WO1981002253A1 - A hydro-air vibrator massage device - Google Patents

A hydro-air vibrator massage device Download PDF

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Publication number
WO1981002253A1
WO1981002253A1 PCT/US1981/000189 US8100189W WO8102253A1 WO 1981002253 A1 WO1981002253 A1 WO 1981002253A1 US 8100189 W US8100189 W US 8100189W WO 8102253 A1 WO8102253 A1 WO 8102253A1
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WO
WIPO (PCT)
Prior art keywords
water
air
massage
rotor
housing
Prior art date
Application number
PCT/US1981/000189
Other languages
French (fr)
Inventor
L Macabee
Original Assignee
L Macabee
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by L Macabee filed Critical L Macabee
Priority to AU70331/81A priority Critical patent/AU7033181A/en
Publication of WO1981002253A1 publication Critical patent/WO1981002253A1/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
    • A61H9/00Pneumatic or hydraulic massage
    • 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
    • A61H23/00Percussion or vibration massage, e.g. using supersonic vibration; Suction-vibration massage; Massage with moving diaphragms
    • A61H23/04Percussion or vibration massage, e.g. using supersonic vibration; Suction-vibration massage; Massage with moving diaphragms with hydraulic or pneumatic drive
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01FMIXING, e.g. DISSOLVING, EMULSIFYING OR DISPERSING
    • B01F23/00Mixing according to the phases to be mixed, e.g. dispersing or emulsifying
    • B01F23/20Mixing gases with liquids
    • B01F23/23Mixing gases with liquids by introducing gases into liquid media, e.g. for producing aerated liquids
    • B01F23/237Mixing gases with liquids by introducing gases into liquid media, e.g. for producing aerated liquids characterised by the physical or chemical properties of gases or vapours introduced in the liquid media
    • B01F23/2376Mixing gases with liquids by introducing gases into liquid media, e.g. for producing aerated liquids characterised by the physical or chemical properties of gases or vapours introduced in the liquid media characterised by the gas being introduced
    • B01F23/23761Aerating, i.e. introducing oxygen containing gas in liquids
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01FMIXING, e.g. DISSOLVING, EMULSIFYING OR DISPERSING
    • B01F25/00Flow mixers; Mixers for falling materials, e.g. solid particles
    • B01F25/30Injector mixers
    • B01F25/31Injector mixers in conduits or tubes through which the main component flows
    • B01F25/313Injector mixers in conduits or tubes through which the main component flows wherein additional components are introduced in the centre of the conduit
    • 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
    • A61H2201/00Characteristics of apparatus not provided for in the preceding codes
    • A61H2201/12Driving means
    • A61H2201/1207Driving means with electric or magnetic drive
    • 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
    • A61H33/601Inlet to the bath
    • A61H33/6021Nozzles
    • A61H33/6036Hand-held connected to a supply hose
    • 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
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01FMIXING, e.g. DISSOLVING, EMULSIFYING OR DISPERSING
    • B01F23/00Mixing according to the phases to be mixed, e.g. dispersing or emulsifying
    • B01F23/20Mixing gases with liquids
    • B01F23/23Mixing gases with liquids by introducing gases into liquid media, e.g. for producing aerated liquids

