, and can also be used for jet nozzles which serve to irradiate two media.
Fig.1 1
The circulation pump 1 and the feed system are preferably arranged in a ring around the water basin 2. The pressure side of the pump 1 is connected to at least one valve, preferably a multi-way valve 4. At the connection 5, the pressure line 6 is connected, which leads to at least one jet nozzle 7 in its course. The multi-way valve 4 is preferably designed as a four-way valve.

Innerhalb des Gehäuses der Einstrahldüse 7 befindet sich eine hohlzylindrische Öffnung, in die ein Ventilkörper 10, bevorzugt in zylindrischer oder kolbenartiger Form, eingesetzt ist, der beweglich gelagert, transversale Ventilöffnungen bedient und der von dem strömenden Medium, das vorzugsweise gegen seine Stirnseiten wirkt, in eine Öffnungs-und eine Verschlußstellung bewegbar ist. Stirnseitig, vorzugsweise koaxial wird der Ventilkörper 10 gegen einen Ventilsitz 11 geführt. Bevorzugt erfolgt die Ventilkörper-Abdichtung im radialen Bereich durch zwei O-Ringe 12. Durch die Öffnung 13 wird das Medium in das Innenbecken eingestrahlt.Inside the housing of the jet nozzle 7 there is a hollow cylindrical opening, into which a valve body 10, preferably in a cylindrical or piston-like shape, is inserted, which is movably mounted, serves transverse valve openings and which is in contact with the flowing medium, which preferably acts against its end faces an opening and a closing position is movable. On the face side, preferably coaxially, the valve body 10 is guided against a valve seat 11. The valve body is preferably sealed in the radial area by two O-rings 12. The medium is radiated into the inner basin through the opening 13.

Die Umlaufpumpe 1 ist durch die Saugleitung 15 mit dem Wasser becken 2 verbunden. Der normale Badebetrieb ist gekennzeichnet durch die Betriebsweise:

  • Absaugen aus dem Wasserbecken, Beschleunigen des Umlaufwassers durch Pumpe 1 und Einstrahlung in das Innenbecken 14, mit oder ohne Luftbeimischung. Das Mehrwegeventil 4 führt das Medium dabei von A nach B.
The circulation pump 1 is connected to the water basin 2 through the suction line 15. Normal bathing is characterized by the mode of operation:
  • Suction from the water basin, accelerating the circulating water by pump 1 and radiation into the inner basin 14, with or without the addition of air. The multi-way valve 4 guides the medium from A to B.

Am Anschluß 16 ist die Druckleitung 17 angeschlossen, die in ihrem weiteren Verlauf zu dem Anschluß 18 der Einstrahldüse 7 führt. Durch verstellen des Mehrwegeventiles 4 in die Position A-D wird die Druckleitung 17 geflutet und die Druckleitung 6 über den Anschluß 5 in Richtung B-C freigegeben. Vom Anschluß 19 führt die Leitung 20 zu der Saugleitung 15.At the connection 16, the pressure line 17 is connected, which in its further course leads to the connection 18 of the jet nozzle 7. By adjusting the multi-way valve 4 to the position A-D, the pressure line 17 is flooded and the pressure line 6 is released via the connection 5 in the direction B-C. The line 20 leads from the connection 19 to the suction line 15.

Das sich innerhalb des Zuleitungssystems befindliche Medium wird durch die Pumpe 1 beschleunigt, es drückt den Ventilkörper 10 aus seinem Sitz 11. Dabei schließt der Ventilkörper 10 radial bzw. transversal die Einstrahlmündung 13. Der Mediumstrom führt nun über die Druckleitung 6 zurück zu dem Mehrwegeventil 4, passiert dort die Stellung B-C und gelangt über die Ansaugleitung 15 wieder zur Umlaufpumpe 1 bzw. in den geschlossenen Zirkulationskreislauf. Die Zirkulation kann eine oder mehrere Einstrahldüsen I, 11, 111 usw. erfassen. Vorzugsweise sind die Einstrahldüsen parallel zueinander angelegt.The medium located within the supply system is accelerated by the pump 1, it pushes the valve body 10 out of its seat 11. The valve body 10 closes the radiation port 13 radially or transversely. The medium flow now leads via the pressure line 6 back to the multi-way valve 4 , passes position BC there and reaches the circulation pump 1 or the closed circulation circuit via the suction line 15. The circulation can detect one or more jet nozzles I, 11, 111, etc. The jet nozzles are preferably arranged parallel to one another.

Die Leitungsstrecke 20 ist bei normalem Badebetrieb von der Zirkulation abgeschnitten. Innerhalb dieser Strecke ist eine Zugabestelle 22 angeordnet, über die beispielsweise Chemikalien dem Zirkulationskreislauf zugesetzt werden können. In der einfachsten Ausgestaltung entleert sich das Zirkulationsmittel nach dem Zirkulationsbetrieb durch die Ansaugleitung 15 in das Innenbecken 14. In der einfachsten Arbeitsweise erfolgt die Zirkulation bei gefülltem Wasserbecken, wobei das Innenbecken selbst von der Zirkulation abgeschnitten ist. Es ist jedoch auch möglich, eine gesteuerte Zirkulationsmittel-Ablaufeinrichtung oder ein auf Pumpendruck schließbares Ventil zu wählen, wie dies nachfolgend noch beschrieben wird.The line section 20 is cut off from the circulation during normal bathing. An addition point 22 is arranged within this route, via which chemicals, for example, chemicals can be added to the circulation circuit. In the simplest embodiment, the circulation medium is emptied into the inner pool 14 through the suction line 15 after the circulation operation. In the simplest mode of operation, the circulation takes place when the water pool is full, the inner pool itself being cut off from the circulation. However, it is also possible to choose a controlled circulation medium drain device or a valve that can be closed by pump pressure, as will be described below.

