WO2017177948A1 - Automatic inflation device - Google Patents

Automatic inflation device Download PDF

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Publication number
WO2017177948A1
WO2017177948A1 PCT/CN2017/080465 CN2017080465W WO2017177948A1 WO 2017177948 A1 WO2017177948 A1 WO 2017177948A1 CN 2017080465 W CN2017080465 W CN 2017080465W WO 2017177948 A1 WO2017177948 A1 WO 2017177948A1
Authority
WO
WIPO (PCT)
Prior art keywords
row
vibration
vibration motors
disposed
motors
Prior art date
Application number
PCT/CN2017/080465
Other languages
French (fr)
Chinese (zh)
Inventor
方存云
Original Assignee
方存云
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 方存云 filed Critical 方存云
Publication of WO2017177948A1 publication Critical patent/WO2017177948A1/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
    • A61H19/00Massage for the genitals; Devices for improving sexual intercourse
    • A61H19/30Devices for external stimulation of the genitals
    • 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
    • A61H19/00Massage for the genitals; Devices for improving sexual intercourse
    • 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
    • A61H23/02Percussion or vibration massage, e.g. using supersonic vibration; Suction-vibration massage; Massage with moving diaphragms 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
    • A61H9/00Pneumatic or hydraulic massage
    • A61H9/005Pneumatic massage
    • A61H9/0078Pneumatic massage with intermittent or alternately inflated bladders or cuffs
    • 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
    • A61H2201/50Control means thereof
    • A61H2201/5058Sensors or detectors
    • A61H2201/5071Pressure sensors
    • 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
    • A61H2205/00Devices for specific parts of the body
    • A61H2205/08Trunk
    • A61H2205/087Genitals

Definitions

  • the present invention relates to the field of variable pressure structure technology, and more particularly to an automatic inflation device.
  • Some existing sexual aids capable of generating pressure changes are typically composed of a gas storage interlayer, an outer casing, and a flexible containment chamber that can change the pressure, and the pressure is changed by the gas storage interlayer.
  • an object of the present invention is to provide an automatic inflating device which solves the problem that the automatic inflating device in the prior art cannot accurately control the gas pressure and is inconvenient to operate.
  • An automatic inflating device includes a flexible receiving cavity, a housing sleeved outside the flexible receiving cavity, and a shock mechanism disposed in the housing, wherein the housing includes a body and two bodies disposed on the body a snap ring of the end; the flexible receiving cavity is fixed in the casing by the snap ring, and forms a closed gas storage interlayer between the flexible receiving cavity and the casing;
  • a gas pressure sensor for obtaining gas pressure in the gas storage interlayer is disposed in the gas storage interlayer, and the casing is further An inflation port is provided in communication with the gas storage interlayer; an inner diameter of the flexible receiving cavity changes according to a change in gas pressure in the gas storage interlayer;
  • the automatic inflator further includes a controller, an inflator, and a gas valve;
  • the inflation port is sequentially connected with the air valve and the inflator;
  • the pressure sensor is connected to the controller, and outputs gas pressure information to the controller;
  • the controller controls the inflator to inflate the gas storage interlayer into the gas storage interlayer The gas pressure reaches a preset threshold;
  • Both ends of the flexible accommodating cavity are gargle, and one end of the flexible accommodating cavity is provided with a accommodating bag;
  • the automatic inflating device wherein the flexible receiving cavity is further provided with a shaping structure for maintaining an outer shape of the flexible receiving cavity inner diameter change;
  • the sizing structure is a plurality of tapered strips disposed axially along the flexible receiving cavity or a plurality of raised annular rings disposed along a circumferential direction of the flexible receiving cavity.
  • the taper strip is a solid structure protruding along both sides of the arcuate connecting section.
  • the raised annular ring is a solid structure protruding along the circumferential connecting section.
  • the automatic inflation device wherein the vibration mechanism is specifically a plurality of vibration motors
  • the vibration motor is disposed outside the curved connecting section to drive the flexible receiving cavity to generate a shock wave.
  • the automatic inflator device wherein the vibration motor is disposed as three longitudinal rows arranged along the axial direction of the accommodating cavity;
  • Three or more shock motors are disposed on each longitudinal row.
  • a second row of first vibration motors, a second row of second vibration motors, a second row of third vibration motors, and a second row of fourth vibration motors are sequentially disposed on the second longitudinal row;
  • a third row of first vibration motors, a third row of second vibration motors, and a third row of thirds are sequentially disposed on the third longitudinal row The vibration motor and the third row of the fourth vibration motor.
  • the first row of the first vibration motor and the first row of the second vibration motor are simultaneously operated, and then sequentially transmitted to the second row of the third vibration motor and the second row of the fourth vibration motor, the second row of the first vibration motor and The second row of second vibration motors is then transmitted to the third row of third vibration motors and the third row of fourth vibration motors, and the third row of first vibration motors and the third row of second vibration motors are transmitted to the third row of third vibrations a motor and a first row of fourth vibration motors;
  • the positive and negative poles of the vibration motor are switched, and after the reverse rotation, the first row of the third vibration motor and the first row of the fourth vibration motor are simultaneously operated, and then sequentially transmitted to the third row of the first vibration motor and the third row of the second a vibration motor, a second row of third vibration motors and a second row of fourth vibration motors, transmitted to the first row of first vibration motors and the third row of second vibration motors, the third row of third vibration motors and the third row of fourth motors
  • the vibration motor is transmitted to the second row of first vibration motors and the second row of second vibration motors.
  • the automatic inflation device wherein the inflation port comprises: an inflation port and a one-way air valve disposed on the inflation port;
  • the one-way air valve includes: a one-way moving cover, a pressing shaft connected to the closing cover, and a limiting ring disposed on the pressing shaft;
  • the enclosure is disposed in the gas storage interlayer, and is in close contact with the inflation port in a normal state; the enclosure is moved downward in the gas input port to open the inflation port, and the gas flows into the gas storage interlayer;
  • the limiting ring is engaged with the inflation port to limit a movement stroke of the enclosure; the pressure shaft is used to push the enclosure to move away from the ankle inflation port.
  • the automatic inflation device wherein the automatic inflation device further comprises a hollow air guide tube adapted to the one-way air valve;
  • the hollow air guiding tube is sleeved on the pressing shaft, and the closing cover is pushed away from the inflation port to discharge the gas in the gas storage interlayer.
  • the automatic inflator provided by the present invention achieves precise adjustment of the gas pressure in the gas storage interlayer by means of the controller by means of a controller and a pressure sensor. And this adjustment process is automatic tuning
  • the knot process can realize automatic filling and deflation, and the user can achieve the appropriate pressure without additional operations, and has a good application prospect.
  • FIG. 1 is a schematic structural view of an automatic inflation device according to a specific embodiment of the present invention.
  • FIG. 2 is a partial structural schematic view of an inflation port of an automatic inflation device according to an embodiment of the present invention.
  • FIG 3 is a schematic radial cross-sectional view of an automatic air inflator in accordance with an embodiment of the present invention.
  • FIG. 4 is a schematic radial cross-sectional view of an automatic inflation device according to another embodiment of the present invention.
  • FIG. 5 is a schematic perspective structural view of an automatic inflation device according to an embodiment of the present invention.
  • the present invention provides an automatic inflation device, in order to make the object, technical solution and effect of the present invention clearer
  • an automatic inflator is a specific embodiment of the present invention.
  • the automatic inflator includes: a flexible receiving cavity 100, a housing 200 sleeved outside the flexible receiving cavity, and an automatic inflator 300 disposed within the housing.
  • the flexible receiving cavity may be an integrally formed structure made of silica gel.
  • the housing 200 includes: a body 210 and a snap ring 220 disposed at two ends of the body.
  • the flexible receiving cavity 100 is fixedly locked in the housing 200 by a snap ring 220 disposed at both ends.
  • the snap ring 220 can be made of metal or other hard material.
  • the snap rings at both ends are first disassembled, and after the flexible receiving cavity 100 is inserted, the snap ring is reattached to the body 210 to fix the position of the flexible receiving cavity.
  • a closed air-filled interlayer that is, a gas storage interlayer 500
  • a pressure sensor 510 for obtaining gas pressure in the gas storage interlayer is disposed in the gas storage interlayer 500.
  • the housing 200 is further provided with an inflation port 230 communicating with the gas storage interlayer 500 for adjusting the gas pressure in the gas storage interlayer.
  • the inflation port 230 is sequentially connected to the air valve 240 and the inflator 250.
  • the pressure sensor 510 is coupled to a controller 600 to output gas pressure information to the controller.
  • the controller 600 controls the inflator 250 to inflate the gas storage interlayer to a predetermined threshold within the gas storage interlayer.
  • the (ie cross-sectional area) will be reduced, thereby pressing the penis to accommodate different users.
  • the inflator 250 may be any suitable device that can cooperate with the air valve to realize an automatic charging and discharging function, such as an electric air pump, or an inflatable gas storage interlayer and a solenoid valve control air valve.
  • the controller 600 inflates the inside of the gas storage interlayer when the gas pressure does not reach the preset threshold according to the preset threshold.
  • the gas is automatically deflated to reduce the gas pressure. In this way, the pressure in the gas storage interlayer is automatically controlled, the user's operation is simplified, and the gas pressure is precisely controlled.
  • the controller 600 may specifically use a microprocessor, a chip, or the like, which is commonly used in the prior art and has a certain logic operation capability.
  • Both ends of the flexible accommodating cavity 100 are gargle, and a receiving pocket can be sleeved at one end of the flexible accommodating cavity.
  • the excrement can be collected, which is convenient for the user to clean the operation after use, and there is no problem that the liquid does not accumulate inside the flexible receiving cavity as compared with the setting of the one end opening.
  • the shock mechanism 300 is specifically a plurality of vibration motors.
  • the shock motor is disposed outside the flexible receiving cavity 100 to drive the flexible receiving cavity 10 to generate vibration fluctuations.