Definitions

  • a HYDRO-AIR VIBRATOR MASSAGE DEVICE TECHNICAL FIELD This invention relates to a water-air massage device, and more particularly to a massage device in which the massage displacement is generally parallel with the region under massage.
  • water massage devices which employed entrained air used a low efficiency splash chamber to mix the air with the incoming water.
  • the prior art water massage devices produced an up and down pounding vibration generally perpendicular to the surface of the region under massage.
  • the resulting displacement within the tissue under massage was highly localized and intense.
  • these and other objects of the present invention are accomplished by exposing a high velocity water jet flow to air defining an air-water interface.
  • the water flow is passed through a channel for developing a adjacent sheath flow of air.
  • the water-air flow is mixed together in a rotor chamber.
  • a rotor device rotatably mounted within the chamber is rotationally responsive to the water-air flow about a rotation axis.
  • the center of mass of the rotor device is offset from the rotation axis causing a rotational eccentricity sufficient to establish a counter action motion generally parallel to the region under massage.
  • a perforated closure member extends across the rotor chamber generally orthoganal to the axis of rotation, forming a plurality of water-air streams.
  • a diversion structure directs the water-air mixture from the rotor chamber out the perforations in the closure member.
  • a rim cup extending from the closure member defines the region under massage by intensifying the output flow. Resilient protrusions extend from the closure member for engaging and displacing the region under massage along the counter action motion.
  • Figure 1A is a sectional top view of a hand held embodiment of the device showing the water source, rotor, and eccentric weight, as viewed downwardly along line IA- IA of Figure IB;
  • Figure IB is a sectional side view showing diversion baffles, massage fingers, and pressure cup, as viewed across the line IB-IB of Figure 1A;
  • Figure 1C is a bottom view of Figure 1A showing a perforation and finger configuration across the output plate;
  • Figure 2A is a sectional top view of a larger massage device as viewed along line IIA-IIA of Figure 2B;
  • Figure 2B is a sectional side view as viewed across line IIB-IIB of Figure 2A;
  • Figure 2C is a bottom view of Figure 2A;
  • Figure 3A is a sectional top view of a contoured massage device showing a curved massage plate
  • Figure 3B is a sectional side view as viewed across line IIIB-IIIB of Figure 3A;
  • Figure 3C is a bottom view of Figure 3A;
  • Figure 4A is a sectional top view of a bath tub massage device as viewed along line IVA-IVA of Figure 4B;
  • Figure 4B is a sectional side view as viewed across line IVB-IVB of Figure 4A;
  • Figure 4C is a bottom view of Figure 4A.
  • FIGS 1A through 1C show a hand held water-air massage unit 100.
  • Water source port 104 connects to a suitable supply of water under pressure such as from a household faucet or shower outlet.
  • Water oriface 106 with beveled approach 110, provides a high velocity jet 112 across air gap 116, through receiving channel 120, into rotor chamber 122 within housing 126.
  • a multi-bladed rotor 130 mounted in chamber 122 rotates rapidly under the kinetic impact of water jet 112 on the rotor blades.
  • An eccentric weight 134 creates a counter action massage motion within unit 100. Each blade developes a leading high pressure zone which continuously sweeps away the spent water from the impact area into a spinning water-air mixture.
  • Closure plate 146 extends across the bottom of compartments 142. Perferations 150 in closure plate 146 permit the sheared water-air mixture to divert into an open ended massage chamber 152 formed by cup rim 154 to provide a plurality of water-air output streams . Resilient protrusions or fingers 162 extend beyond rim 154 to engage and displace the region under massage. The output flow resistance of perforations 150 causes a water reserve to accumulate in compartments 142 and chamber 122.
  • the equilibruim level of the reserve is determined by the input pressure of water source 106 and the flow resistance through unit 100.
  • Unit 100 would typically be installed in a shower stall or bath for water capture (and disposal or recycle) convenience.
  • Unit 100 may be mounted in an elevated position to function in a pulsating shower mode; or hand held to function in a massage mode.
  • the operator holds unit 100 around the body or handle portion 166, and presses rim 154 against the region to be massaged.
  • the massage motion and output pulsations (described hereinafter) provide a stimulating gentle massage with the therapeutic benefit of entrained air.
  • the penetration of the massage may be increased by pressing unit 100 firmly against the region under massage.
  • the engagement between fingers 162 and the region under massage is increased firmly causing more definite massage displacement.
  • the pulsations are intensified by water pressure build up within massage chamber 152.
  • Air source port 104 is vented to a suitable air supply such as the atmosphere, for providing an air flow 170 for entrainment with water jet 112 in rotor chamber 122.
  • Air port 104 is in fluid communication with chamber 122 through air conduit 172, air gap 116, and an air sheath flow 174 around water jet 112 traveling through channel 120.