Für einen vom Beckeninhalt unabhängigen Zirkulationsmittelbetrieb trägt die Ansaugleitung 15 vorzugsweise ein Halteventil 30 das ein Rückschlagventil sein kann, das bei normalem Badebetrieb durch die Saugleistung der Pumpe 1 öffnet, jedoch bei Zirkulationsbetrieb durch die Leitungsstrecke 20 abgeschnitten ist, sodaß die Pumpensaugleistung das Halteventil nicht zu öffnen vermag. Es ist auch denkbar, ein Kolbenventil zu nutzen, das bewegt durch den Spülmitteldruck aus Leitung 20 die Leitung 15 zum Innenbecken hin sperrt. Die Rückstellung kann erfolgen durch Federkraft oder durch die Pumpensaugleistung, sobald die Strömungsrichtung durch Umstellung des Mehrwegeventiles 4 geändert wird.For a circulation medium operation which is independent of the tank content, the suction line 15 preferably carries a holding valve 30 which can be a check valve which opens during normal bathing operation due to the suction power of the pump 1, but is cut off during the circulation operation through the line section 20, so that the pump suction power does not open the holding valve can It is also conceivable to use a piston valve which, by moving the detergent pressure from line 20, blocks line 15 to the inner basin. The resetting can take place by spring force or by the pump suction power as soon as the flow direction is changed by changing over the multi-way valve 4.

In einer erfindungsgemäßen Ausgestaltung wird vorgeschlagen, bei Einstrahldüsen für zwei verschiedene Medien, auch die das andere Medium führende Zuleitung der Reinigung und der Spülung zu unterziehen und das Zirkulationsmittel auch durch diese Leitung zu führen.In an embodiment according to the invention, it is proposed that in the case of single-jet nozzles for two different media, the supply line carrying the other medium is also subjected to cleaning and rinsing and the circulation medium is also passed through this line.

Gemäß Fig. 3 wird vorgeschlagen, entweder die Einstrahlöffnung für jedes Medium getrennt zu verschließen oder gemäß Fig. 4 nur die gemeinsame Einstrahlöffnung vor dem Eintritt zum Innenbecken 14 hin zu verschließen. Bei der letztgenannten Möglichkeit wird das Zirkulationsmittel direkt in die luftführende Zuleitung 24 übergeführt, es braucht dort nur noch abgeflutet oder in die Leitung 6 zurückgeführt zu werden.According to FIG. 3, it is proposed either to close the radiation opening separately for each medium or, according to FIG. 4, to only close the common radiation opening before entering the inner pool 14. In the latter possibility, the circulation medium is transferred directly into the air-carrying supply line 24, it only needs to be flooded there or returned to the line 6.

Die Einstrahlöffnung der Düse 26 für das zweite Medium, wird vorzugsweise ebenfalls durch einen zylindrischen Ventilkörper 27, der ein Kolben sein kann geschlossen. Es wird vorgeschlagen, den Öffnungsvorgang durch Hilfsenergie, vorzugsweise durch eine Feder 37 zu bewirken. Der Schließvorgang kann durch das Zirkulationsmittel bewirkt werden. Es ist jedoch auch möglich, den Ventilkörper 27 durch einen Druck aus einer Steuerleitung 42 zu bewegen. Dabei kann das Transportmittel aus Leitung 6 dienen oder es kann ein selbständiger Druckerzeuger über die Steuerleitung 42 angeschlossen werden. Der Steuerdruck wirkt über den Raum 39 auf den Ventilkörper. Auch die Feder 37 kann in den Raum 39 untergebracht sein oder in dem entgegengesetzten Teil des Düsengehäuses gelagert gegen den Ventilkörper 27 wirken. Die Steuerleitung 42 kann jedoch auch als Bohrung angebracht sein, die das Transportmedium aus dem unteren Teil des Düsengehäuses mit dem Zuleitungsanschluß 6 in den oberen Gehäuseteil mit dem Raum 39 überführt.The jet opening of the nozzle 26 for the second medium is preferably also closed by a cylindrical valve body 27, which can be a piston. It is proposed to effect the opening process by means of auxiliary energy, preferably by means of a spring 37. The closing process can be effected by the circulation means. However, it is also possible to use the valve body 27 to move by a pressure from a control line 42. In this case, the means of transport from line 6 can be used or an independent pressure generator can be connected via control line 42. The control pressure acts on the valve body via the space 39. The spring 37 can also be accommodated in the space 39 or act against the valve body 27 in the opposite part of the nozzle housing. The control line 42 can, however, also be provided as a bore which transfers the transport medium from the lower part of the nozzle housing with the feed line connection 6 into the upper housing part with the space 39.

