CN215385755U - Intelligent air wave pressure circulation therapeutic instrument - Google Patents

Intelligent air wave pressure circulation therapeutic instrument Download PDF

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Publication number
CN215385755U
CN215385755U CN202120338758.1U CN202120338758U CN215385755U CN 215385755 U CN215385755 U CN 215385755U CN 202120338758 U CN202120338758 U CN 202120338758U CN 215385755 U CN215385755 U CN 215385755U
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China
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air
gasbag
casing
wave pressure
pump main
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CN202120338758.1U
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Chinese (zh)
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伊伟星
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Guangxi Qinlian Medical Instrument Co ltd
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Guangxi Qinlian Medical Instrument Co ltd
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Abstract

The utility model discloses a physiotherapy equipment technical field, specifically an intelligent air wave pressure circulation therapeutic apparatus, which comprises: casing, air pump main part, gasbag leg cover, gasbag foot cover and piezoelectric sensor, control panel and display screen are installed to the outside front wall of casing, controller, communication module and timing module are installed on the inside top of casing, the air pump main part is installed to the inside bottom of casing, all be connected with the air duct on two air outlets of air pump main part, two all install flow sensor on the air duct, four gas outlets that the equidistance was seted up on the air duct, install the control valve on the gas outlet. This intelligence air wave pressure cycle therapeutic instrument not only can the perception massage dynamics to adjust the dynamics automatically, make the massage more comfortable, can the remote control adjustment massage dynamics moreover, can regularly massage convenient to use simultaneously.