  • An air draw into chamber 122 is created by a differential pressure effect between the atmospheric pressure at gap 116 and a low water pressure zone within chamber 122.
  • Water jet 112 impacts on the air and water within housing 124 between the blades of rotor 130. The water-air mixture is pushed away causing the air draw.
  • Incoming air sheath flow 174 is throughly mixed with water jet 112 therein.
  • Rotor 130 additionally supports the air draw through channel 120 in the embodiment shown. As each rotor blade moves forward under the force of water jet 112, a low pressure trailing zone is created behind the blade which favors the draw of air from port 104 through air sheath 174.
  • Rotor 130 functions as a water powered air pump continuously bringing outside air into chamber 122. Air sheath flow 174 is aided by the drag effect of water jet 112 along the water-air interface within channel 120. The major portion of the water-air interface is a cylindrical surface extending through channel 120.
  • Massage unit 100 provides a rotational massage motion in a plane parallel to the region under massage causing a lateral tissue displacement.
  • the side to side displacement is disbursed over area within, and adjacent to, massage chamber 152.
  • the massage motion is generated by eccentric weight 134 on rotor 130 which establishes a center of mass offset from rotation axis 180.
  • the entire unit 100 developes a counter action rotation orthoganal to rotation axis 180.
  • the frequency of the massage displacement is determined by the rotor speed, and may be varied by adjusting the pressure of water source 106.
  • the region under massage may be further stimulated by pulsations in the intensity of output flow 160.
  • Entrained air in water-air mixture 182 may be compressed by the high pressure zone created by water jet 112, which extends throughout diversion compartments 142.
  • the compressed air expands abruptly upon passing through perforations 150 in closure member 146, causing rapid acceleration of the water in the perforation immediately preceding the expanding air.
  • the resulting localized burst of water propagates a small pressure wave towards the region under massage.
  • the combined effect of all the water bursts from all of the perforations establishes an incoherent pattern of small pressure transitions.
  • a more general output flow pulsation may be provided by the effect of eccentric weight 134 passing through jet 112.
  • Weight 134 completely fills the space between to adjacent blades causing a temporary interruption of the water flow through chamber 122 and the high pressure through out diversion compartments 142.
  • This step change in flow and pressure conditions establishes a corresponding step change in the intensity of output flow 160 once each rotation of rotor 130 for a time period of 45 degrees.
  • a general pulse is propagated across the entire area of chamber 152 toward the region under massage.
  • the air entrained within mixture 182 cushions the pulse by reducing the sharp leading and trailing edges of the pulse transition.
  • the entrained air absorbs the high freguency component of the pulse edges causing an increase in the pulse transition time.
  • the vertical bearing surface between rotor 130 and axial shaft 184 and the horizontal bearing surface between rotor 130 and closure plate 146 may be lubricated by the equilibrium reserve of water-air mixture 182 within chamber 122.
  • the thin axial passage between shaft 184 and the surface of the axial bore through rotor 130 fills with the reserve mixture during operation and provides a continuous fluid film bearing.
  • the centrifugal force developed by spinning weight 134. tends to maintain rotor 130 in parallel relationship with rotation axis 180 and shaft 184.
  • the engagement between rotor 130 and shaft 184 is a rolling contact in which revolves about shaft 184 in opposition to weight 134.
  • rotor 130 is formed of a suitable light weight substance to minimize the horizontal bearing contact between the bottom surface or rotor 130 and top surface of closure member 146. During operation, the buoyancy of rotor 130 reduces the downward bearing resistance.
  • FIGS 2A through 2C show utility handheld unit 200 with a larger closure plate 246 and massage chamber 252.
  • Unit 200 requires a higher water flow, which may be recycled at a controlled-elevated pressure to provide the desired rotor speed.
  • Unit 200 may operated from the same water source as unit 100 of Figure 1, at a lower rotational speed.
  • Figures 3A through 3C show a special purpose unit 300 with a contoured closure plate 346 and massage chamber 352, suitable for accomodating specifically contoured areas.
  • the cylindrical contour shown in Figure 3 is particularly suited for "Charley Horse” applications involving the massage of large muscles such as thighs.
  • Figure 4 shows a stationary bath unit 400 with an area type closure plate 446 and massage chamber 452 for back-rest, tub mounting.
  • Unit 400 is suitable for massaging large rheumatoidal areas such as the upper and lower back.
  • the large massage area will require a larger rotor 430 and eccentric weight 434.
  • the weight could occupy more than one blade position, extending for as much as 120 degrees of the rotor circumference.
  • the eccentric weight may be formed by the absence of material from the rotor such as one or more missing blades.
  • the rotor may be positioned off center within a cylindrical housing to facilitate passage of the water-air mixture.
  • a special therapeutic vapor or substance may be employed with or without air from the atmosphere.