Die Abdichtung des Ventilkörpers 27 erfolgt vorzugsweise wieder durch O-Ringe 12. Bei axialer Kolbenbewegung erfolgt radialer Verschluß oder Öffnung der Ein- oder Ausstrahlöffnung 13,26,36. Die Abflutung der Leitung 24 erfolgt erfindungsgemäß über eine Öffnung 36, die entweder von dem Ventilkörper 27 ebenfalls geöffnet und geschlossen wird oder über ein zusätzliches Ventil 40 welches auf Druck aus der Leitung 24 öffnet und selbsttätig schließt. Das Ventil kann einen freien Auslauf zum Kanal haben oder in die Leitung 6 münden. In Verbindung mit der Öffnung 36 wird das Düsengehäuse wiederum zu einem Mehrwegeventil, das einerseits der Einstrahlung zum Wasserbeckeninnenraum 14 hin, andererseits der Weiterführung oder Abflutung wenigstens eines Mediums dient. Die Schließung der Düsenmündung kann natürlich auch durch eine sonstige dem Verschluß dienende Vorrichtung, wie beispielsweise Verschlußkappen oder Kugeln vorgesehen werden. Bevorzugt sind die Einstrahldüsen 7 so ausgebildet, daß die Ventilkörper zum Verschluß oder zum Öffnen von Mündungen und/oder Abläufen direkt in das Einstrahldüsengehäuse eingebaut sind.The valve body 27 is preferably sealed again by O-rings 12. When the piston moves axially, the inlet or outlet opening 13, 26, 36 is radially closed or opened. According to the invention, line 24 is flooded via an opening 36 which is either opened and closed by valve body 27 or via an additional valve 40 which opens under pressure from line 24 and closes automatically. The valve can have a free outlet to the channel or can open into line 6. In connection with the opening 36, the nozzle housing in turn becomes a multi-way valve, which on the one hand serves to irradiate the interior 14 of the water basin, and on the other hand serves to continue or flood at least one medium. The closure of the nozzle mouth can of course also be provided by some other device serving for the closure, such as for example caps or balls. The jet nozzles 7 are preferably designed such that the valve bodies for closing or opening orifices and / or drains are built directly into the jet nozzle housing.

Die Betriebsweise Spülbetrieb ist durch die gegenüber dem Badebetrieb umgekehrte Medium-Fließrichtung gekennzeichnet. Dabei wird der Strömungsweg über das Mehrwegeventil 4 von A nach D und von B nach C genutzt. Der Beginn der Spülphase kann eingeleitet werden, sobald die Pumpensaugleitung 15 mit Flüssigkeit versorgt wird. Bei Verwendung eines Halteventils 30 kann der Spülbetrieb verlängert werden. Der flüssigen Spülphase kann eine Druckluftbetriebene Spülphase folgen.
Fig. 2
The flushing mode of operation is characterized by the opposite medium flow direction to the bathing mode. The flow path via the multi-way valve 4 from A to D and from B to C is used. The start of the rinsing phase can be initiated as soon as the pump suction line 15 is supplied with liquid. When using a holding valve 30, the flushing operation can be extended. The liquid flushing phase can be followed by a compressed air operated flushing phase.
Fig. 2

In einer weiteren erfindungsgemäßen Ausgestaltung wird vorgeschlagen, innerhalb des Zuleitungssystems auch eine Spülwasserbevorratung anzulegen, in die Reinigungsmittel unmittelbar zugegeben werden kann, oder in die Reinigungsmittel zudosiert wird.In a further embodiment according to the invention, it is proposed to also create a rinse water supply within the supply system into which cleaning agents can be added directly or into which cleaning agents are metered.

Bevorzugt erhält die Leitung 20 ein Behältnis 31 zugeordnet, das sowohl in offener, also druckloser, wie auch in geschlossener Betriebsweise als Sammelbehälter für Spülwasser dient. Der Behälter 31 steht mit der Umlaufpumpe 1 in Verbindung. Über den Behälter, mit eigenem Entleerungsanschluß 41 kann vorzugsweise das ganze System entleert werden, wobei jede Art gesteuerter Ventile Verwendung finden kann. In der erfindungsgemäßen Vorrichtung wird dem Zuleitungssystem Druckluft zugeführt, die (ggf.) mit Zusatzstoffen zur Desinfektion etc. beaufschlagt sein kann.The line 20 is preferably assigned a container 31 which serves as a collecting container for rinsing water both in the open, that is to say depressurized, and in the closed operating mode. The container 31 is connected to the circulation pump 1. The entire system can preferably be emptied via the container, with its own emptying connection 41, and any type of controlled valve can be used. In the device according to the invention, compressed air is supplied to the supply system, which (if necessary) can be supplied with additives for disinfection, etc.

Beispielsweise kann Druckluft über die Leitung 24 zu den Düsen 1,11, 111 gelangen. Bei Umkehr der Ventile 10,27 ist es möglich, eine Luftspülung durch das ganze System zu führen. Auch Zuführung von Druckluft über Leitung 17 ist möglich, dabei ergeben sich die vorausgehend beschriebenen Funktionen sinngemäß. Vorteilhaft ist dabei die Nutzung des Drucklufterzeugers, der zur Erzeugung eines Luftsprudels ohne dies bei einer Vielzahl von Hydro-Massagebecken zur Ausstattung zählt. Dem Luftstrom kann dann nur noch eine Reinigungslösung zuzusetzt, werden die beispielsweise durch einen Zerstäuber beigemischt werden kann.For example, compressed air can reach the nozzles 1, 11, 111 via the line 24. When the valves 10, 27 are reversed, it is possible to flush the entire system with air. Compressed air can also be supplied via line 17, the functions described above being obtained analogously. It is advantageous to use the compressed air generator, which is part of the equipment for generating an air bubble without this in a large number of hydro massage pools. Only a cleaning solution can then be added to the air flow, which can be added, for example, by an atomizer.