  • the vibration motor is disposed as three longitudinal rows 301 which are disposed along the axial direction of the accommodating cavity. That is, along the outer circumference of the flexible accommodating cavity, a longitudinal row is disposed at a central angle of 120°, which is a first longitudinal row 301, a second longitudinal row 302, and a third longitudinal row 303, respectively.
  • Three or more shock motors are disposed on each longitudinal row.
  • the specific quantity can be set according to the actual situation.
  • each longitudinal row is provided with a first row of first vibration motors, a first row of second vibration motors, and a first row of third vibration motors, and The fourth row of fourth vibration motors; [0060] a second row of first vibration motors, a second row of second vibration motors, a second row of third vibration motors, and a second row of fourth vibration motors are sequentially disposed on the second longitudinal row;
  • the third row of the first vibration motor, the third row of the second vibration motor, the third row of the third vibration motor, and the third row of the fourth vibration motor are sequentially disposed on the third row.
  • the vibration mechanism described above can be configured to generate a rotating wave perpendicular to the longitudinal direction of the outer casing or a spiral rotating wave along the longitudinal direction of the outer casing by controlling different vibration motors, so that the massage effect of the automatic inflating device is stronger and better. Application effect.
  • control portion can be remotely interacted by Bluetooth or WiFi and a mobile phone or a computer link.
  • Each longitudinal row is a accommodating cavity, and each of the accommodating cavities is provided with four vibration motors as one motor group.
  • a vibration hammer is connected to the rotor of the vibration motor, and its longitudinal direction is consistent with the longitudinal direction of the flexible receiving cavity, that is, the rotation direction of the hammer of the motor is perpendicular to the longitudinal direction of the flexible receiving cavity, so that when the motor is running, it will be driven.
  • the oscillating weight rotates to generate a vibration wave perpendicular to the longitudinal direction of the flexible accommodating cavity.
  • the above vibration motor can be operated in the following manner:
  • the first row of the first vibration motor and the first row of the second vibration motor are simultaneously operated, and then sequentially transmitted to the second row of the third vibration motor and the second row of the fourth vibration motor, the second row of the first vibration motor and The second row of second vibration motors is then transmitted to the third row of third vibration motors and the third row of fourth vibration motors, and the third row of first vibration motors and the third row of second vibration motors are transmitted to the third row of third vibrations a motor and a first row of fourth vibration motors;
  • the positive and negative poles of the vibration motor are switched, and after the reverse rotation, the first row of the third vibration motor and the first row of the fourth vibration motor are simultaneously operated, and then sequentially transmitted to the second row of the first vibration motor and the second row of the second
  • the vibration motor, the second row of the third vibration motor and the second row of the fourth vibration motor are transmitted to the third row of the first vibration motor and the third row of the second vibration motor, the third row of the third vibration motor and the third row of the fourth motor
  • the vibration motor is transmitted to the first row of first vibration motors and the first row of second vibration motors.
  • four vibration motors are disposed in the accommodating cavity.
  • the three accommodating cavities (longitudinal rows) of the present embodiment are sequentially numbered A, B, and C (corresponding to the first longitudinal direction, respectively). Row, second tandem and third tandem).
  • the four vibration motors in the A accommodating chamber can be controlled by the control module to rotate the setting time, and then the control module controls the four vibration motors in the A accommodating chamber to stop rotating.
  • the four vibration motors in the A accommodating chamber 4 will generate a vibration wave perpendicular to the longitudinal direction of the flexible accommodating cavity at the rotation ⁇ .
  • the control module controls the four vibration motors in the B accommodating cavity 4 to rotate the setting time, and then the control module controls the B accommodating.
  • the four vibration motors in the chamber stop rotating at the same time.
  • the four vibration motors in the B accommodating chamber will generate a vibration wave perpendicular to the longitudinal direction of the flexible accommodating cavity, which will superimpose the vibration wave generated by the motor in the A accommodating cavity in the longitudinal direction. Subsequent C accommodating chambers and so on.
  • control module can be used to control the vibration motors in all the motor groups to sequentially operate in a spiral order, so that the vibration generated by the vibration motor is superimposed in the spiral direction to generate a spiral rotating wave along the longitudinal direction of the outer casing 200, and massage.
  • the penis is flexibly received in the cavity.
  • the three accommodating cavities of the embodiment are still numbered A, B, and C in sequence, from the penis inlet end of the flexible accommodating cavity to the longitudinal end of the closed end, 4 in the A accommodating cavity
  • the vibration motor is numbered A-
  • B four vibration motors in the chamber are numbered B-Ml, B-M2
  • the control module controls the sequential operation of the vibration motor in the following order: A-M1, B-M2, C-M3, A-M 4, B-M3, C-M2, A-M1.
  • the operation sequence of the vibration motor is sequentially operated in a spiral order, so that the vibration generated by the vibration motor is superimposed in the spiral direction to generate a spiral rotation wave; the above sequence is continuously repeated, and a continuous spiral rotation wave is generated.
  • the order of sequential operation of the vibration motor is not limited to the above, and may be sequentially operated in other spiral sequences, for example: A-M2, B-M3, C-M4, A-M3, B -M2, C-M1, A-M2.
  • the control module may be integrated in the controller, or may be a separate function.
  • the module is independently configured, and the control function can be implemented by using a control chip or the like commonly used in the prior art, and details are not described herein.
  • three vibration motors may be disposed on each longitudinal row;
  • first row of first vibration motors, the first row of second vibration motors, and the first row of third vibration motors are sequentially disposed on the first longitudinal row;
  • a second row of first vibration motors, a second row of second vibration motors, and a second row of third vibration motors are sequentially disposed on the second longitudinal row;
  • the third row of the first vibration motor, the third row of the second vibration motor, and the third row of the third vibration motor are sequentially disposed on the third longitudinal row.
  • the first row of first vibration motors is operated, and then transmitted to the second row of second vibration motors in turn, and then to the third row of third vibration motors, and the second row of first vibration motors is transmitted to the third row of second Shaking the motor and transmitting it to the third row of third vibration motors;
  • the positive and negative poles of the vibration motor are switched. After the reverse rotation, the first row of the third vibration motor is operated, and then transmitted to the third row of the second vibration motor in turn, and then to the third vibration motor, and the second row of the third vibration motor. Passed to the first row of second vibration motors, the third row of third vibrations is transmitted to the second row of second vibration motors, and then to the first row of first vibration motors.
  • the three rows of first vibration motors are simultaneously vibrated, transmitted to the three second vibration motors, and then transmitted to the three third vibration motors.
  • the first row of three vibration motors are shaken at the same time, transmitted to the second row of three vibration motors, and then transmitted to the third row of three vibration motors to circulate and transmit vibration.
  • the positive and negative poles of the vibration motor are switched. After the reverse rotation, the three vibration motors of the first row are vibrated at the same time, transmitted to the third row of three vibration motors, and then transmitted to the second row of three vibration motors, and the vibration is transmitted cyclically.
  • the control module in this embodiment can perform remote interaction through Bluetooth or WiFi and a mobile phone or a computer connection.
  • vibration motor (or motor) is operated by polarization, and the swing is used to obtain better. Massage effect.
  • the flexible receiving cavity 100 is further provided with a shaped structure for maintaining the outer shape of the flexible receiving cavity.
  • the shaped structure can take two different structural forms. For example, as shown in Fig. 3, there are a plurality of tapered strips 101 disposed axially along the flexible receiving cavity or as shown in Fig. 4, a plurality of raised annular rings 102 disposed along the circumferential direction of the flexible receiving cavity.
  • the above-mentioned shaping structure is arranged such that under the expansion and contraction of the gas in the gas storage interlayer (inflating interlayer), the flexible receiving cavity is deformed inwardly, and the taper strip (or the raised ring) is substantially not deformed, and is flexible.
  • the accommodating cavity provides support so that the flexible accommodating cavity maintains a certain shape without causing detachment.
  • the penis pushes up the cone (or raised ring) in the flexible accommodating cavity to enlarge the cross-sectional area of the flexible accommodating cavity;
  • the expansion of the gas in the gas storage interlayer causes the flexible receiving cavity to be recessed inward, and the cross-sectional area of the flexible receiving cavity is reduced to contact with the penis.
  • the inflation port 230 may include: an inflation port 231 and a one-way air valve, the one-way air valve includes: a one-way moving enclosure cover 232, and the enclosure cover A connecting pressing shaft 233 and a limiting ring 234 disposed on the pressing shaft.
  • the closure cover 232 is disposed on a side of the inflation port located in the gas storage interlayer. In the normal state, it closely fits the inflation port, and closes the inflation port to maintain the airtightness of the gas storage interlayer.
  • the closure can be maintained in a state of close fitting under normal conditions using existing suitable elastic structures.
  • the closing cover 232 is moved by the gas pressure to move the inflation port to open, so that the high pressure gas flows into the gas storage interlayer to realize the gas storage interlayer. Inflating operation
  • the limiting ring 234 is engaged with the inflation port to limit the movement stroke of the closure cover to prevent it from coming off.
  • the pressing shaft 233 is coupled to the closing cover, and the closing of the closing cover can be pushed by pushing the pressing shaft 233 to allow the gas to flow out or flow in.
  • one end of the flexible receiving cavity is provided with an extension 400 extending in the radial direction.
  • One end of the mouth having the extension 400 can serve as an entrance for the penis, and the other end of the mouth can be placed with a storage bag (such as a condom, etc.).
  • the shaped structure is a tapered strip.
  • the tapered strips 101 are connected by an arcuate connecting section 103.
  • the vibration motor is disposed outside the curved connecting section to drive the flexible receiving cavity to generate vibration fluctuations.
  • the taper strip 101 may have a solid structure, and the hardness is greater than the hardness of the connecting section to ensure the effect of setting.
  • the tapered strip and the curved connecting portion may be an integrally formed structure.
  • the taper strips may be specifically set to a corresponding number according to actual conditions, for example, 12, or 6 or the like.
  • the shaped structure is a raised circular ring.
  • the raised rings 102 are connected by a circumferential connecting section.