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  • Health & Medical Sciences (AREA)
  • Rehabilitation Therapy (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • Epidemiology (AREA)
  • Pain & Pain Management (AREA)
  • Physical Education & Sports Medicine (AREA)
  • Chemical & Material Sciences (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Animal Behavior & Ethology (AREA)
  • General Health & Medical Sciences (AREA)
  • Public Health (AREA)
  • Veterinary Medicine (AREA)
  • Percussion Or Vibration Massage (AREA)

Abstract

It is useful in self applied hydro massage therapy to apply a vigorous massage to the body with a minimum of exertion by the user of the device. The invention comprises a water massage device with entrained air that is held against the region to be massaged. Mechanical displacement of the device coupled with pulsations in the water-air flow create a gentle massage. Air is entrained by passing a high velocity water jet (112) across an air gap (116) and through a receiving tube (120) into a rotor chamber (122). Differential pressures developed in the housing establishes an air draw through the receiving tube into the housing. An eccentrically weighted rotor (130) revolves under the impact of the jet (112) causing the entire device to counter rotate creating the massage displacement. Each blade of the rotor develops a high pressure leading zone which sweeps away spent water. Each blade also develops a low pressure trailing zone as the blade passes the receiving tube, which favors the air draw. The invention thus applies a vigorous massage to the body by means of the air and water stream expelled therefrom. This action is intensified by the automatic counter-revolution of the device imparted thereto by the excentrically weighted rotor (130).