Der Verschluß der Belüftungsleitung 28 gegen den Austritt des Spül- oder Zirkulationsmittels dient vorzugsweise ein Rückschlagventil 29, bevorzugt dient dazu eine Schwimmerkugel, die Belüftung ermöglicht, jedoch in Rückflußrichtung das Ventil schließt. Erfindungsgemäß wird vorgeschlagen, das Zuleitungssystem derart anzulegen, daß Restwassermengen mittels Druckluft ausgeblasen werden und Restwasser in den Kanal abgeleitet wird. Dabei ist es denkbar, vor dem Kanalanschluß einen Luftabscheider anzuordnen.The closure of the ventilation line 28 against the discharge of the flushing or circulating agent preferably serves a non-return valve 29, preferably a float ball is used for this purpose, which enables ventilation, but closes the valve in the return flow direction. According to the invention, it is proposed to create the supply system in such a way that residual water quantities are blown out by means of compressed air and residual water is discharged into the sewer. It is conceivable to arrange an air separator in front of the duct connection.

Fig. 4 zeigt eine weitere Variante einer erfindungsgemäßen verschließbaren Einstrahldüse durch die Druckluft in das Innenbecken eingestrahlt wird. Das Düsengehäuse 44 ist vorzugsweise durch eine Kontermutter 38 an der Umfassungswand des Wasserbeckens festgespannt. Wenigstens eine Düsenmündung 47 zeigt zum Innenbecken 14 hin, eine mehrstrahlige Ausführung und/oder ein Düsendeckel ist denkbar. Auf der Rückseite trägt das Düsengehäuse bevorzugt 2 Anschlußstutzen 57,58 die der Zuführung und Abführung von Druckluft und/oder Restwasser dienen. Im Innenraum des Düsengehäuses ist ein Ventilkörper 10 bevorzugt in zylindrischer Form und radialer O-Ringabdichtung 12 angeordnet.Fig. 4 shows a further variant of a closable jet nozzle according to the invention through which compressed air is blasted into the inner basin. The nozzle housing 44 is preferably clamped to the surrounding wall of the water basin by a lock nut 38. At least one nozzle mouth 47 points towards the inner basin 14, a multi-jet design and / or a nozzle cover is conceivable. On the back, the nozzle housing preferably carries 2 connecting pieces 57, 58 which serve for the supply and discharge of compressed air and / or residual water. In the interior of the nozzle housing, a valve body 10 is preferably arranged in a cylindrical shape and radial O-ring seal 12.

Wird dem Anschlußstutzen 58 Druckluft zugeführt, so öffnet der Ventilkörper durch Bewegung in Richtung von E nach F die radial zum Ventilkörper 10 angeordnete Düsenmündung 47 in Richtung zum Innenbecken 14 hin. Wird dem Anschlußstutzen 57 Druckluft zugeführt, so schließt der Ventilkörper durch Bewegung in Richtung von F nach E die Düsenmündung 47 und öffnet gleichzeitig den radial angeordneten Bypass 59. Die Druckluft verlässt das Düsengehäuse durch den Anschlußstutzen 58. Vorzugsweise werden mehrere derartiger Düsen hintereinander geschaltet. Die in Richtung von F nach E zugeführte Druckluft treibt jede Art von eingedrungenem Restwasser aus dem Zuleitungssystem aus.If compressed air is supplied to the connecting piece 58, the valve body opens the nozzle orifice 47 arranged radially to the valve body 10 in the direction of the inner basin 14 by movement in the direction from E to F. If compressed air is supplied to the connecting piece 57, the valve body closes the nozzle orifice 47 by moving in the direction from F to E and at the same time opens the radially arranged bypass 59. The compressed air leaves the nozzle housing through the connecting piece 58. Preferably, several such nozzles are connected in series. The compressed air supplied in the direction from F to E expels any type of residual water that has entered the supply system.

Selbstverständlich ist es möglich, auch diesen Ventilkörper einerseits durch das Transportmedium zu bewegen, beispielsweise zu öffnen und andererseits durch eine Druckfeder zu schließen.Of course, it is also possible to move this valve body on the one hand through the transport medium, for example to open it and on the other hand to close it by means of a compression spring.

In einer weiteren erfindungsgemäßen Ausgestaltung wird vorgeschlagen, in den Raum zwischen Ventilkörper 10 und der Düsenmündung 47 eine durch Federkraft schließende Rückflußsicherung 60 anzuordnen. Derartige Rückflußsicherungen sind als Rückschlagventile bekannt. Die Öffnung erfolgt durch das strömende Transportmedium, der Verschluß erfolgt durch Federkraft. Diese Ausgestaltung hat den Vorteil, daß die Rückschlgsicherung bei nachlassendem Luftdruck sofort schließt und größere Wasser mengen in das Zuleitungssystem nicht eindringen können,insbesondere ist sichergestellt, daß in der Zeit von verzögerten Ventilkörper 10 - Umschlatintervallen keine größeren Wassermengen eindringen können. Die Umschaltung des Ventilkörpers 10 kann bewirkt werden durch die Umkehr der Transportmedium-Fließ richtung wie vorausgehend beschrieben, es ist jedoch auch möglich, mit zwei verschiedenen Druckerzeugern zu arbeiten, wobei ein Druckerzeuger die Druckluft zur Luftsprudelbildung erzeugt und der zweite Druckerzeuger die Druckluft zum Schließen des Ventilkörpers und zum Austreiben von Restwassermengen erzeugt.In a further embodiment according to the invention, it is proposed to arrange a non-return valve 60 which closes by spring force in the space between valve body 10 and nozzle orifice 47. Such backflow safeguards are known as check valves. The opening is made by the flowing transport medium, the closure is made by spring force. This configuration has the advantage that the non-return valve closes immediately when the air pressure drops and larger amounts of water cannot penetrate the supply system, in particular it is ensured that in the time of delayed valve body 10 - Umschlatintervallen no larger amounts of water can penetrate. The switching of the valve body 10 can be effected by reversing the transport medium flow direction as described above, but it is also possible to work with two different pressure generators, one pressure generator generating the compressed air for the formation of air bubbles and the second pressure generator producing the compressed air for closing the Valve body and generated to expel residual water.