  • the raised annular ring is a solid structure projecting along the circumferential connecting section.
  • the convex ring protruding inward may also be in contact with the penis to sufficiently press the penis.
  • the convex ring and the circumferential connecting section are integrally formed.
  • the specific use process of the automatic inflator of the present invention is as follows: the penis is opened from one end into the flexible receiving cavity.
  • the air in the air blown ball can be driven into the gas storage interlayer through the check valve by repeatedly pressing the air blow ball by hand.
  • the flexible accommodating cavity is pressed by the expansion of the gas in the gas storage interlayer to press the penis.
  • the strength of pressing the penis is felt by the user himself, until he feels that the penis is pressed to the proper force to stop inflation.
  • the user can hold the shell by hand, reciprocate, and the cone or the raised ring rubs against the penis to perform masturbation.
  • the motor can also be used to drive the housing to reciprocate.
  • the user with a thicker penis uses a sputum, and the penis pushes up a taper or a raised ring in the flexible accommodating cavity 1 to enlarge the cross-sectional area of the flexible accommodating cavity.
  • the thinner penis user uses the helium, the expansion of the gas in the gas storage interlayer squeezes the connecting section, causing the flexible receiving cavity to inwardly recess to contact the penis, and the cross-sectional area is reduced.
  • the cross-sectional area of the flexible receiving cavity can be adjusted according to the thickness of the penis [0108] Since the position of the flexible receiving cavity and the housing is relatively fixed by the snap ring, the same function of the fixing device can provide a support and shape for the flexible receiving cavity, so as to avoid the flexible receiving cavity falling off during use.
  • the flexible receiving cavity has a problem of poor friction experience.

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

Abstract

An automatic inflation device comprises a flexible accommodating chamber (100), a housing (200) sleeved outside the flexible accommodating chamber (100), and a vibration mechanism (300). The housing (200) comprises a body (210) and clamping rings (220) disposed at two ends of the body (210). The flexible accommodating chamber (100) is fixed in the housing (200) by means of the clamping rings (220), and a sealed gas storage interlayer (500) is formed between the flexible accommodating chamber (100) and the housing (200). A pressure sensor (510) is disposed in the gas storage interlayer (500). An inflation port (230) is disposed on the housing (200). The automatic inflation device also comprises a controller (600), an inflation device (250), and a gas valve (240). The pressure sensor (510) is connected to the controller (600) and outputs gas pressure information to the controller (600). The controller (600) controls the inflation device (250) to inflate the gas storage interlayer (500) until a gas pressure reaches a preset threshold. Each of two ends of the flexible accommodating chamber (100) is provided with an opening, and an accommodating bag is disposed at the opening of one end in a sleeved manner. The gas pressure in the gas storage interlayer (500) is precisely adjusted by means of the controller (600), the adjustment process is automatic, and accordingly automatic inflation and deflation can be implemented.

Description

技术领域  Technical field
[0001] 本发明涉及变压力结构技术领域, 尤其涉及的是一种自动充气装置。  [0001] The present invention relates to the field of variable pressure structure technology, and more particularly to an automatic inflation device.
背景技术  Background technique
[0002] 随着社会的不断发展以及人类正常的生理需求。 男性在对于性辅助用品 (例如 ***用品) 等的使用要求越来越高。 现有的一些能够产生压力变化的性辅助用 品通常由可以改变压力的储气夹层、 外壳以及柔性容纳腔组成, 通过储气夹层 来改变压力。  [0002] With the continuous development of society and the normal physiological needs of human beings. Men are increasingly demanding the use of sexual aids (such as masturbation supplies). Some existing sexual aids capable of generating pressure changes are typically composed of a gas storage interlayer, an outer casing, and a flexible containment chamber that can change the pressure, and the pressure is changed by the gas storage interlayer.
[0003] 另外, 现有还有一些具有震动效果的产品, 通过设置在壳体内的马达, 驱动内 部的柔性容纳腔产生震动, 来提供更好的按摩效果。 但这些产品只能提供单一 的震动波, 按摩效果不佳。  [0003] In addition, there are some products having a vibrating effect, and a vibration is provided by a motor provided in the casing to drive the inner flexible receiving chamber to provide a better massage effect. However, these products can only provide a single shock wave, and the massage effect is not good.
[0004] 但是现有的产品中, 均需要通过人工控制储气夹层内的气体压力, 无法精确的 控制气体压力值, 使用吋需要用户频繁的调整压力。 这样的操作较为繁琐, 不 利于用户的使用。 [0004] However, in the existing products, it is necessary to manually control the gas pressure in the gas storage interlayer, and it is impossible to accurately control the gas pressure value, and the user needs to frequently adjust the pressure. Such an operation is cumbersome and unfavorable for the user.
[0005] 因此, 现有技术还有待于改进和发展。 Therefore, the prior art has yet to be improved and developed.
技术问题  technical problem
[0006] 鉴于上述现有技术的不足, 本发明的目的在于提供一种自动充气装置, 解决了 现有技术中自动充气装置无法精确控制气体压力, 操作不便的问题。  In view of the above-mentioned deficiencies of the prior art, an object of the present invention is to provide an automatic inflating device which solves the problem that the automatic inflating device in the prior art cannot accurately control the gas pressure and is inconvenient to operate.
问题的解决方案  Problem solution
技术解决方案  Technical solution
[0007] 本发明的技术方案如下: [0007] The technical solution of the present invention is as follows:
[0008] 一种自动充气装置, 包括一柔性容纳腔体、 套设于所述柔性容纳腔体外的壳体 以及设置在外壳内的震动机构, 其中, 所述壳体包括本体以及设置于本体两端 的卡环; 所述柔性容纳腔体通过所述卡环固定于所述壳体内, 并在所述柔性容 纳腔体与壳体之间形成密闭的储气夹层;  [0008] An automatic inflating device includes a flexible receiving cavity, a housing sleeved outside the flexible receiving cavity, and a shock mechanism disposed in the housing, wherein the housing includes a body and two bodies disposed on the body a snap ring of the end; the flexible receiving cavity is fixed in the casing by the snap ring, and forms a closed gas storage interlayer between the flexible receiving cavity and the casing;
[0009] 所述储气夹层内设置有获取储气夹层内气体压力的压力传感器, 所述壳体上还 设置有与所述储气夹层连通的充气口; 所述柔性容纳腔体的内径随所述储气夹 层内气体压力的变化而改变; [0009] a gas pressure sensor for obtaining gas pressure in the gas storage interlayer is disposed in the gas storage interlayer, and the casing is further An inflation port is provided in communication with the gas storage interlayer; an inner diameter of the flexible receiving cavity changes according to a change in gas pressure in the gas storage interlayer;
[0010] 所述自动充气装置还包括控制器、 充气装置以及气阀;  [0010] the automatic inflator further includes a controller, an inflator, and a gas valve;
[0011] 所述充气口依次与气阀及充气装置连接; 所述压力传感器与控制器连接, 向控 制器输出气体压力信息; 所述控制器控制充气装置向储气夹层充气至储气夹层 内气体压力达到预设的阈值;  [0011] the inflation port is sequentially connected with the air valve and the inflator; the pressure sensor is connected to the controller, and outputs gas pressure information to the controller; the controller controls the inflator to inflate the gas storage interlayer into the gas storage interlayer The gas pressure reaches a preset threshold;
[0012] 所述柔性容纳腔体的两端均幵口, 且所述柔性容纳腔体的一端幵口套设有容纳 袋;  [0012] Both ends of the flexible accommodating cavity are gargle, and one end of the flexible accommodating cavity is provided with a accommodating bag;
[0013] 所述的自动充气装置, 其中, 所述柔性容纳腔体还设置有一用于保持柔性容纳 腔体内径变化吋的外形的定型结构;  [0013] The automatic inflating device, wherein the flexible receiving cavity is further provided with a shaping structure for maintaining an outer shape of the flexible receiving cavity inner diameter change;
[0014] 所述定型结构为沿柔性容纳腔体轴向设置的若干个锥条或沿柔性容纳腔体圆周 方向设置的若干个凸起圆环。 [0014] The sizing structure is a plurality of tapered strips disposed axially along the flexible receiving cavity or a plurality of raised annular rings disposed along a circumferential direction of the flexible receiving cavity.
[0015] 所述的自动充气装置, 其中, 所述锥条之间通过弧形连接段连接; [0015] The automatic inflator, wherein the cones are connected by a curved connecting section;
[0016] 所述锥条为实心结构, 沿所述弧形连接段两侧突出。 [0016] The taper strip is a solid structure protruding along both sides of the arcuate connecting section.
[0017] 所述的自动充气装置, 其中, 所述凸起圆环之间通过圆周连接段连接; [0017] The automatic inflating device, wherein the raised annular rings are connected by a circumferential connecting section;
[0018] 所述凸起圆环为实心结构, 沿所述圆周连接段突出。 [0018] The raised annular ring is a solid structure protruding along the circumferential connecting section.
[0019] 所述的自动充气装置, 其中, 所述震动机构具体为若干震动马达; [0019] The automatic inflation device, wherein the vibration mechanism is specifically a plurality of vibration motors;
[0020] 所述震动马达设置在所述弧形连接段外侧, 驱动所述柔性容纳腔体产生震动波 动。 [0020] The vibration motor is disposed outside the curved connecting section to drive the flexible receiving cavity to generate a shock wave.
[0021] 所述的自动充气装置, 其中, 所述震动马达设置为 3个沿柔心容置腔体轴向方 向设置, 平均分布的纵排;  [0021] The automatic inflator device, wherein the vibration motor is disposed as three longitudinal rows arranged along the axial direction of the accommodating cavity;
[0022] 每一纵排上设置有三个或者以上的震动马达。 [0022] Three or more shock motors are disposed on each longitudinal row.