Description

Description
A HYDRO-AIR VIBRATOR MASSAGE DEVICE TECHNICAL FIELD This invention relates to a water-air massage device, and more particularly to a massage device in which the massage displacement is generally parallel with the region under massage.
This application is a rewritten continuation application of earlier filed copending application entitled "Hydro-Air Vibrator Massage Apparatus" serial number 06/121,363, filed February 14, 1980 by the present Applicant.
BACKGROUND
Heretofore, water massage devices which employed entrained air used a low efficiency splash chamber to mix the air with the incoming water.
The prior art water massage devices produced an up and down pounding vibration generally perpendicular to the surface of the region under massage. The resulting displacement within the tissue under massage was highly localized and intense.
SUMMARY
It is therefore an object of this invention to provide an improved air entrainment, water massage device. It is another object of this invention to provide a water-air massage device which conserves shower water and energy required to heat the shower water.
It is a further object of this invention to provide a water-air massage device which provides a massage motion parallel to the region under massage. It is a further object of this invention to provide a water-air massage device which is flexible in design and application.
It is a further object of this invention to provide a water-air massage device employing water powered rotor. It is a further object of this invention to provide a water-air massage device in which the rotor is lubricated by water.
It is a further object of this invention to provide a water-powered vibrating massage device having a pulsating output.
It is a further object of this invention to provide a water-air massage device in which the rotor supports air draw for entrainment into the water.
It is a further object of this invention to provide a water-air massage device which in which entrained air cushions the impact of the massage water.
It is a further object of this invention to provide a water-air massage device which is inexpensive, easy to install, and operable over a range of input water pressures. Briefly, these and other objects of the present invention are accomplished by exposing a high velocity water jet flow to air defining an air-water interface. The water flow is passed through a channel for developing a adjacent sheath flow of air. The water-air flow is mixed together in a rotor chamber. A rotor device rotatably mounted within the chamber is rotationally responsive to the water-air flow about a rotation axis. The center of mass of the rotor device is offset from the rotation axis causing a rotational eccentricity sufficient to establish a counter action motion generally parallel to the region under massage. A perforated closure member extends across the rotor chamber generally orthoganal to the axis of rotation, forming a plurality of water-air streams. A diversion structure directs the water-air mixture from the rotor chamber out the perforations in the closure member. A rim cup extending from the closure member defines the region under massage by intensifying the output flow. Resilient protrusions extend from the closure member for engaging and displacing the region under massage along the counter action motion.
BRIEF DESCRIPTION OF THE DRAWING
Further objects and advantages of the massage device, and the operation of the eccentrically weighted rotor, will become apparent from the following detailed description and drawing in which:
Figure 1A is a sectional top view of a hand held embodiment of the device showing the water source, rotor, and eccentric weight, as viewed downwardly along line IA- IA of Figure IB; Figure IB is a sectional side view showing diversion baffles, massage fingers, and pressure cup, as viewed across the line IB-IB of Figure 1A;
Figure 1C is a bottom view of Figure 1A showing a perforation and finger configuration across the output plate;
Figure 2A is a sectional top view of a larger massage device as viewed along line IIA-IIA of Figure 2B;
Figure 2B is a sectional side view as viewed across line IIB-IIB of Figure 2A; Figure 2C is a bottom view of Figure 2A;
Figure 3A is a sectional top view of a contoured massage device showing a curved massage plate;
Figure 3B is a sectional side view as viewed across line IIIB-IIIB of Figure 3A; Figure 3C is a bottom view of Figure 3A; Figure 4A is a sectional top view of a bath tub massage device as viewed along line IVA-IVA of Figure 4B; Figure 4B is a sectional side view as viewed across line IVB-IVB of Figure 4A; and Figure 4C is a bottom view of Figure 4A. DETAILED DESCRIPTION
General Operation
Figures 1A through 1C show a hand held water-air massage unit 100. Water source port 104 connects to a suitable supply of water under pressure such as from a household faucet or shower outlet. Water oriface 106, with beveled approach 110, provides a high velocity jet 112 across air gap 116, through receiving channel 120, into rotor chamber 122 within housing 126. A multi-bladed rotor 130 mounted in chamber 122 rotates rapidly under the kinetic impact of water jet 112 on the rotor blades. An eccentric weight 134 creates a counter action massage motion within unit 100. Each blade developes a leading high pressure zone which continuously sweeps away the spent water from the impact area into a spinning water-air mixture. The advancing lower edge of the spinning mixture is sheared away by diversion baffle 140 causing the water- air mixture to enter diversion compartments 142. The diversion structure reduces the rotational component of the water-air motion and increases the output component or downward component. Closure plate 146 extends across the bottom of compartments 142. Perferations 150 in closure plate 146 permit the sheared water-air mixture to divert into an open ended massage chamber 152 formed by cup rim 154 to provide a plurality of water-air output streams . Resilient protrusions or fingers 162 extend beyond rim 154 to engage and displace the region under massage. The output flow resistance of perforations 150 causes a water reserve to accumulate in compartments 142 and chamber 122. The equilibruim level of the reserve is determined by the input pressure of water source 106 and the flow resistance through unit 100. Unit 100 would typically be installed in a shower stall or bath for water capture (and disposal or recycle) convenience. Unit 100 may be mounted in an elevated position to function in a pulsating shower mode; or hand held to function in a massage mode. In the massage mode, the operator holds unit 100 around the body or handle portion 166, and presses rim 154 against the region to be massaged. The massage motion and output pulsations (described hereinafter) provide a stimulating gentle massage with the therapeutic benefit of entrained air. The penetration of the massage may be increased by pressing unit 100 firmly against the region under massage. The engagement between fingers 162 and the region under massage is increased firmly causing more definite massage displacement. The pulsations are intensified by water pressure build up within massage chamber 152.
Air Entrainment