Selbstverständlich ist es denkbar, den Öffnungs-und/oder Schließvorgang der Einstrahldüse allgemein durch ein eigenständiges Aggregat wie eine hydraulische oder pneumatische Einrichtung mit eigenen Steuerleitungen zu betreiben. Derartige Einrichtungen sind aus der hydraulischen und/oder pneumatischen Steuertechnik bekannt.Of course, it is conceivable to generally operate the opening and / or closing process of the jet nozzle by means of an independent unit such as a hydraulic or pneumatic device with its own control lines. Such devices are known from hydraulic and / or pneumatic control technology.

Der Bypass 59 kann in das Einstrahldüsengehäuse 44 direkt eingearbeitet sein. Es ist jedoch auch möglich, durch zusätzliche Anschlußstutzen und einer Verbindungsleitung den Bypass zu schaffen. Dabei ist es denkbar, alle Anschlüsse mit einfachen Schlauchleitungen entsprechend zu verbinden. Der Endanschlag des Ventilkörpers 10 erfolgt vorzugsweise einerseits durch die Querschnittsverengung 61 zum Anschlußstutzen 58 hin und andererseits durch den über das Gewinde 62 eingeschraubten Anschlußnippel 57 der düsengehäuseinnseitig als Endanschlag für den Ventilkörper 10 in Pos. F dient. Innerhalb der Bypassleitung 59 kann vorzugsweise ein Rückschlagventil in Form eines Rückflußverhinderers, der Rückfluß in Richtung F sperrt, eingesetzt sein.The bypass 59 can be incorporated directly into the single-jet nozzle housing 44. However, it is also possible to create the bypass by additional connecting pieces and a connecting line. It is conceivable to connect all connections with simple hose lines accordingly. The end stop of the valve body 10 preferably takes place on the one hand through the cross-sectional constriction 61 towards the connecting piece 58 and on the other hand through the threaded connection 62 screwed in connection nipple 57 which serves as an end stop for the valve body 10 in position F on the inside of the nozzle housing. A check valve in the form of a backflow preventer, which blocks backflow in direction F, can preferably be inserted within the bypass line 59.

Fig. 5 Das Gebläse 63 erzeugt Druckluft für den Luftsprudelbetrieb, für die Umschaltung der Ventilkörper 10 und zum Austrieb von Restwasser aus dem Zuleitungssystem. Das Düsengehäuse 44 ist an den Umfassungswänden des Wasserbeckens 2 festgespannt. Die Druckluft gelangt über die Leitung 64 vorzugsweise mit rückflußverhinderndem Bogen 46 zu dem Mehrwegeventil 4 und über die Leitung 65 zu den Einstrahldüsen 7/44 die durch die Leitung 66 miteinander verbunden sind.Fig. 5 The blower 63 generates compressed air for air bubbling operation, for switching the valve body 10 and for expelling residual water from the supply system. The nozzle housing 44 is clamped to the peripheral walls of the water basin 2. The compressed air passes via line 64, preferably with backflow-preventing bend 46, to the multi-way valve 4 and via line 65 to the jet nozzles 7/44, which are connected to one another by line 66.

Bei Umschaltung des Mehrwegeventiles 4 wird die Zuführung der Druckluft über die Leitung 65 unterbrochen und über die Leitung 67 zu den Einstrahldüsen 7/44 freigegeben. Wie vorausgehend beschrieben erfolgt die Umschaltung der Ventilkörper 10,27,43 innerhalb der Düsengehäuse 7,21,44 die Düsenmündungen werden dabei verschlossen, die Druckluft gelangt über den Bypass 59 von Pos. F nach Pos. E in die Verbindungsleitung 66 usw. Das Mehrwegeventil 4 sperrt die Leitung 65. Die Druckluft gelangt zusammen mit ausgetriebenem Restwasser in den Sammelbehälter 68 in dem sich Restwasser von der Druckluft trennt. An der tiefsten Stelle 69 des Sammelbehälters 68 wird das Restwasser zum Kanal hin abgelassen.When switching the multi-way valve 4, the supply of compressed air via line 65 is interrupted and released via line 67 to the jet nozzles 7/44. As described above, the valve bodies 10, 27, 43 are switched within the nozzle housings 7, 21, 44, the nozzle orifices are closed, the compressed air reaches the connecting line 66 via the bypass 59 from position F to position E, etc. The multi-way valve 4 blocks the line 65. The compressed air, together with the expelled residual water, reaches the collecting container 68 in which residual water separates from the compressed air. At the lowest point 69 of the collecting container 68, the residual water is drained off to the channel.

Vorzugsweise wird dabei ein Schwimmerventil genutzt, das bei Anfall von Wasser öffnet und im Ruhezustand geschlossen ist. Zum Kanal hin dient der Ablauf 70.A float valve is preferably used, which opens when water is generated and is closed in the idle state. Drain 70 serves towards the channel.