[0023] 所述的自动充气装置, 其中, 每一纵排上设置 4个震动马达; [0023] The automatic inflating device, wherein four vibration motors are disposed on each longitudinal row;
[0024] 其中, 第一纵排上依次设置第一排第一震动马达、 第一排第二震动马达、 第一 排第三震动马达以及第一排第四震动马达; [0024] wherein, in the first longitudinal row, a first row of first vibration motors, a first row of second vibration motors, a first row of third vibration motors, and a first row of fourth vibration motors are sequentially disposed;
[0025] 第二纵排上依次设置第二排第一震动马达、 第二排第二震动马达、 第二排第三 震动马达以及第二排第四震动马达; [0025] a second row of first vibration motors, a second row of second vibration motors, a second row of third vibration motors, and a second row of fourth vibration motors are sequentially disposed on the second longitudinal row;
[0026] 第三纵排上依次设置第三排第一震动马达、 第三排第二震动马达、 第三排第三 震动马达以及第三排第四震动马达。 [0026] a third row of first vibration motors, a third row of second vibration motors, and a third row of thirds are sequentially disposed on the third longitudinal row The vibration motor and the third row of the fourth vibration motor.
[0027] 所述的自动充气装置, 其中, 所述震动马达以如下方式运行: [0027] The automatic inflation device, wherein the vibration motor operates in the following manner:
[0028] 第一排第一震动马达和第一排第二震动马达同吋运转, 然后依次传递到第二排 第三震动马达和第二排第四震动马达, 第二排第一震动马达和第二排第二震动 马达, 然后传递到第三排第三震动马达和第三排第四震动马达, 第三排第一震 动马达和第三排第二震动马达传递到第一排第三震动马达以及第一排第四震动 马达; [0028] The first row of the first vibration motor and the first row of the second vibration motor are simultaneously operated, and then sequentially transmitted to the second row of the third vibration motor and the second row of the fourth vibration motor, the second row of the first vibration motor and The second row of second vibration motors is then transmitted to the third row of third vibration motors and the third row of fourth vibration motors, and the third row of first vibration motors and the third row of second vibration motors are transmitted to the third row of third vibrations a motor and a first row of fourth vibration motors;
[0029] 震动马达正负极转换, 反转后, 第一排第三震动马达以及第一排第四震动马达 同吋运转, 然后依次传递到第三排第一震动马达和第三排第二震动马达, 第二 排第三震动马达和第二排第四震动马达, 传递到第一排第一震动马达和第三排 第二震动马达, 第三排第三震动马达和第三排第四震动马达传递到第二排第一 震动马达和第二排第二震动马达。  [0029] The positive and negative poles of the vibration motor are switched, and after the reverse rotation, the first row of the third vibration motor and the first row of the fourth vibration motor are simultaneously operated, and then sequentially transmitted to the third row of the first vibration motor and the third row of the second a vibration motor, a second row of third vibration motors and a second row of fourth vibration motors, transmitted to the first row of first vibration motors and the third row of second vibration motors, the third row of third vibration motors and the third row of fourth motors The vibration motor is transmitted to the second row of first vibration motors and the second row of second vibration motors.
[0030] 所述的自动充气装置, 其中, 所述充气口包括: 充气口及设置在充气口上的单 向气阀;  [0030] The automatic inflation device, wherein the inflation port comprises: an inflation port and a one-way air valve disposed on the inflation port;
[0031] 所述单向气阀包括: 单向移动的封闭罩, 与所述封闭罩连接的压轴以及设置在 压轴上的限位环;  [0031] The one-way air valve includes: a one-way moving cover, a pressing shaft connected to the closing cover, and a limiting ring disposed on the pressing shaft;
[0032] 所述封闭罩设置于储气夹层内, 常态下与充气口紧密贴合; 所述封闭罩在气体 输入吋, 向下移动从而使充气口幵启, 供气体流入储气夹层;  [0032] The enclosure is disposed in the gas storage interlayer, and is in close contact with the inflation port in a normal state; the enclosure is moved downward in the gas input port to open the inflation port, and the gas flows into the gas storage interlayer;
[0033] 所述限位环与所述充气口卡合以限制所述封闭罩的移动行程; 所述压轴用于推 动封闭罩移动以离幵充气口。  [0033] the limiting ring is engaged with the inflation port to limit a movement stroke of the enclosure; the pressure shaft is used to push the enclosure to move away from the ankle inflation port.
[0034] 所述的自动充气装置, 其中, 所述自动充气装置还包括一与所述单向气阀相适 配的中空导气管;  [0034] The automatic inflation device, wherein the automatic inflation device further comprises a hollow air guide tube adapted to the one-way air valve;
[0035] 所述中空导气管套设在所述压轴上, 将所述封闭罩推离充气口从而排出储气夹 层内气体。  [0035] The hollow air guiding tube is sleeved on the pressing shaft, and the closing cover is pushed away from the inflation port to discharge the gas in the gas storage interlayer.
发明的有益效果  Advantageous effects of the invention
有益效果  Beneficial effect
[0036] 本发明所提供的自动充气装置, 通过设置控制器和压力传感器的方式, 通过控 制器实现了对于储气夹层内气体压力的精确调节。 而且这一调节过程为自动调 节过程, 可以实现自动的充放气, 无需用户进行额外操作即可达到合适的压力 , 具有良好的应用前景。 [0036] The automatic inflator provided by the present invention achieves precise adjustment of the gas pressure in the gas storage interlayer by means of the controller by means of a controller and a pressure sensor. And this adjustment process is automatic tuning The knot process can realize automatic filling and deflation, and the user can achieve the appropriate pressure without additional operations, and has a good application prospect.
对附图的简要说明  Brief description of the drawing
附图说明  DRAWINGS
[0037] 图 1是本发明具体实施例的自动充气装置的结构示意图。  1 is a schematic structural view of an automatic inflation device according to a specific embodiment of the present invention.
[0038] 图 2是本发明具体实施例的自动充气装置的充气口的局部结构示意图。 2 is a partial structural schematic view of an inflation port of an automatic inflation device according to an embodiment of the present invention.
[0039] 图 3是本发明具体实施例的自动充气装置的径向截面示意图。 3 is a schematic radial cross-sectional view of an automatic air inflator in accordance with an embodiment of the present invention.
[0040] 图 4是本发明另一具体实施例的自动充气装置的径向截面示意图。 4 is a schematic radial cross-sectional view of an automatic inflation device according to another embodiment of the present invention.
[0041] 图 5为本发明具体实施例的自动充气装置的立体结构示意图。 5 is a schematic perspective structural view of an automatic inflation device according to an embodiment of the present invention.
本发明的实施方式 Embodiments of the invention
[0042] 本发明提供一种自动充气装置, 为使本发明的目的、 技术方案及效果更加清楚 [0042] The present invention provides an automatic inflation device, in order to make the object, technical solution and effect of the present invention clearer
、 明确, 以下参照附图并举实例对本发明进一步详细说明。 应当理解, 此处所 描述的具体实施例仅仅用以解释本发明, 并不用于限定本发明。 BRIEF DESCRIPTION OF THE DRAWINGS The present invention will now be described in further detail with reference to the accompanying drawings. It is understood that the specific embodiments described herein are merely illustrative of the invention and are not intended to limit the invention.
[0043] 如图 1所示, 为本发明具体实施例的一种自动充气装置。 所述自动充气装置包 括: 一柔性容纳腔体 100、 套设于所述柔性容纳腔体外的壳体 200以及设置在外 壳内的自动充气装置 300。 [0043] As shown in FIG. 1, an automatic inflator is a specific embodiment of the present invention. The automatic inflator includes: a flexible receiving cavity 100, a housing 200 sleeved outside the flexible receiving cavity, and an automatic inflator 300 disposed within the housing.
[0044] 具体的, 所述柔性容纳腔体可以为硅胶制成的一体成型结构。 [0044] Specifically, the flexible receiving cavity may be an integrally formed structure made of silica gel.
[0045] 其中, 所述壳体 200包括: 本体 210以及设置于本体两端的卡环 220。 所述柔性 容纳腔体 100通过设置在两端的卡环 220固定卡止于所述壳体 200内。 卡环 220可 采用金属或其他硬性材料制作。 [0045] The housing 200 includes: a body 210 and a snap ring 220 disposed at two ends of the body. The flexible receiving cavity 100 is fixedly locked in the housing 200 by a snap ring 220 disposed at both ends. The snap ring 220 can be made of metal or other hard material.
[0046] 在实际操作中, 先将两端的卡环拆幵, 在所述柔性容纳腔体 100塞入后, 再重 新将卡环与本体 210固定, 从而固定柔性容纳腔体的位置。 [0046] In actual operation, the snap rings at both ends are first disassembled, and after the flexible receiving cavity 100 is inserted, the snap ring is reattached to the body 210 to fix the position of the flexible receiving cavity.
[0047] 如图 2所示, 通过卡环 220, 在所述柔性容纳腔体与壳体之间会形成一个密闭的 充气夹层, 亦即储气夹层 500。 储气夹层 500内设置有获取储气夹层内气体压力 的压力传感器 510。 [0047] As shown in FIG. 2, a closed air-filled interlayer, that is, a gas storage interlayer 500, is formed between the flexible receiving cavity and the housing by the snap ring 220. A pressure sensor 510 for obtaining gas pressure in the gas storage interlayer is disposed in the gas storage interlayer 500.
[0048] 所述壳体 200上还设置有与所述储气夹层 500连通, 用于调整储气夹层内气体压 力的充气口 230。 [0049] 所述充气口 230依次与气阀 240及充气装置 250连接。 [0048] The housing 200 is further provided with an inflation port 230 communicating with the gas storage interlayer 500 for adjusting the gas pressure in the gas storage interlayer. [0049] The inflation port 230 is sequentially connected to the air valve 240 and the inflator 250.
[0050] 所述压力传感器 510与一控制器 600连接, 向控制器输出气体压力信息。 所述控 制器 600控制充气装置 250向储气夹层充气至储气夹层内气体压力达到预设的阈 值。  [0050] The pressure sensor 510 is coupled to a controller 600 to output gas pressure information to the controller. The controller 600 controls the inflator 250 to inflate the gas storage interlayer to a predetermined threshold within the gas storage interlayer.