Air source port 104 is vented to a suitable air supply such as the atmosphere, for providing an air flow 170 for entrainment with water jet 112 in rotor chamber 122. Air port 104 is in fluid communication with chamber 122 through air conduit 172, air gap 116, and an air sheath flow 174 around water jet 112 traveling through channel 120. An air draw into chamber 122 is created by a differential pressure effect between the atmospheric pressure at gap 116 and a low water pressure zone within chamber 122. Water jet 112 impacts on the air and water within housing 124 between the blades of rotor 130. The water-air mixture is pushed away causing the air draw. Incoming air sheath flow 174 is throughly mixed with water jet 112 therein. The water is radially deflected through the surrounding air sheath upon contact with the rotor blades, resulting in a close association therebetween. The air draw and entrainment is disclosed in more detail in earlier filed copending application entitled Jet Air Shower Device, Serial Number 069,631 filed August 27, 1979 by the present inventor; which disclosure is hereby incorporated by reference.
The rotation of rotor 130 additionally supports the air draw through channel 120 in the embodiment shown. As each rotor blade moves forward under the force of water jet 112, a low pressure trailing zone is created behind the blade which favors the draw of air from port 104 through air sheath 174. Rotor 130 functions as a water powered air pump continuously bringing outside air into chamber 122. Air sheath flow 174 is aided by the drag effect of water jet 112 along the water-air interface within channel 120. The major portion of the water-air interface is a cylindrical surface extending through channel 120. Massage Displacement
Massage unit 100 provides a rotational massage motion in a plane parallel to the region under massage causing a lateral tissue displacement. The side to side displacement is disbursed over area within, and adjacent to, massage chamber 152. The massage motion is generated by eccentric weight 134 on rotor 130 which establishes a center of mass offset from rotation axis 180. As rotor 130 spins, the entire unit 100 developes a counter action rotation orthoganal to rotation axis 180. The frequency of the massage displacement is determined by the rotor speed, and may be varied by adjusting the pressure of water source 106. Output Flow Pulsations
If desired, the region under massage may be further stimulated by pulsations in the intensity of output flow 160. Entrained air in water-air mixture 182 may be compressed by the high pressure zone created by water jet 112, which extends throughout diversion compartments 142. The compressed air expands abruptly upon passing through perforations 150 in closure member 146, causing rapid acceleration of the water in the perforation immediately preceding the expanding air. The resulting localized burst of water propagates a small pressure wave towards the region under massage. The combined effect of all the water bursts from all of the perforations establishes an incoherent pattern of small pressure transitions. A more general output flow pulsation may be provided by the effect of eccentric weight 134 passing through jet 112. Weight 134 completely fills the space between to adjacent blades causing a temporary interruption of the water flow through chamber 122 and the high pressure through out diversion compartments 142. This step change in flow and pressure conditions establishes a corresponding step change in the intensity of output flow 160 once each rotation of rotor 130 for a time period of 45 degrees. A general pulse is propagated across the entire area of chamber 152 toward the region under massage. The air entrained within mixture 182 cushions the pulse by reducing the sharp leading and trailing edges of the pulse transition. The entrained air absorbs the high freguency component of the pulse edges causing an increase in the pulse transition time. Water Lubrication
If desired, the vertical bearing surface between rotor 130 and axial shaft 184 and the horizontal bearing surface between rotor 130 and closure plate 146 may be lubricated by the equilibrium reserve of water-air mixture 182 within chamber 122.
The thin axial passage between shaft 184 and the surface of the axial bore through rotor 130 fills with the reserve mixture during operation and provides a continuous fluid film bearing. The centrifugal force developed by spinning weight 134. tends to maintain rotor 130 in parallel relationship with rotation axis 180 and shaft 184. The engagement between rotor 130 and shaft 184 is a rolling contact in which revolves about shaft 184 in opposition to weight 134. Preferably, rotor 130 is formed of a suitable light weight substance to minimize the horizontal bearing contact between the bottom surface or rotor 130 and top surface of closure member 146. During operation, the buoyancy of rotor 130 reduces the downward bearing resistance.
Figures 2A through 2C show utility handheld unit 200 with a larger closure plate 246 and massage chamber 252. Unit 200 requires a higher water flow, which may be recycled at a controlled-elevated pressure to provide the desired rotor speed. Unit 200 may operated from the same water source as unit 100 of Figure 1, at a lower rotational speed.
Figures 3A through 3C show a special purpose unit 300 with a contoured closure plate 346 and massage chamber 352, suitable for accomodating specifically contoured areas. The cylindrical contour shown in Figure 3 is particularly suited for "Charley Horse" applications involving the massage of large muscles such as thighs. Figure 4 shows a stationary bath unit 400 with an area type closure plate 446 and massage chamber 452 for back-rest, tub mounting. Unit 400 is suitable for massaging large rheumatoidal areas such as the upper and lower back. The large massage area will require a larger rotor 430 and eccentric weight 434. The weight could occupy more than one blade position, extending for as much as 120 degrees of the rotor circumference.
SPECIFIC EMBODIMENT The following particulars of are given as an illustrative example of workable dimensions in inches (centimeters parenthesis) for each of the embodiments. Element Hand Held Larger Contured Bath
Oriface 1/8(0.32) 1/4(0.64) 1/4(0.64) 5/8(1.59) Gap 3/8(0.95) 3/4(1.90) 3/4(1.90) 6/4(3.81) Channel length 5/4(3.17) 2 (5.08) 2 (5.08) 3 (7.62) diameter 1/4(0.64) 3/8(0.95) 3/8(0.95) 3/4(1.90) rotor dia 3/2(3.81) 5 (12.7) 5 (12.7) Plate dia 3/2(3.81) 5 (12.7) 5 (12.7) Perforations number 16 40 45 114 size 1/16(0.16) 1/16(0.16) 5/32(0.40) 5/32(0.40) Fingers length 5/8(1.59) 3/4(1.90) 1 (2.54) 3/2(3.81) number 12 24 25 62 Cup diameter 3/2(3.81) 5 (12.7) 9 (22.9) 12(30.5) depth 1/2(1.27) 1/2(1.27) 3/4(1.90) 5/4(3.17) Water Use gal/min 2 12 12 35 lit/min 7.6 46 46 133 The above values are not intended as defining limitations of the invention. Numerous other dimensions and configurations involving different applications are possible. For example, the number and size of the perforations may be varied to obtain the desired water-air reserve within the rotor chamber in applications involving higher or lower water pressure. INDUSTRIAL APPLICABILITY
It will be apparent to those skilled in the art that the objects of this invention have been achieved by providing a self propelled, vibrating, air entrainment massage device with a pulsating output flow.
CONCLUSION Clearly various changes may be made in the structure and embodiments shown herein without departing from the concept of the invention. For example the eccentric weight may be formed by the absence of material from the rotor such as one or more missing blades. The rotor may be positioned off center within a cylindrical housing to facilitate passage of the water-air mixture. A special therapeutic vapor or substance may be employed with or without air from the atmosphere.
Therefore, the scope of the invention is to be determined by the terminology of the following claims and the legal equivalents thereof.