Die Druckluft wird aus dem oberen Bereich des Sammelbehälters 68 abgeleitet, er dient dabei als Luftabscheider, derartige Konstruktionen zur Trennung von verschiedenen Medien sind bekannt. Die Druckluft wird über die Leitung 71 aus dem Sammelbehälter abgeführt, vorzugsweise dient dem Ablaß der Druckluft ein Magnetventil 45 das entsprechend mit dem Mehrwegeventil 4 geschaltet wird. Die Druckluft kann abgelassen werden oder dem Gebläse 63 wieder zugeführt werden. Eine Rohrschleife 46 verhindert die Zuführung von Wasser zu dem Gebläse.The compressed air is discharged from the upper area of the collecting container 68, it serves as an air separator, such constructions for separating different media are known. The compressed air is discharged via line 71 from the collection container, preferably a solenoid valve 45 is used to discharge the compressed air, which is switched accordingly with the multi-way valve 4. The compressed air can be discharged or fed back to the blower 63. A pipe loop 46 prevents the supply of water to the fan.

Vorzugsweise ist in die Leitung 67 ein Vorratsbehälter 31 eingeschaltet, aus dem bei Betriebsweise Zirkulation ein oder mehrere Zugabestoffe zugesetzt werden können. Die Zugabe kann erfolgen durch Injektionswirkung oder über ein gesteuertes Ventil, das den Auslauf aus dem Behälter 31 entsprechend steuert. Es ist jedoch auch denkbar, den Vorratsbehälter 31 mit Druckluft zu beaufschlagen und beispielsweise die Zugabestoffe durch Druckluft in die Leitung 67 einzuführen oder einzusprühen.A supply container 31 is preferably connected into line 67, from which one or more addition substances can be added during circulation mode of operation. The addition can take place by means of an injection effect or via a controlled valve which controls the discharge from the container 31 accordingly. However, it is also conceivable to apply compressed air to the storage container 31 and, for example, to introduce or spray the added substances into the line 67 by means of compressed air.

Zu diesem Zwecke ist es nur erforderlich, neben der Saugleitung 72 eine Druckleitung 73 an den Behälter 31 anzuschließen und diese Leitung mit Gebläsedruckluft zu beaufschlagen. An dem Vorratsbehälter 31 kann ein eigener Druckerzeuger, vorzugsweise eine Pumpe 55 angeschlossen sein, durch den Spülmittel in den Zirkulationskreislauf eingebracht werden kann. Die Pumpe 55 kann jedoch auch der Bewegung der Ventilkörper 10,27,43 dienen, dabei ist es vorteilhaft, jedem Luftsprudelbetrieb zunächst eine flüssige Spülphase und dann eine Druckluft-Spülphase folgen zu lassen, wobei dann bei der letzten Spülphase Restwassermengen jeder Art aus dem Zuleitungssystem ausgetrieben werden, die zusammen mit dem flüssigen Spülmittel vom Sammelbehälter 68 zum Kanal abgelassen werden. Es ist jedoch auch denkbar, das flüssige Spülmittel in einem eigenen Zirkulationskreislauf zu halten und dieses dem Vorratsbehälter 31 wieder zuzuführen. Dabei wird vorgeschlagen, den Sammelbehälterablauf 69 durch eine Zirkulationsleitung mit dem Vorratsbehälter 31 zu verbinden.For this purpose, it is only necessary to connect a pressure line 73 to the container 31 in addition to the suction line 72 and to apply blower compressed air to this line. A separate pressure generator, preferably a pump 55, can be connected to the reservoir 31, can be introduced into the circulation circuit by the detergent. The pump 55 can, however, also serve to move the valve bodies 10, 27, 43, it being advantageous to have each air bubbling operation first followed by a liquid flushing phase and then a compressed air flushing phase, with residual water quantities of all kinds from the supply system in the last flushing phase driven out, which are drained together with the liquid detergent from the collecting container 68 to the channel. However, it is also conceivable to keep the liquid detergent in a separate circulation circuit and to feed it back to the storage container 31. It is proposed to connect the collecting container outlet 69 to the storage container 31 by means of a circulation line.

In die Leitung 71 ist bevorzugt ebenfalls eine Rohrschleife 46 eingebaut, die Wasserrückfluß zum Gebläse verhindert.A pipe loop 46 is also preferably installed in line 71, which prevents water from flowing back to the blower.

Ebenfalls trägt die Leitung 71 eine Belüftung 52 durch die das Gebläse Frischluft ansaugt.The line 71 also carries a ventilation 52 through which the fan sucks in fresh air.

Bevorzugt ist das Gebläse mit Zuleitungen, Sammelbehälter und Vorratsbehälter 31 unterhalb des Wasserbeckens 2 oder innerhalb dessen Verkleidung untergebracht. Dabei ist es von Vorteil, die Einfüllöffnung 74 für den Vorratsbehälter 31 in den Bereich des Wasserbeckenrandes zu legen, damit die Nachfüllung von einem leicht zugängigen Ort aus erfolgen kann.The blower with feed lines, collecting container and storage container 31 is preferably accommodated below the water basin 2 or within its casing. It is advantageous to place the filling opening 74 for the reservoir 31 in the area of the edge of the water basin so that the refill can be carried out from an easily accessible location.