[0051] 储气夹层内充气越多 (气体压力变大) 吋, 所述柔性容纳腔体会受压, 其内径  [0051] The more the gas in the gas storage interlayer is inflated (the gas pressure becomes larger), the flexible receiving chamber is pressurized, and the inner diameter thereof
(即横截面积) 将减小, 从而压迫***以适应不同的用户。  The (ie cross-sectional area) will be reduced, thereby pressing the penis to accommodate different users.
[0052] 所述充气装置 250具体可以是任何合适的, 能够实现与气阀配合, 实现自动充 放气功能的装置, 例如电动气泵, 或者充气储气夹层及电磁阀控制气阀。 [0052] The inflator 250 may be any suitable device that can cooperate with the air valve to realize an automatic charging and discharging function, such as an electric air pump, or an inflatable gas storage interlayer and a solenoid valve control air valve.
[0053] 控制器 600依据预设的阈值, 当气体压力未达到预设阈值吋, 向储气夹层内部 充气。 而当超过预设的阈值吋, 则自动放气以降低气体压力。 通过上述方式来 自动控制储气夹层内压力, 简化用户的操作并精确控制气体压力。 [0053] The controller 600 inflates the inside of the gas storage interlayer when the gas pressure does not reach the preset threshold according to the preset threshold. When the preset threshold 超过 is exceeded, the gas is automatically deflated to reduce the gas pressure. In this way, the pressure in the gas storage interlayer is automatically controlled, the user's operation is simplified, and the gas pressure is precisely controlled.
[0054] 所述控制器 600具体可以采用现有技术中常用的, 具有一定逻辑运算能力的微 处理器、 芯片等。 [0054] The controller 600 may specifically use a microprocessor, a chip, or the like, which is commonly used in the prior art and has a certain logic operation capability.
[0055] 所述柔性容纳腔体 100的两端均幵口, 且所述柔性容纳腔体的一端幵口处可以 套设有容纳袋。 通过设置所述容纳袋, 可以收集***物, 方便用户在使用后的 清洁操作, 与一端幵口的设置相比, 不会积存有液体导致柔性容纳腔体内部不 清洁的问题。  [0055] Both ends of the flexible accommodating cavity 100 are gargle, and a receiving pocket can be sleeved at one end of the flexible accommodating cavity. By providing the containing bag, the excrement can be collected, which is convenient for the user to clean the operation after use, and there is no problem that the liquid does not accumulate inside the flexible receiving cavity as compared with the setting of the one end opening.
[0056] 在本发明的较佳实施例中, 如图 3所示, 所述震动机构 300具体为若干震动马达 。 所述震动马达设置在所述柔性容纳腔体 100的外侧, 驱动所述柔性容纳腔体 10 0产生震动波动。  In a preferred embodiment of the present invention, as shown in FIG. 3, the shock mechanism 300 is specifically a plurality of vibration motors. The shock motor is disposed outside the flexible receiving cavity 100 to drive the flexible receiving cavity 10 to generate vibration fluctuations.
[0057] 具体的, 如图 3所示, 所述震动马达设置为 3个沿柔心容置腔体轴向方向设置, 平均分布的纵排 301。 亦即沿柔性容纳腔体的外周, 内隔 120°圆心角设置一个纵 排, 分别为第一纵排 301、 第二纵排 302以及第三纵排 303。  [0057] Specifically, as shown in FIG. 3, the vibration motor is disposed as three longitudinal rows 301 which are disposed along the axial direction of the accommodating cavity. That is, along the outer circumference of the flexible accommodating cavity, a longitudinal row is disposed at a central angle of 120°, which is a first longitudinal row 301, a second longitudinal row 302, and a third longitudinal row 303, respectively.
[0058] 每一纵排上设置有三个或者以上的震动马达。 其具体数量可以依据实际情况予 以设置。  [0058] Three or more shock motors are disposed on each longitudinal row. The specific quantity can be set according to the actual situation.
[0059] 具体的, 每一纵排上设置 4个震动马达; 其中, 第一纵排上依次设置第一排第 一震动马达、 第一排第二震动马达、 第一排第三震动马达以及第一排第四震动 马达; [0060] 第二纵排上依次设置第二排第一震动马达、 第二排第二震动马达、 第二排第三 震动马达以及第二排第四震动马达; [0059] Specifically, four vibration motors are disposed on each longitudinal row; wherein, the first longitudinal row is provided with a first row of first vibration motors, a first row of second vibration motors, and a first row of third vibration motors, and The fourth row of fourth vibration motors; [0060] a second row of first vibration motors, a second row of second vibration motors, a second row of third vibration motors, and a second row of fourth vibration motors are sequentially disposed on the second longitudinal row;
[0061] 第三纵排上依次设置第三排第一震动马达、 第三排第二震动马达、 第三排第三 震动马达以及第三排第四震动马达。 [0061] The third row of the first vibration motor, the third row of the second vibration motor, the third row of the third vibration motor, and the third row of the fourth vibration motor are sequentially disposed on the third row.
[0062] 上述的震动机构设置, 能够通过控制不同的震动马达, 产生垂直于外壳的纵向 的旋转波或者沿外壳的纵向的螺旋旋转波, 使得该自动充气装置的按摩效果更 加强烈, 具有较好的应用效果。 [0062] The vibration mechanism described above can be configured to generate a rotating wave perpendicular to the longitudinal direction of the outer casing or a spiral rotating wave along the longitudinal direction of the outer casing by controlling different vibration motors, so that the massage effect of the automatic inflating device is stronger and better. Application effect.
[0063] 所述的自动充气装置, 其中, 控制部分可以通过蓝牙或者 WiFi和手机或者电脑 链接, 做远程互动。 [0063] The automatic inflating device, wherein the control portion can be remotely interacted by Bluetooth or WiFi and a mobile phone or a computer link.
[0064] 其具体控制实例如下: 每个纵排为一个容置腔, 每个容置腔内设置有 4个震动 马达作为一个马达组。 所述震动马达的转子上连接有振锤, 其纵向与柔性容纳 腔体的纵向一致, 也就是说马达的振锤的转动方向与柔性容纳腔体的纵向垂直 , 这样在马达运行吋, 将带动振锤转动, 产生与柔性容纳腔体的纵向垂直的振 动波。  [0064] The specific control examples are as follows: Each longitudinal row is a accommodating cavity, and each of the accommodating cavities is provided with four vibration motors as one motor group. a vibration hammer is connected to the rotor of the vibration motor, and its longitudinal direction is consistent with the longitudinal direction of the flexible receiving cavity, that is, the rotation direction of the hammer of the motor is perpendicular to the longitudinal direction of the flexible receiving cavity, so that when the motor is running, it will be driven. The oscillating weight rotates to generate a vibration wave perpendicular to the longitudinal direction of the flexible accommodating cavity.
[0065] 控制马达组依次运行、 且一马达组内的震动马达同转同停, 以使震动马达产生 的振动于纵向叠加, 产生垂直于外壳的纵向的旋转波, 按摩柔性容纳腔体内的 ***。  [0065] controlling the motor group to operate in sequence, and the vibration motor in the motor group is stopped at the same time, so that the vibration generated by the vibration motor is superimposed in the longitudinal direction to generate a rotating wave perpendicular to the longitudinal direction of the outer casing, and massage the penis in the flexible receiving cavity. .
[0066] 较佳的是, 上述震动马达可以采用如下方式运行:  [0066] Preferably, the above vibration motor can be operated in the following manner:
[0067] 第一排第一震动马达和第一排第二震动马达同吋运转, 然后依次传递到第二排 第三震动马达和第二排第四震动马达, 第二排第一震动马达和第二排第二震动 马达, 然后传递到第三排第三震动马达和第三排第四震动马达, 第三排第一震 动马达和第三排第二震动马达传递到第一排第三震动马达以及第一排第四震动 马达;  [0067] The first row of the first vibration motor and the first row of the second vibration motor are simultaneously operated, and then sequentially transmitted to the second row of the third vibration motor and the second row of the fourth vibration motor, the second row of the first vibration motor and The second row of second vibration motors is then transmitted to the third row of third vibration motors and the third row of fourth vibration motors, and the third row of first vibration motors and the third row of second vibration motors are transmitted to the third row of third vibrations a motor and a first row of fourth vibration motors;
[0068] 震动马达正负极转换, 反转后, 第一排第三震动马达以及第一排第四震动马达 同吋运转, 然后依次传递到第二排第一震动马达和第二排第二震动马达, 第二 排第三震动马达和第二排第四震动马达, 传递到第三排第一震动马达和第三排 第二震动马达, 第三排第三震动马达和第三排第四震动马达传递到第一排第一 震动马达和第一排第二震动马达。 [0069] 如上所述, 容置腔内设置 4个震动马达, 所以, 为表述方便, 本实施例的 3个容 置腔 (纵排) 依次编号为 A、 B、 C (分别对应第一纵排、 第二纵排以及第三纵 排) 。 可以通过控制模块先控制 A容置腔内的 4个震动马达同吋转动设定吋间, 之后控制模块控制 A容置腔内的 4个震动马达同吋停止转动。 [0068] The positive and negative poles of the vibration motor are switched, and after the reverse rotation, the first row of the third vibration motor and the first row of the fourth vibration motor are simultaneously operated, and then sequentially transmitted to the second row of the first vibration motor and the second row of the second The vibration motor, the second row of the third vibration motor and the second row of the fourth vibration motor are transmitted to the third row of the first vibration motor and the third row of the second vibration motor, the third row of the third vibration motor and the third row of the fourth motor The vibration motor is transmitted to the first row of first vibration motors and the first row of second vibration motors. [0069] As described above, four vibration motors are disposed in the accommodating cavity. Therefore, for convenience of description, the three accommodating cavities (longitudinal rows) of the present embodiment are sequentially numbered A, B, and C (corresponding to the first longitudinal direction, respectively). Row, second tandem and third tandem). The four vibration motors in the A accommodating chamber can be controlled by the control module to rotate the setting time, and then the control module controls the four vibration motors in the A accommodating chamber to stop rotating.