Claims

I claim as my invention:
1. Water-air massage apparatus for providing a cyclic massage displacement generally parallel to the region under massage, comprising: water source for providing a high velocity water jet flow; air source for exposing the water jet flow to air defining an air-water interface; channel means having a receiving end for receiving the water jet flow with an adjacent air flow, and an exit end for providing an exit flow of water and air; housing means with a chamber therein for receiving and mixing the exit flow from the channel means; rotor means rotatably mounted within the chamber and rotationally responsive to the exit flow about a rotation axis, the rotor means having a center of mass offset from the rotation axis thereof for causing a rotational eccentricity sufficient to establish a counter action housing motion generally parallel to the region under massage; perforated closure means across the housing generally orthoganal to the axis of rotation, forming a plurality of output streams of water-air mixture; diversion means for receiving the water-air mixture from the chamber and directing the water-air mixture out the perforations of the closure means; an open ended massage chamber formed by a rim means extending from the closure means for defining the region under massage by intensifying the output streams; resilent means extending from the closure means for engaging and displacing the region under massage by the housing counter motion.
2. The apparatus of claim 1, wherein the closure means is a perforated plate.
3. The apparatus of claim 2, wherein the perforations in the plate are beveled around the inside.
4. The apparatus of claim 2, wherein the rim means is a cylindrical extention of the housing means.
5. The apparatus of claim 4, wherein the resilent means is a plurality of protrusions extending beyond the cylindrical cup.
6. The apparatus of claim 1, further comprising a handle portion for holding the apparatus.
7. The apparatus of claim 6, wherein the water source is a supply conduit extending through the handle portion.
8. The apparatus of claim 6, wherein the air source is vented to the atmosphere through a remote vent along the handle portion.
9. The apparatus of claim 1, wherein the water jet flow is a single jet of water, and the channel means is a single linear receiving channel.
10. The apparatus of claim 9, wherein the receiving channel is concentric with the water jet, and the air flow forms and outer sheath about the water jet.
11. The apparatus of claim 1, wherein the rotor means has a plurality of impact surfaces for converting a portion of the velocity kinetic energy of the exit flows into rotational kinetic energy around the rotor means.
12. The apparatus of claim 11, wherein the impact surfaces are radially extending blades with space therebetween.
13. The apparatus of claim 12, wherein the offset center of mass is caused by a weight means mounted on the rotor means.
14. The apparatus of claim 13, wherein the weight means fills the space between at least one pair of adjacent blades.
15. The apparatus of claim 14, wherein the interblade weight interrupts the water-air mixture flow pattern once each rotation of the rotor means causing a cyclic pulsation in the water pressure traπsfered to the region under massage.
16. The apparatus of claim 14, wherein the rotation axis of the rotor means is orthoganal to the water jet flow.
17. The apparatus of claim 16, wherein the rotation axis of the rotor means is coincident with the center axis of the chamber.
18. The apparatus of claim 16, wherein the chamber has a shaft means therethrough, and the rotor means has a bearing engagement with the shaft means for supporting the rotation thereof within the chamber.
19. The apparatus of claim 18, wherein the bearing engagement is lubricated by the water-air mixture within the chamber.
20. The apparatus of claim 16, wherein the diversion means is a series of baffles for reducing the rotational flow of the water-air mixture to permit the water-air mixture to flow out the perforations in the closure means.
21. The apparatus of claim 20, wherein the baffles divide the diversion means into a series of compartments across the closure means.
22. A method of providing a water-air massage for a region under massage, comprising the steps of: providing a high velocity water jet; exposing the water jet to air; passing the water jet and adjacent air into a housing; forming a water-air mixture within the housing; rotating an eccentric rotor within the housing in response to the kinetic energy of the water jet; establishing a circular housing motion generally parallel with the region under massage due to the eccentricity of the rotor; diverting the water-air mixture towards the region under massage; forming a plurality of water-air streams against the region under massage by means of a perforated closure member on the housing; displacing the region under massage in response to the circular motion of the housing,
23. The method of claim- 22, further comprising
additional step of intensifying the effect of the plurality of water-air streams by a peripheral cup.
24. The method of claim 22, wherein the step of diverting the water-air mixture comprises; reducing the rotation component of the water-air motion; and increasing the linear component of the water- air.
25. The method of claim 22, wherein the eccentric rotor has blades for receiving the water jet and a weight mounted between two adjacent blades for for providing the eccentricity.
26. The method of claim 25, comprising the further step of: pulsing the water pressure of the plurality of streams by temporarily interupting the water-air flow within the housing due to the weight passing through the water jet.
27. The method of claim 22, wherein the displacement of the region under massage is accomplished by a plurality of resilient protrusions extending from the housing for engaging the region under massage.
28. The method of claim 22, further comprising the steps of: compressing the air within the water-air mixture in the housing; and creating temporary pressure bursts within each of the plurality of output streams due to the expanding air therein.
PCT/US1981/000189 1980-02-14 1981-02-12 A hydro-air vibrator massage device WO1981002253A1 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
AU70331/81A AU7033181A (en) 1980-02-14 1981-02-12 A hydro-air vibrator massage device