Description

Intelligent air wave pressure circulation therapeutic instrument
Technical Field
The utility model relates to the technical field of physiotherapy equipment, in particular to an intelligent air wave pressure circulation therapeutic apparatus.
Background
The air wave pressure therapeutic apparatus mainly forms the circulating pressure of limbs and tissues by sequentially and repeatedly inflating and deflating the multi-cavity air bags, evenly and orderly extrudes the limbs from the far end to the near end, promotes the flow of blood and lymph, improves the microcirculation effect, accelerates the backflow of the tissue fluid of the limbs, is beneficial to preventing the formation of thrombus and the edema of the limbs, and can directly or indirectly treat a plurality of diseases related to the blood lymph circulation. But current air pressure therapeutic instrument often can not adjust the dynamics automatically, and the shank moves about the back, and the dynamics also can not change, and massage effect is not good, and intelligent degree is not enough moreover, can not remote control, also can not accomplish the function of regularly massaging, and is inconvenient to use.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide an intelligent air wave pressure circulation therapeutic apparatus.
In order to solve the technical problems, the technical scheme of the utility model is or the basic idea of the technical scheme adopted by the utility model is as follows:
an intelligent airwave pressure cycling therapy apparatus, comprising: casing, air pump main part, gasbag leg cover, gasbag foot cover and piezoelectric sensor, control panel and display screen are installed to the outside front wall of casing, controller, communication module and timing module are installed on the inside top of casing, the air pump main part is installed to the inside bottom of casing, all be connected with the air duct on two air outlets of air pump main part, two all install flow sensor on the air duct, four gas outlets that the equidistance was seted up on the air duct, install the control valve on the gas outlet, four the gas outlet is connected with three gasbag leg cover and a gasbag foot cover respectively, and is three gasbag leg cover interconnect, and gasbag leg cover one side in the outside is connected with the gasbag foot cover, and is three piezoelectric sensor is all installed to a inside lateral wall of gasbag leg cover.
Preferably, a connecting shaft is movably connected in a groove formed in the top end of the outer portion of the shell, and a handle is mounted on the connecting shaft.
Preferably, the rear wall of the shell is provided with a maintenance plate, and the rear wall of the maintenance plate is provided with a buckling groove.
Preferably, support columns are installed at four corners of the bottom end of the outer portion of the shell, and anti-slip pads are installed at the bottom ends of the support columns.
Preferably, the two side walls in the shell are both provided with heat dissipation ports, and shielding layers are installed in the heat dissipation ports.
Compared with the prior art: the leg and foot massage device comprises a leg sleeve, an air bag foot sleeve, a control panel, a controller, an air pump main body, a flow sensor, a communication module and a timing module, wherein the treatment sleeve consisting of the air bag leg sleeve and the air bag foot sleeve is sleeved on the leg, when the treatment sleeve is required to be used, the control panel sends a control instruction to the controller, the controller controls the air pump main body to be opened for working, the air pump main body conveys air to the air bag leg sleeve and the air bag foot sleeve through an air guide tube and an air outlet, the controller controls the on and off of a control valve, so that different parts are massaged, meanwhile, the pressure value of the air bag leg sleeve in contact with the leg is sensed through the piezoelectric sensor, the flow sensor senses the air flow output by the air pump main body, the output power of the air pump main body is adjusted, the massage treatment effect is moderate, the functions of remote control and timing massage can be respectively completed through the communication module and the timing module, the intelligent air wave pressure cycle treatment device not only can sense the massage force, and the massage strength can be adjusted by remote control, and the massage can be timed and convenient to use.
Drawings
FIG. 1 is a front view of the present invention;
FIG. 2 is a cross-sectional view of the present invention;
fig. 3 is a rear view of the housing of the present invention.
In the figure: 100 casing, 110 control panel, 120 display screen, 130 controller, 140 communication module, 150 timing module, 160 connecting shaft, 161 handle, 170 maintenance board, 171 buckle groove, 180 support columns, 181 slipmat, 190 thermovent, 191 shielding layer, 200 air pump main body, 210 air duct, 220 flow sensor, 230 air outlet, 231 control valve, 300 air bag leg cover, 400 air bag foot cover, 500 piezoelectric sensor.
Detailed Description
The following further describes embodiments of the present invention with reference to the drawings. It should be noted that the description of the embodiments is provided to help understanding of the present invention, but the present invention is not limited thereto. In addition, the technical features involved in the embodiments of the present invention described below may be combined with each other as long as they do not conflict with each other.
The utility model provides an intelligent air wave pressure circulation therapeutic apparatus, which can sense the massage force and automatically adjust the force, so that the massage is more comfortable, can remotely control and adjust the massage force, can perform timing massage at the same time, is convenient to use, and comprises the following components in parts by weight according to the following steps: a housing 100, an air pump main body 200, an air bag leg cover 300, an air bag foot cover 400, and a piezoelectric sensor 500;
referring to fig. 1, 2 and 3 again, a control panel 110 and a display screen 120 are installed on the front wall of the exterior of the casing 100, a controller 130, a communication module 140 and a timing module 150 are installed on the top end of the interior of the casing 100, an air pump main body 200 is installed at the bottom end of the interior of the casing 100, air guide tubes 210 are connected to two air outlets of the air pump main body 200, flow sensors 220 are installed on the two air guide tubes 210, four air outlets 230 are equidistantly formed on the air guide tubes 210, a control valve 231 is installed on the air outlets 230, three air bag leg sleeves 300 and an air bag foot sleeve 400 are respectively connected to the four air outlets 230, the three air bag leg sleeves 300 are connected to each other, an air bag foot sleeve 400 is connected to one side of the air bag leg sleeve 300 at the outermost side, and a piezoelectric sensor 500 is installed on one side wall of the interior of the three air bag leg sleeves 300, specifically, the front wall of the exterior of the casing 100 is connected with a control panel 110 and a display screen 120 through bolt threads, the top end of the interior of the casing 100 is connected with a controller 130, a communication module 140 and a timing module 150 through bolt threads, the bottom end of the interior of the casing 100 is connected with an air pump main body 200 through bolt threads, air ducts 210 are respectively sleeved on two air outlets of the air pump main body 200, flow sensors 220 are respectively embedded and connected on the two air ducts 210, four air outlets 230 are equidistantly formed on the air ducts 210, a control valve 231 is embedded and connected on the air outlets 230, the four air outlets 230 are respectively connected with three air bag leg sleeves 300 and one air bag foot sleeve 400, the three air bag leg sleeves 300 are mutually connected through sewing, one side of the air bag leg sleeve 300 at the outermost side is connected with an air bag foot sleeve 400 through sewing, one side wall of the interior of the three air bag leg sleeves 300 is respectively connected with a piezoelectric sensor 500 through embedding, the shell 100 is used for accommodating and protecting devices inside, the control panel 110 is used for sending control commands to the controller 130, the display screen 120 is used for displaying the working condition of the devices, the controller 130 is used for controlling the working of the devices, the communication module 140 is used for exchanging information with a remote end, the timing module 150 is used for providing timing function, the air pump main body 200 is used for conveying air to the air guide pipe 210, the air guide pipe 210 is used for conveying the air to the air bag leg sleeve 300 and the air bag foot sleeve 400, the air outlet 230 is used for discharging the air, the control valve 231 is used for controlling the communication of the air outlet 230, the air bag leg sleeve 300 is used for massaging leg muscles, the air bag foot sleeve 400 is used for massaging foot muscles, and the piezoelectric sensor 500 is used for sensing the pressure applied when the air bag leg sleeve 300 is contacted with a human body;
in specific use, the treatment sleeve consisting of the air bag leg sleeve 300 and the air bag foot sleeve 400 is sleeved on the leg, when the air pump is used, a control command is sent to the controller 130 through the control panel 110, the controller 130 controls the air pump main body 200 to be opened for work, the air pump main body 200 delivers air to the air bag leg sleeve 300 and the air bag foot sleeve 400 through the air duct 210 and the air outlet 230, the controller 130 controls the opening and closing of the control valve 231, thereby massaging different parts, simultaneously sensing the pressure value of the contact between the air bag leg sleeve 300 and the leg through the piezoelectric sensor 500, sensing the air flow output by the air pump main body 200 through the flow sensor 220, the output power of the air pump main body 200 is adjusted, so that the massage treatment effect is moderate, the massage treatment effect is not too light or too heavy, and the functions of remote control and timing massage can be respectively completed through the communication module 140 and the timing module 150.
Referring to fig. 1, 2 and 3 again, a connecting shaft 160 is movably connected in a groove formed in the top end of the exterior of the housing 100, a handle 161 is mounted on the connecting shaft 160, specifically, the connecting shaft 160 is rotatably connected in the groove formed in the top end of the exterior of the housing 100, the handle 161 is welded on the connecting shaft 160, the rotating shaft is used for enabling the handle 161 to rotate on the housing 100, and the handle 161 is used for facilitating lifting the device.
Referring to fig. 3 again, the rear wall of the casing 100 is provided with a maintenance plate 170, the rear wall of the maintenance plate 170 is provided with a fastening groove 171, specifically, the rear wall of the casing 100 is connected with the maintenance plate 170 through a bolt and a thread, the rear wall of the maintenance plate 170 is provided with a fastening groove 171, the maintenance plate 170 is used for conveniently opening a device inside the maintenance casing 100, and the fastening groove 171 is used for conveniently pulling the maintenance plate 170.
Referring to fig. 1 and 3 again, the four corners of the bottom of the exterior of the casing 100 are respectively provided with a support column 180, the bottom of the support column 180 is provided with a non-slip mat 181, specifically, the four corners of the bottom of the exterior of the casing 100 are welded with the support columns 180, the bottom of the support columns 180 is connected with the non-slip mat 181 in an adhesive manner, the support columns 180 are used as a support device, and the non-slip mat 181 is used for preventing the support columns 180 from slipping.
Referring to fig. 2 again, the two side walls of the inside of the casing 100 are both provided with heat dissipating holes 190, the shielding layer 191 is installed in the heat dissipating holes 190, specifically, the two side walls of the inside of the casing 100 are both provided with heat dissipating holes 190, the shielding layer 191 is embedded and connected in the heat dissipating holes 190, the heat dissipating holes 190 are used for providing a heat dissipating function, and the shielding layer 191 is used for preventing dust from passing through the heat dissipating holes 190.
The embodiments of the present invention have been described in detail with reference to the accompanying drawings, but the present invention is not limited to the described embodiments. It will be apparent to those skilled in the art that various changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the utility model, and the scope of protection is still within the scope of the utility model.