[0070] A容置腔 4内的 4个震动马达在转动吋将产生与柔性容纳腔体的纵向垂直的振动 波。 当 A容置腔内的震动马达产生的振动波传递至 B容置腔吋, 控制模块控制 B 容置腔 4内的 4个震动马达同吋转动设定吋间, 之后控制模块控制 B容置腔内的 4 个震动马达同吋停止转动。  [0070] The four vibration motors in the A accommodating chamber 4 will generate a vibration wave perpendicular to the longitudinal direction of the flexible accommodating cavity at the rotation 吋. When the vibration wave generated by the vibration motor in the A accommodating cavity is transmitted to the B accommodating cavity 吋, the control module controls the four vibration motors in the B accommodating cavity 4 to rotate the setting time, and then the control module controls the B accommodating. The four vibration motors in the chamber stop rotating at the same time.
[0071] B容置腔内的 4个震动马达在转动吋将产生与柔性容纳腔体的纵向垂直的振动波 , 该振动波将与 A容置腔内的马达产生的振动波于纵向叠加。 后续 C容置腔的情 况以此类推。  [0071] The four vibration motors in the B accommodating chamber will generate a vibration wave perpendicular to the longitudinal direction of the flexible accommodating cavity, which will superimpose the vibration wave generated by the motor in the A accommodating cavity in the longitudinal direction. Subsequent C accommodating chambers and so on.
[0072] 由此将产生与柔性容纳腔体的纵向垂直的、 叠加的振动波, 因该振动波与柔性 容纳腔体的纵向垂直、 且逐渐叠加, 在此称为推动旋转波。  [0072] Thereby, a superimposed vibration wave perpendicular to the longitudinal direction of the flexible receiving cavity will be produced, since the vibration wave is perpendicular to the longitudinal direction of the flexible receiving cavity and is gradually superimposed, here referred to as a pushing rotating wave.
[0073] 另外, 还可以通过控制模块用于控制所有马达组内的震动马达按照螺旋顺序依 次运行, 以使震动马达产生的振动于螺旋方向叠加, 产生沿外壳 200的纵向的螺 旋旋转波, 按摩柔性容纳腔体内的***。 [0073] In addition, the control module can be used to control the vibration motors in all the motor groups to sequentially operate in a spiral order, so that the vibration generated by the vibration motor is superimposed in the spiral direction to generate a spiral rotating wave along the longitudinal direction of the outer casing 200, and massage. The penis is flexibly received in the cavity.
[0074] 为表述方便, 本实施例的 3个容置腔仍然依次编号为 A、 B、 C, 从柔性容纳腔 体的***进口端至端封闭端的纵向上, A容置腔内的 4个震动马达依次编号为 A-[0074] For convenience of description, the three accommodating cavities of the embodiment are still numbered A, B, and C in sequence, from the penis inlet end of the flexible accommodating cavity to the longitudinal end of the closed end, 4 in the A accommodating cavity The vibration motor is numbered A-
Ml、 A-M2、 A-M3、 A-M4, B容置腔内的 4个震动马达依次编号为 B-Ml、 B-M2Ml, A-M2, A-M3, A-M4, B four vibration motors in the chamber are numbered B-Ml, B-M2
、 B-M3、 B-M4, C容置腔内的 4个震动马达依次编号为 C-M1、 C-M2、 C-M3、 C, B-M3, B-M4, C, four vibration motors in the C chamber are numbered C-M1, C-M2, C-M3, C
-M4。 -M4.
[0075] 控制模块按照以下顺序控制震动马达的依次运行: A-M1、 B-M2、 C-M3、 A-M 4、 B-M3、 C-M2、 A-M1。 上述顺序中震动马达的运行顺序是按照螺旋顺序依次 运行的, 这样震动马达产生的振动于螺旋方向叠加, 以产生螺旋旋转波; 不断 地重复上述顺序, 将会产生持续的螺旋旋转波,  [0075] The control module controls the sequential operation of the vibration motor in the following order: A-M1, B-M2, C-M3, A-M 4, B-M3, C-M2, A-M1. In the above sequence, the operation sequence of the vibration motor is sequentially operated in a spiral order, so that the vibration generated by the vibration motor is superimposed in the spiral direction to generate a spiral rotation wave; the above sequence is continuously repeated, and a continuous spiral rotation wave is generated.
[0076] 当然, 所述震动马达的依次运行的顺序也不限于是上述, 也可以按照其他的螺 旋顺序依次运行, 例如是: A-M2、 B-M3、 C-M4、 A-M3、 B-M2、 C-M1、 A-M2 。 所述控制模块具体可以整合在所述控制器中, 或者也可以作为一单独的功能 模块独立设置, 其具体可以采用现有技术中常用的控制芯片等实现控制功能, 在此不作赘述。 [0076] Of course, the order of sequential operation of the vibration motor is not limited to the above, and may be sequentially operated in other spiral sequences, for example: A-M2, B-M3, C-M4, A-M3, B -M2, C-M1, A-M2. The control module may be integrated in the controller, or may be a separate function. The module is independently configured, and the control function can be implemented by using a control chip or the like commonly used in the prior art, and details are not described herein.
[0077] 在其他优选实施例中, 每一纵排上还可设置 3个震动马达;  [0077] In other preferred embodiments, three vibration motors may be disposed on each longitudinal row;
[0078] 其中, 第一纵排上依次设置第一排第一震动马达、 第一排第二震动马达、 第一 排第三震动马达; [0078] wherein the first row of first vibration motors, the first row of second vibration motors, and the first row of third vibration motors are sequentially disposed on the first longitudinal row;
[0079] 第二纵排上依次设置第二排第一震动马达、 第二排第二震动马达、 第二排第三 震动马达;  [0079] a second row of first vibration motors, a second row of second vibration motors, and a second row of third vibration motors are sequentially disposed on the second longitudinal row;
[0080] 第三纵排上依次设置第三排第一震动马达、 第三排第二震动马达、 第三排第三 震动马达。  [0080] The third row of the first vibration motor, the third row of the second vibration motor, and the third row of the third vibration motor are sequentially disposed on the third longitudinal row.
[0081] 其以如下方式运行: [0081] It operates in the following manner:
[0082] 第一排第一震动马达运转, 然后依次传递到第二排第二震动马达, 然后传递到 第三排第三震动马达, 第二排第一震动马达运转传递到第三排第二震动马达, 再传递到第一排第三震动马达;  [0082] The first row of first vibration motors is operated, and then transmitted to the second row of second vibration motors in turn, and then to the third row of third vibration motors, and the second row of first vibration motors is transmitted to the third row of second Shaking the motor and transmitting it to the third row of third vibration motors;
[0083] 震动马达正负极转换, 反转后, 第一排第三震动马达运转, 然后依次传递到第 三排第二震动马达, 再传递到第三震动马达, 第二排第三震动马达传递到第一 排第二震动马达, 第三排第三震动传递到第二排第二震动马达, 再传递到第一 排第一震动马达。  [0083] The positive and negative poles of the vibration motor are switched. After the reverse rotation, the first row of the third vibration motor is operated, and then transmitted to the third row of the second vibration motor in turn, and then to the third vibration motor, and the second row of the third vibration motor. Passed to the first row of second vibration motors, the third row of third vibrations is transmitted to the second row of second vibration motors, and then to the first row of first vibration motors.
[0084] 三排第一震动马达同吋震动, 传递到三个第二震动马达, 再传递到三个第三震 动马达。  [0084] The three rows of first vibration motors are simultaneously vibrated, transmitted to the three second vibration motors, and then transmitted to the three third vibration motors.
[0085] 震动马达正负极转换, 反转后, 三排第三震动马达同吋震动, 传递到三个第二 震动马达, 再传递到三个第一震动马达。  [0085] The positive and negative poles of the vibration motor are switched. After the reverse rotation, the three rows of third vibration motors are simultaneously vibrated, transmitted to the three second vibration motors, and then transmitted to the three first vibration motors.
[0086] 第一排三个震动马达同吋震动, 传递到第二排三个震动马达, 再传递到第三排 三个震动马达, 循环传递震动。 [0086] The first row of three vibration motors are shaken at the same time, transmitted to the second row of three vibration motors, and then transmitted to the third row of three vibration motors to circulate and transmit vibration.
[0087] 震动马达正负极转换, 反转后, 第一排三个震动马达同吋震动, 传递到第三排 三个震动马达, 再传递到第二排三个震动马达, 循环传递震动。 [0087] The positive and negative poles of the vibration motor are switched. After the reverse rotation, the three vibration motors of the first row are vibrated at the same time, transmitted to the third row of three vibration motors, and then transmitted to the second row of three vibration motors, and the vibration is transmitted cyclically.
[0088] 本实施例中的控制模块可以通过蓝牙或者 WiFi和手机或者电脑连接来做远程互 动。 [0088] The control module in this embodiment can perform remote interaction through Bluetooth or WiFi and a mobile phone or a computer connection.
[0089] 应当说明的是, 所述震动马达 (或电机) 为偏振运行, 利用其摆动来获得更好 的按摩效果。 [0089] It should be noted that the vibration motor (or motor) is operated by polarization, and the swing is used to obtain better. Massage effect.
[0090] 较佳的是, 所述柔性容纳腔体 100还设置有一用于保持柔性容纳腔体内径变化 吋的外形的定型结构。 所述定型结构可以采用两种不同的结构形式。 例如, 如 图 3所示的, 为沿柔性容纳腔体轴向设置的若干个锥条 101或者如图 4所示的, 沿 柔性容纳腔体圆周方向设置的若干个凸起圆环 102。  [0090] Preferably, the flexible receiving cavity 100 is further provided with a shaped structure for maintaining the outer shape of the flexible receiving cavity. The shaped structure can take two different structural forms. For example, as shown in Fig. 3, there are a plurality of tapered strips 101 disposed axially along the flexible receiving cavity or as shown in Fig. 4, a plurality of raised annular rings 102 disposed along the circumferential direction of the flexible receiving cavity.