Erfindungsgemäß wird vorgeschlagen, die verschiedenen-Zuleitungssysteme für Wasser-und/oder Luftzufuhr mit einer eigenen Zirkulationspumpe 55 zu versehen, über die unabhängig von jeder sonstigen Betriebsweise das Zirkulationsmittel in Umlauf gebracht werden kann und von der aus hilfsweise die Ventilkörper bewegt werden können. Es ist zwar denkbar, die Hauptpumpe 1 mit wenigstens 2 Leistungebereichen zu wählen und den niedrigen Leistungsbereich für die Zirkulation zu nutzen, es ist jedoch von Vorteil, dafür ein Kleinpumpe zu wählen, die mit geringerem Energieverbrauch und mit weitaus geringerer Geräuschentwicklung den Zirkulationsbetrieb unabhängig übernimmt.According to the invention, it is proposed to provide the various supply systems for water and / or air supply with their own circulation pump 55, by means of which the circulation medium can be circulated independently of any other operating mode and from which the valve bodies can alternatively be moved. Although it is conceivable to select the main pump 1 with at least 2 power ranges and to use the low power range for the circulation, it is advantageous to choose a small pump for this, which independently takes over the circulation operation with less energy consumption and with far less noise.

Die Zirkulationspumpe kann zudem der Evakuierung von Restwassermengen dienen, sie ist leicht steuerbar und kann in ein Arbeitsablauf automatisiertes Programm einbezogen werden.
Fig. 6
The circulation pump can also be used to evacuate residual water, it is easy to control and can be included in an automated program.
Fig. 6

In das Gehäuse 44 mit Einlaßöffnung 47 und Düsenmündung 13 zum Innenbecken 14 hin ist ein Rückflußverhinderer 60 eingesetzt. Das Kugelventil 43 ist beweglich zwischen den Sitzen in Pos. und G gelagert. Das Gehäuse trägt zwei Anschlußstutzen 57 und 58, die der Zuführung eines Mediums, vorzugsweise Druckluft und/oder Zirkulationsmittel dienen. Im weiteren kann der Anschluß 58 sowie auch der Anschluß 57 der Ableitung von Restwasser dienen. Bei Zuführung eines Transportmediums durch den Anschluß 58 wird der Ventilkörper 43 gegen den Sitz in Pos. F gedrückt. Die Rückschlagsicherung 60 lässt das Medium in Richtung zum Innenbecken hin passieren. Vorzugsweise dient als Ventilkörper 43 eine Schwimmerkugel. Bei Eintritt von Restwasser in das Düsengehäuse 44 schwimmt der Ventilkörper 43 auf und lässt das Restwasser in Pos. F aus dem Düsengehäuse ablaufen. Der Ablauf kann dem Kanal zugeführt werden. Auch ein Sammelbehälter, wie vorausgehend beschrieben ist denkbar. In einer weiteren erfindungsgemäßen Betriebsweise wird dem Düsengehäuse 44 über den Anschluß 57 Zirkulationsmittel zugeführt. Der Ventilkörper 43 wird aus Pos. F in Pos. G geführt und verschließt dort den Eingang zum Innenbecken 14 hin. Das Zirkulationsmittel gelangt nach Pos. E und wird über den Stutzen 58 weitergeführt, vorzugsweise zu einem oder mehreren folgenden Einstrahldüsengehäusen. Auch bei dieser erfindungsgemäßen Einstrahldüse kann der Einlaß zum Innenbecken hin ein oder mehrstrahlig sein. Auch ein Verteilerdeckel ist denkbar. Alle vorausgehend beschriebenen erfindungsgemäßen Einrichtungen, die dem Transport eines Mediums oder einem Zirkulationsmittel dienen können in Kombination Verwendung finden.A backflow preventer 60 is inserted into the housing 44 with inlet opening 47 and nozzle opening 13 towards the inner pool 14. The ball valve 43 is movably mounted between the seats in pos. And G. The housing carries two connecting pieces 57 and 58, which serve to supply a medium, preferably compressed air and / or circulation medium. Furthermore, the connection 58 and the connection 57 can be used to discharge residual water. When a transport medium is supplied through the connection 58, the valve body 43 is pressed against the seat in position F. The kickback protection 60 allows the medium to pass towards the inner pool. A float ball preferably serves as valve body 43. When residual water enters the nozzle housing 44, the valve body 43 floats and allows the residual water to flow out of the nozzle housing in position F. The drain can be fed to the channel. A collecting container, as described above, is also conceivable. In a further mode of operation according to the invention, circulation means is fed to the nozzle housing 44 via the connection 57. The valve body 43 is guided from position F to position G and closes the entrance to the inner pool 14 there. The circulation medium reaches item E and is continued via the nozzle 58, preferably to one or more subsequent single-jet nozzle housings. In this single jet nozzle according to the invention, the inlet to the inner pool can also be single or multi-jet. A distributor cover is also conceivable. All of the above-described devices according to the invention, which serve to transport a medium or a circulation medium, can be used in combination.