Claims (5)

1. An intelligent air wave pressure cycle therapeutic apparatus, comprising: casing, air pump main part, gasbag leg cover, gasbag foot cover and piezoelectric sensor, control panel and display screen are installed to the outside front wall of casing, controller, communication module and timing module are installed on the inside top of casing, the air pump main part is installed to the inside bottom of casing, all be connected with the air duct on two air outlets of air pump main part, two all install flow sensor on the air duct, four gas outlets that the equidistance was seted up on the air duct, install the control valve on the gas outlet, four the gas outlet is connected with three gasbag leg cover and a gasbag foot cover respectively, and is three gasbag leg cover interconnect, and gasbag leg cover one side in the outside is connected with the gasbag foot cover, and is three piezoelectric sensor is all installed to a inside lateral wall of gasbag leg cover.
2. The intelligent air wave pressure circulation therapeutic apparatus according to claim 1, wherein a connecting shaft is movably connected in a groove formed in the top end of the outer portion of the housing, and a handle is mounted on the connecting shaft.
3. The intelligent air wave pressure cycle therapeutic apparatus of claim 1, wherein a maintenance plate is mounted on the rear wall of the housing, and a fastening groove is formed in the rear wall of the maintenance plate.
4. The intelligent air wave pressure cycle therapeutic apparatus of claim 1, wherein four corners of the bottom of the exterior of the housing are provided with support columns, and the bottom of each support column is provided with a non-slip mat.
5. The intelligent air wave pressure circulation therapeutic apparatus according to claim 1, wherein heat dissipating ports are formed in both side walls of the interior of the housing, and shielding layers are installed in the heat dissipating ports.
CN202120338758.1U 2021-02-04 2021-02-04 Intelligent air wave pressure circulation therapeutic instrument Active CN215385755U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202120338758.1U CN215385755U (en) 2021-02-04 2021-02-04 Intelligent air wave pressure circulation therapeutic instrument

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120338758.1U CN215385755U (en) 2021-02-04 2021-02-04 Intelligent air wave pressure circulation therapeutic instrument

Publications (1)

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CN215385755U true CN215385755U (en) 2022-01-04

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN116763619A (en) * 2023-06-05 2023-09-19 佛山市全肌美科技有限公司 Lower limb air cushion massage machine and massage method

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN116763619A (en) * 2023-06-05 2023-09-19 佛山市全肌美科技有限公司 Lower limb air cushion massage machine and massage method

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