[0091] 上述定型结构设置可使在储气夹层 (充气夹层) 内气体的膨胀挤压下, 柔性容 纳腔体变形向内凹陷, 而锥条 (或凸起圆环) 基本不变形, 为柔性容纳腔体提 供支撑, 使得柔性容纳腔体维持一定的形状, 不会造成脱出。  [0091] The above-mentioned shaping structure is arranged such that under the expansion and contraction of the gas in the gas storage interlayer (inflating interlayer), the flexible receiving cavity is deformed inwardly, and the taper strip (or the raised ring) is substantially not deformed, and is flexible. The accommodating cavity provides support so that the flexible accommodating cavity maintains a certain shape without causing detachment.
[0092] 同吋也利于在***较粗的使用者使用吋, ***于柔性容纳腔体内顶起锥条 (或 凸起圆环) 以扩大柔性容纳腔体的横截面积; ***较细的使用者在使用吋, 储 气夹层内气体的膨胀挤压, 使得柔性容纳腔体向内凹陷, 柔性容纳腔体的横截 面积减小至与***接触。  [0092] The same is also advantageous for the user who is thicker in the penis to use the sputum, the penis pushes up the cone (or raised ring) in the flexible accommodating cavity to enlarge the cross-sectional area of the flexible accommodating cavity; In the use of helium, the expansion of the gas in the gas storage interlayer causes the flexible receiving cavity to be recessed inward, and the cross-sectional area of the flexible receiving cavity is reduced to contact with the penis.
[0093] 具体的, 如图 2所示, 所述充气口 230可以包括: 充气口 231及单向气阀, 所述 单向气阀包括: 单向移动的封闭罩 232, 与所述封闭罩连接的压轴 233以及设置 在压轴上的限位环 234。  Specifically, as shown in FIG. 2, the inflation port 230 may include: an inflation port 231 and a one-way air valve, the one-way air valve includes: a one-way moving enclosure cover 232, and the enclosure cover A connecting pressing shaft 233 and a limiting ring 234 disposed on the pressing shaft.
[0094] 所述封闭罩 232设置于充气口位于储气夹层内的一侧。 其常态下与充气口紧密 贴合, 封闭充气口从而保持储气夹层的密闭性。 所述封闭罩可以采用现有合适 的弹性结构来保持常态下为紧密贴合的状态。  [0094] The closure cover 232 is disposed on a side of the inflation port located in the gas storage interlayer. In the normal state, it closely fits the inflation port, and closes the inflation port to maintain the airtightness of the gas storage interlayer. The closure can be maintained in a state of close fitting under normal conditions using existing suitable elastic structures.
[0095] 在气体输入吋 (例如挤压气吹球吹入空气吋) , 封闭罩 232受气体压力, 向下 移动从而使充气口幵启, 令高压气体流入储气夹层, 实现储气夹层的充气操作  [0095] At the gas input port (for example, the air blown by the squeeze air blown air), the closing cover 232 is moved by the gas pressure to move the inflation port to open, so that the high pressure gas flows into the gas storage interlayer to realize the gas storage interlayer. Inflating operation
[0096] 所述限位环 234与所述充气口卡合, 可以限制所述封闭罩的移动行程, 避免其 脱离。 所述压轴 233与封闭罩连接, 可以通过推动压轴 233来推动封闭罩移动, 从而使气体流出或者流入。 [0096] The limiting ring 234 is engaged with the inflation port to limit the movement stroke of the closure cover to prevent it from coming off. The pressing shaft 233 is coupled to the closing cover, and the closing of the closing cover can be pushed by pushing the pressing shaft 233 to allow the gas to flow out or flow in.
[0097] 在实际操作中, 若需要释放储气夹层内的气体吋, 也可以手动操作, 使用一与 所述单向气阀相适配的中空导气管。 所述中空导气管套设在所述压轴上, 通过 压轴将所述封闭罩推离充气口, 使其形成气体通道。 储气夹层内的气体便可通 过该气体通道流出。 [0098] 更具体的, 如图 5所示, 所述柔性容纳腔体的一端幵口设置有沿径向方向延伸 的延伸部 400。 具有延伸部 400的一端幵口可以作为***的入口, 相对的另一端 幵口则可以套设收纳袋 (例如避孕套等) 。 [0097] In actual operation, if it is necessary to release the gas enthalpy in the gas storage interlayer, it can also be manually operated, and a hollow air guiding tube matched with the one-way air valve is used. The hollow air guiding tube is sleeved on the pressing shaft, and the closing cover is pushed away from the inflation port by a pressing shaft to form a gas passage. Gas in the gas storage interlayer can flow out through the gas passage. More specifically, as shown in FIG. 5, one end of the flexible receiving cavity is provided with an extension 400 extending in the radial direction. One end of the mouth having the extension 400 can serve as an entrance for the penis, and the other end of the mouth can be placed with a storage bag (such as a condom, etc.).
[0099] 在本发明的一具体实施例中, 如图 3所示, 所述定型结构为锥条。 所述锥条 101 之间通过弧形连接段 103连接。 震动马达即设置在弧形连接段外侧驱动所述柔性 容纳腔体产生震动波动。 所述锥条 101可以为实心结构, 硬度大于连接段的硬度 从而保证定型的效果。  [0099] In a specific embodiment of the invention, as shown in FIG. 3, the shaped structure is a tapered strip. The tapered strips 101 are connected by an arcuate connecting section 103. The vibration motor is disposed outside the curved connecting section to drive the flexible receiving cavity to generate vibration fluctuations. The taper strip 101 may have a solid structure, and the hardness is greater than the hardness of the connecting section to ensure the effect of setting.
[0100] 其沿所述弧形连接段 103两侧突出。 向内侧突出的锥条还可以与***接触, 充 分的按压***。  [0100] It protrudes along both sides of the curved connecting section 103. The cone protruding toward the inside can also be in contact with the penis to fully press the penis.
[0101] 具体的, 所述锥条与弧形连接段之间可以为一体成型结构。 所述锥条具体可以 依据实际情况设置为对应的, 合适的数量, 例如 12个, 或者 6个等。  [0101] Specifically, the tapered strip and the curved connecting portion may be an integrally formed structure. The taper strips may be specifically set to a corresponding number according to actual conditions, for example, 12, or 6 or the like.
[0102] 在本发明的另一具体实施例中, 如图 4所示, 所述定型结构为凸起圆环。 所述 凸起圆环 102之间通过圆周连接段连接。 所述凸起圆环为实心结构, 沿所述圆周 连接段突出。  [0102] In another embodiment of the invention, as shown in FIG. 4, the shaped structure is a raised circular ring. The raised rings 102 are connected by a circumferential connecting section. The raised annular ring is a solid structure projecting along the circumferential connecting section.
[0103] 相类似的, 向内侧突出的凸起圆环还可以与***接触, 充分的按压***。 具体 的, 所述凸起圆环与圆周连接段之间为一体成型结构。  [0103] Similarly, the convex ring protruding inward may also be in contact with the penis to sufficiently press the penis. Specifically, the convex ring and the circumferential connecting section are integrally formed.
[0104] 本发明所述的自动充气装置的具体使用过程为: 使***由一端幵口进入柔性容 纳腔体。 可以通过用手反复按压气吹球, 将气吹球内的空气通过单向阀打入储 气夹层中。 由储气夹层中的气体的膨胀挤压柔性容纳腔体使其紧压***, 当然 , 紧压***的力度由使用者自己感觉, 至自己感觉压紧***的力度合适吋停止 充气。  [0104] The specific use process of the automatic inflator of the present invention is as follows: the penis is opened from one end into the flexible receiving cavity. The air in the air blown ball can be driven into the gas storage interlayer through the check valve by repeatedly pressing the air blow ball by hand. The flexible accommodating cavity is pressed by the expansion of the gas in the gas storage interlayer to press the penis. Of course, the strength of pressing the penis is felt by the user himself, until he feels that the penis is pressed to the proper force to stop inflation.
[0105] 用户用手握住壳体, 做往复运动, 锥条或凸起圆环与***产生摩擦, 即可进行 ***。  [0105] The user can hold the shell by hand, reciprocate, and the cone or the raised ring rubs against the penis to perform masturbation.
[0106] 也可以用马达带动壳体做往复运动。  [0106] The motor can also be used to drive the housing to reciprocate.
[0107] 在使用过程中, ***较粗的使用者在使用吋, ***于柔性容纳腔体 1内顶起锥 条或凸起圆环、 以扩大柔性容纳腔体的横截面积。 ***较细的使用者在使用吋 , 储气夹层内气体的膨胀挤压连接段, 使得柔性容纳腔体向内凹陷至接触*** , 横截面积减小。 (使柔性容纳腔体的横截面积可根据***的粗细进行调节) [0108] 而由于柔性容纳腔体与壳体的位置通过卡环相对固定, 同吋由于定型装置的作 用, 可为柔性容纳腔体提供支撑定型的作用, 避免在使用吋出现柔性容纳腔体 脱落、 柔性容纳腔体摩擦体验感差的问题。 [0107] During use, the user with a thicker penis uses a sputum, and the penis pushes up a taper or a raised ring in the flexible accommodating cavity 1 to enlarge the cross-sectional area of the flexible accommodating cavity. The thinner penis user uses the helium, the expansion of the gas in the gas storage interlayer squeezes the connecting section, causing the flexible receiving cavity to inwardly recess to contact the penis, and the cross-sectional area is reduced. (The cross-sectional area of the flexible receiving cavity can be adjusted according to the thickness of the penis) [0108] Since the position of the flexible receiving cavity and the housing is relatively fixed by the snap ring, the same function of the fixing device can provide a support and shape for the flexible receiving cavity, so as to avoid the flexible receiving cavity falling off during use. The flexible receiving cavity has a problem of poor friction experience.