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
US12136380A 1980-02-14 1980-02-14
US121363 1980-02-14

Publications (1)

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WO1981002253A1 true WO1981002253A1 (en) 1981-08-20

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Application Number Title Priority Date Filing Date
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EP (1) EP0045810A1 (en)
JP (1) JPS57500228A (en)
GB (1) GB2081587B (en)
WO (1) WO1981002253A1 (en)

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
FR2512654A1 (en) * 1981-09-14 1983-03-18 Sabco Ltd Water-driven vibrating massage brush - has fan operated by liquid pressure with weight mounted between two vanes
GB2160444A (en) * 1984-06-07 1985-12-24 Hamada Iken Co Ltd Hydrotherapy
FR2694691A1 (en) * 1992-08-12 1994-02-18 Unternaehrer Jean Massage apparatus with pulsed fluid jets.
CN102161023A (en) * 2010-02-18 2011-08-24 Toto株式会社 Shower apparatus
US9175460B2 (en) 2010-02-18 2015-11-03 Toto Ltd. Shower apparatus

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US1198544A (en) * 1915-10-19 1916-09-19 William S Heal Vibrator.
US2701563A (en) * 1953-09-08 1955-02-08 Paul Pouliot Hydromassage device
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US3541616A (en) * 1968-07-05 1970-11-24 Virgil A Stricker Hydro-therapy bath device
US3985303A (en) * 1975-10-09 1976-10-12 Steimle Wayne D Hydromassage device with directional jet control
US4100917A (en) * 1976-10-18 1978-07-18 Dazey Products Co. Hydrotherapy unit
US4122845A (en) * 1975-09-30 1978-10-31 Bowles Fluidics Corporation Personal care spray device
US4135670A (en) * 1976-01-10 1979-01-23 Tsd Kabushiki Kaisha Shower device
DE2734536A1 (en) * 1977-07-30 1979-04-05 Dietrich Dipl Ing Grund Tooth cleaning and gum massaging device - has handpiece connected to water pulse generator fitted directly onto water tap

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US1038656A (en) * 1910-06-06 1912-09-17 Jean G F Reuter Spray-vibrator.
US1198544A (en) * 1915-10-19 1916-09-19 William S Heal Vibrator.
US2701563A (en) * 1953-09-08 1955-02-08 Paul Pouliot Hydromassage device
US3067739A (en) * 1961-10-26 1962-12-11 Karlik Laddie Pressurized water, compressed air and stroking massage device
US3541616A (en) * 1968-07-05 1970-11-24 Virgil A Stricker Hydro-therapy bath device
US4122845A (en) * 1975-09-30 1978-10-31 Bowles Fluidics Corporation Personal care spray device
US3985303A (en) * 1975-10-09 1976-10-12 Steimle Wayne D Hydromassage device with directional jet control
US4135670A (en) * 1976-01-10 1979-01-23 Tsd Kabushiki Kaisha Shower device
US4100917A (en) * 1976-10-18 1978-07-18 Dazey Products Co. Hydrotherapy unit
DE2734536A1 (en) * 1977-07-30 1979-04-05 Dietrich Dipl Ing Grund Tooth cleaning and gum massaging device - has handpiece connected to water pulse generator fitted directly onto water tap

Cited By (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
FR2512654A1 (en) * 1981-09-14 1983-03-18 Sabco Ltd Water-driven vibrating massage brush - has fan operated by liquid pressure with weight mounted between two vanes
GB2160444A (en) * 1984-06-07 1985-12-24 Hamada Iken Co Ltd Hydrotherapy
FR2694691A1 (en) * 1992-08-12 1994-02-18 Unternaehrer Jean Massage apparatus with pulsed fluid jets.
CN102161023A (en) * 2010-02-18 2011-08-24 Toto株式会社 Shower apparatus
EP2361688A1 (en) * 2010-02-18 2011-08-31 Toto Ltd. Shower apparatus
CN102161023B (en) * 2010-02-18 2013-10-23 Toto株式会社 Shower apparatus
US9108207B2 (en) 2010-02-18 2015-08-18 Toto Ltd. Shower apparatus
US9175460B2 (en) 2010-02-18 2015-11-03 Toto Ltd. Shower apparatus
US9370785B2 (en) 2010-02-18 2016-06-21 Toto Ltd. Shower apparatus

Also Published As

Publication number Publication date
GB2081587B (en) 1985-01-30
JPS57500228A (en) 1982-02-12
GB2081587A (en) 1982-02-24
EP0045810A1 (en) 1982-02-17

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