Die Anschlußstutzen 57,58 können an das Düsengehäuse direkt angeformt oder angesetzt sein, wobei der Ventilkörper 43 natürlich auch von der Wasserbecken-Innenseite aus eingesetzt werden kann, dazu braucht nur die Verengung in Pos. G als Schraubteil in das Düsengehäuse eingesetzt zu sein. Die Anschlußstutzen können natürlich auch beide an das rückwärtige Gehäuseteil angebracht sein, oder als seitliche Abgänge ausgebildet sein. Als zusätzlicher Druckerzeuger kann auch ein Anschluß an eine bestehende Druckleitung, wie beispielsweise eine Wasserleitung oder Druckluftleitung, genutzt werden. Der Druckerzeuger 55 kann also auch ein entsprechender Anschluß an eine bestehende Druckleitung sein.The connecting pieces 57, 58 can be molded or attached directly to the nozzle housing, the valve body 43 of course also being able to be used from the inside of the water basin, for this purpose only the constriction in item G needs to be inserted as a screw part into the nozzle housing. The connecting pieces can of course also both be attached to the rear housing part, or be designed as side outlets. A connection to an existing pressure line, such as a water line or compressed air line, can also be used as an additional pressure generator. The pressure generator 55 can thus also be a corresponding connection to an existing pressure line.

Claims (10)

1. Water basin with air bubble device, with one supply system composed of one recirculation pump (1), a water suction line (15) and, at least, one single jet nozzle (7) for the injection of one or several media whereas the single jet nozzle being connected to two media feed lines (water 6,17, air 24,67,65) being characterized in that the supply system is conceived as circulating flow circuit and that means (compressed air generators), for supplying the circulating flow circuit with compressed air, are provided for and that this system can be exposed to an air flushing with which residual water is exhausted with compressed air and may be disposed into the sewer.
2. Water basin according to Claim 1 being characterized in that an air separator is envisaged for the connection to the sewer.
3. Water basin according to Claim 1 or 2 being chracterized in that the compressed air generator for producing air bubbles is also utilized for blowing out.
4. Water basin according to Claims 1 to 3 being characterized in that the air bubble device (bathing activities with air bubbling) is followed by being flushed by flusing phases, first with liquid and subsequently with air wheras with the latter phase residual water of any kind being expulsed from the supply system.
5. Water basin according to Claims 1 to 4 being characterized in that the aeration line (28) is provided with a check valve (29) preventing the escape of flushing and circulation media (air).
6. Water basin according to Claims 1 to 5 being characterized in that the different line systems for water and/or air are each furnished with an own circulation pump respectively an own pressure generator (55) via which, independently of any other operating mode, the circulation medium (water or air) is circulated.
7. Water basin according to Claims 1 to 6 being chracterized in that the circulation pump respectively the pressure generator (55) are integrated in the program serving automation.
8. Water basin according to Claims 1 to 7 being characterized in that the nozzle bodies (7,21,44) are provided with at least one connection (18,58,57) formed as drainage opening for residual water.
9. Water basin according to Claims 1 to 8 being characterized in that the outlet of the single jet nozzles can be locked towards the inner basin.
10. Water basin according to Claims 1 to 9 being characterized in that additives for disinfection can be admitted to the compressed air supplied to the feed system.
EP93103458A 1987-05-06 1988-05-03 Water bath tub with air spray device Expired - Lifetime EP0590228B2 (en)

Applications Claiming Priority (4)

Application Number Priority Date Filing Date Title
DE3715010 1987-05-06
DE19873715010 DE3715010C2 (en) 1987-05-06 1987-05-06 Water basin with aerator
EP88107070A EP0297246B1 (en) 1987-05-06 1988-05-03 Water bath tub with air spray device, with lockable single jet nozzle and with circulation pipes
EP91108118A EP0454177B1 (en) 1987-05-06 1988-05-03 Water bath tub with air spray line with stop valve in the suction line

Related Parent Applications (3)

Application Number Title Priority Date Filing Date
EP91108118A Division EP0454177B1 (en) 1987-05-06 1988-05-03 Water bath tub with air spray line with stop valve in the suction line
EP88107070.0 Division 1988-05-03
EP91108118.0 Division 1991-05-18

Publications (3)

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EP0590228A1 EP0590228A1 (en) 1994-04-06
EP0590228B1 true EP0590228B1 (en) 1995-08-09
EP0590228B2 EP0590228B2 (en) 2002-01-02

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ID=6326907

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EP93103458A Expired - Lifetime EP0590228B2 (en) 1987-05-06 1988-05-03 Water bath tub with air spray device
EP88107070A Expired - Lifetime EP0297246B1 (en) 1987-05-06 1988-05-03 Water bath tub with air spray device, with lockable single jet nozzle and with circulation pipes
EP91108118A Revoked EP0454177B1 (en) 1987-05-06 1988-05-03 Water bath tub with air spray line with stop valve in the suction line

Family Applications After (2)

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EP88107070A Expired - Lifetime EP0297246B1 (en) 1987-05-06 1988-05-03 Water bath tub with air spray device, with lockable single jet nozzle and with circulation pipes
EP91108118A Revoked EP0454177B1 (en) 1987-05-06 1988-05-03 Water bath tub with air spray line with stop valve in the suction line

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EP (3) EP0590228B2 (en)
AT (3) ATE73642T1 (en)
DE (5) DE3745018C2 (en)

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Also Published As

Publication number Publication date
EP0590228B2 (en) 2002-01-02
EP0590228A1 (en) 1994-04-06
DE3854306D1 (en) 1995-09-14
EP0297246A1 (en) 1989-01-04
EP0454177A1 (en) 1991-10-30
DE3745024C2 (en) 1995-01-19
ATE126048T1 (en) 1995-08-15
DE3745018C2 (en) 1995-11-23
DE3869228D1 (en) 1992-04-23
DE3851545D1 (en) 1994-10-20
ATE111338T1 (en) 1994-09-15
EP0297246B1 (en) 1992-03-18
ATE73642T1 (en) 1992-04-15
EP0454177B1 (en) 1994-09-14

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