[0109] 应当理解的是, 本发明的应用不限于上述的举例, 对本领域普通技术人员来说[0109] It should be understood that the application of the present invention is not limited to the above examples, and it will be apparent to those skilled in the art.
, 可以根据上述说明加以改进或变换, 所有这些改进和变换都应属于本发明所 附权利要求的保护范围。 Modifications and alterations may be made in accordance with the above description, and all such modifications and variations are intended to be included within the scope of the appended claims.

Claims

权利要求书 Claim
一种自动充气装置, 包括一柔性容纳腔体、 套设于所述柔性容纳腔体 外的壳体以及设置在外壳内的震动机构, 其特征在于, 所述壳体包括 本体以及设置于本体两端的卡环; 所述柔性容纳腔体通过所述卡环固 定于所述壳体内, 并在所述柔性容纳腔体与壳体之间形成密闭的储气 夹层; An automatic inflating device includes a flexible receiving cavity, a housing sleeved outside the flexible receiving cavity, and a shock mechanism disposed in the outer casing, wherein the housing comprises a body and is disposed at two ends of the body a snap ring; the flexible receiving cavity is fixed in the casing by the snap ring, and forms a closed gas storage interlayer between the flexible receiving cavity and the casing;
所述储气夹层内设置有获取储气夹层内气体压力的压力传感器, 所述 壳体上还设置有与所述储气夹层连通的充气口; 所述柔性容纳腔体的 内径随所述储气夹层内气体压力的变化而改变; a pressure sensor for obtaining a gas pressure in the gas storage interlayer is disposed in the gas storage interlayer, and the housing is further provided with an inflation port communicating with the gas storage interlayer; an inner diameter of the flexible receiving cavity is associated with the storage Change in gas pressure in the gas interlayer;
所述自动充气装置还包括控制器、 充气装置以及气阀; The automatic inflator further includes a controller, an inflator, and a gas valve;
所述充气口依次与气阀及充气装置连接; 所述压力传感器与控制器连 接, 向控制器输出气体压力信息; 所述控制器控制充气装置向储气夹 层充气至储气夹层内气体压力达到预设的阈值; The inflation port is connected to the air valve and the inflator in sequence; the pressure sensor is connected to the controller to output gas pressure information to the controller; the controller controls the inflation device to inflate the gas storage interlayer to a gas pressure in the gas storage interlayer Pre-set threshold;
所述柔性容纳腔体的两端均幵口, 且所述柔性容纳腔体的一端幵口套 设有容纳袋。 Both ends of the flexible accommodating cavity are gargle, and one end of the flexible accommodating cavity is provided with a receiving pocket.
根据权利要求 1所述的自动充气装置, 其特征在于, 所述柔性容纳腔 体还设置有一用于保持柔性容纳腔体内径变化吋的外形的定型结构; 所述定型结构为沿柔性容纳腔体轴向设置的若干个锥条或沿柔性容纳 腔体圆周方向设置的若干个凸起圆环。 The automatic inflation device according to claim 1, wherein the flexible accommodating cavity is further provided with a styling structure for maintaining an outer shape of the flexible accommodating cavity inner diameter ;; the styling structure is along the flexible accommodating cavity A plurality of tapered strips disposed axially or a plurality of raised annular rings disposed along a circumferential direction of the flexible receiving cavity.
根据权利要求 2所述的自动充气装置, 其特征在于, 所述锥条之间通 过弧形连接段连接; The automatic inflator according to claim 2, wherein the tapered strips are connected by a curved connecting section;
所述锥条为实心结构, 沿所述弧形连接段两侧突出。 The cone is a solid structure protruding along both sides of the curved connecting section.
根据权利要求 2所述的自动充气装置, 其特征在于, 所述凸起圆环之 间通过圆周连接段连接; The automatic inflator according to claim 2, wherein the raised annular rings are connected by a circumferential connecting section;
所述凸起圆环为实心结构, 沿所述圆周连接段突出。 The raised annular ring is a solid structure that protrudes along the circumferential connecting section.
根据权利要求 3所述的自动充气装置, 其特征在于, 所述震动机构为 若干震动马达; The automatic air inflating device according to claim 3, wherein the vibration mechanism is a plurality of vibration motors;
所述震动马达设置在所述弧形连接段外侧, 驱动所述柔性容纳腔体产 生震动波动。 The vibration motor is disposed outside the curved connecting section to drive the flexible receiving cavity body The vibration is fluctuating.
[权利要求 6] 根据权利要求 5所述的自动充气装置, 其特征在于, 所述震动马达沿 柔心容置腔体轴向方向设置, 形成第一、 第二及第三三个纵排; 每一纵排上设置有三个或者以上的震动马达。  [Claim 6] The automatic inflator according to claim 5, wherein the vibration motor is disposed along the axial direction of the accommodating cavity to form the first, second and third longitudinal rows; Three or more vibration motors are provided on each longitudinal row.
[权利要求 7] 根据权利要求 6所述的自动充气装置, 其特征在于, 每一纵排上设置 4 个震动马达;  [Attachment 7] The automatic inflator according to claim 6, wherein four vibration motors are disposed on each longitudinal row;
其中, 第一纵排上依次设置第一排第一震动马达、 第一排第二震动马 达、 第一排第三震动马达以及第一排第四震动马达; 第二纵排上依次设置第二排第一震动马达、 第二排第二震动马达、 第 二排第三震动马达以及第二排第四震动马达;  Wherein, the first row of first vibration motors, the first row of second vibration motors, the first row of third vibration motors, and the first row of fourth vibration motors are sequentially disposed on the first longitudinal row; Aligning the first vibration motor, the second row of the second vibration motor, the second row of the third vibration motor, and the second row of the fourth vibration motor;
第三纵排上依次设置第三排第一震动马达、 第三排第二震动马达、 第 三排第三震动马达以及第三排第四震动马达。  The third row of first vibration motors, the third row of second vibration motors, the third row of third vibration motors, and the third row of fourth vibration motors are sequentially disposed on the third row.
[权利要求 8] 根据权利要求 7所述的自动充气装置, 其特征在于, 所述震动马达以 如下方式运行: [Attachment 8] The automatic inflation device according to claim 7, wherein the vibration motor operates in the following manner:
第一排第一震动马达和第一排第二震动马达同吋运转, 然后依次传递 到第二排第三震动马达和第二排第四震动马达, 第二排第一震动马达 和第二排第二震动马达, 然后传递到第三排第三震动马达和第三排第 四震动马达, 第三排第一震动马达和第三排第二震动马达传递到第一 排第三震动马达以及第一排第四震动马达;  The first row of first vibration motors and the first row of second vibration motors are simultaneously operated, and then sequentially transmitted to the second row of third vibration motors and the second row of fourth vibration motors, the second row of first vibration motors and the second row The second vibration motor is then transmitted to the third row of third vibration motors and the third row of fourth vibration motors, the third row of first vibration motors and the third row of second vibration motors are transmitted to the first row of third vibration motors and a row of fourth vibration motors;
震动马达正负极转换, 反转后, 第一排第三震动马达以及第一排第四 震动马达同吋运转, 然后依次传递到第三排第一震动马达和第三排第 二震动马达, 第二排第三震动马达和第二排第四震动马达, 传递到第 一排第一震动马达和第三排第二震动马达, 第三排第三震动马达和第 三排第四震动马达传递到第二排第一震动马达和第二排第二震动马达  The positive and negative poles of the vibration motor are switched. After the reverse rotation, the first row of the third vibration motor and the first row of the fourth vibration motor are simultaneously operated, and then sequentially transmitted to the third row of the first vibration motor and the third row of the second vibration motor. The second row of third vibration motors and the second row of fourth vibration motors are transmitted to the first row of first vibration motors and the third row of second vibration motors, the third row of third vibration motors and the third row of fourth vibration motors To the second row of the first vibration motor and the second row of the second vibration motor
[权利要求 9] 根据权利要求 1所述的自动充气装置, 其特征在于, 所述充气口包括 : 充气口及设置在充气口上的单向气阀; [Claim 9] The automatic inflator according to claim 1, wherein the inflation port comprises: an inflation port and a one-way air valve disposed on the inflation port;
所述单向气阀包括: 单向移动的封闭罩, 与所述封闭罩连接的压轴以 及设置在压轴上的限位环; The one-way air valve includes: a one-way moving enclosure, a pressure shaft connected to the enclosure And a limit ring disposed on the pressing shaft;
所述封闭罩设置于储气夹层内, 常态下与充气口紧密贴合; 所述封闭 罩在气体输入吋, 向下移动从而使充气口幵启, 供气体流入储气夹层 所述限位环与所述充气口卡合以限制所述封闭罩的移动行程; 所述压 轴用于推动封闭罩移动以离幵充气口。  The sealing cover is disposed in the gas storage interlayer, and is in close contact with the inflation port in a normal state; the sealing cover moves downward in the gas input port to open the inflation port, and the gas flows into the gas storage interlayer to the limiting ring. Engaging with the inflation port to limit the movement stroke of the enclosure; the pressure shaft is used to push the enclosure to move away from the inflation port.
[权利要求 10] 根据权利要求 9所述的自动充气装置, 其特征在于, 所述自动充气装 置还包括一与所述单向气阀相适配的中空导气管; 所述中空导气管套设在所述压轴上, 将所述封闭罩推离充气口从而排 出储气夹层内气体。  [Claim 10] The automatic inflation device according to claim 9, wherein the automatic inflation device further includes a hollow air guiding tube adapted to the one-way air valve; the hollow air guiding tube is sleeved On the pressing shaft, the closure is pushed away from the inflation port to discharge the gas in the gas storage interlayer.
PCT/CN2017/080465 2016-04-13 2017-04-13 Automatic inflation device WO2017177948A1 (en)

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WO2017177949A1 (en) * 2016-04-13 2017-10-19 方存云 Gas pressure device
WO2024113042A1 (en) * 2022-11-28 2024-06-06 Ying Thomas Apparatus and systems for treating paraphimosis

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