Negative pressure massage host with double air supply structure
By designing a negative pressure massage host with a dual air delivery structure, the problem of the single function of existing devices has been solved, and compatibility with a variety of external devices has been achieved, improving the versatility and economy of use.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- BIBOTING INTERNATIONAL CO LTD
- Filing Date
- 2022-06-28
- Publication Date
- 2026-04-21
AI Technical Summary
Existing negative pressure massage devices can only provide a single function and cannot be compatible with external devices with different functions, which requires users to purchase additional equipment and increases costs.
Design a negative pressure massage host with a dual air supply structure, comprising a first and a second air supply structure, which are respectively used to connect a negative pressure cup device and other external devices, such as an oxygen injector, a negative ion generator, ozone, hydroxide ions, etc., and achieve multi-functional operation through solenoid valves and connecting pipelines.
This design achieves versatility and versatility for the negative pressure massage host, reducing the need to purchase additional equipment and lowering usage costs.
Smart Images

Figure CN115177503B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to a negative pressure massage host, and more particularly to a negative pressure massage host with a dual air supply structure. Background Technology
[0002] With the increasingly fast pace of life, modern people often lack sufficient time for exercise to relax their minds and bodies, or accumulate a lot of stress that needs to be relieved. As a result, many kinds of massage and stress-relieving devices have appeared on the market. A typical negative pressure massage device mainly consists of a massage main unit, an air supply tube, and a vacuum cup. The two ends of the air supply tube are connected to the massage main unit and the vacuum cup, respectively. Users operate the massage main unit and use the vacuum cup to draw air out or release air from various parts of the body, thereby achieving a massage and relaxation effect.
[0003] However, most existing negative pressure massage devices can only be used with single-function external devices. They cannot be fully applied to other functions such as oxygen infusion, negative ion generator, ozone, and hydroxide ion generation. Users must purchase other related devices or equipment, which will result in a heavy cost burden for users.
[0004] In view of this, the inventor has devoted himself to research and applied theoretical principles to address the shortcomings of the prior art, and has made every effort to solve the above-mentioned problems, which is the target of the inventor's improvement. Summary of the Invention
[0005] One objective of this invention is to provide a negative pressure massage host with a dual air delivery structure, which can not only be used with a negative pressure cup device, but also be used with other external devices, thus increasing its multifunctionality and versatility.
[0006] To achieve the above objectives, the present invention provides a negative pressure massage host with a dual air supply structure, comprising a main body, a first air supply structure, and a second air supply structure. The main body includes a housing and a panel connected to the housing. The first air supply structure includes a first external pipe, an air intake tank, a vacuum pump, and a first connecting pipe. The first external pipe is disposed on the panel, the air intake tank is connected to the first external pipe, and the vacuum pump is disposed within the housing and connected to the air intake tank via the first connecting pipe. The second air supply structure includes a second external pipe, an air inlet tank, a solenoid valve, a second connecting pipe, and a third connecting pipe. The second external pipe is disposed on the panel, the air inlet tank is disposed within the housing and connected to the second external pipe via the second connecting pipe, the solenoid valve is disposed within the housing and connected to the air inlet tank, and the solenoid valve is connected to the air intake tank via the third connecting pipe.
[0007] The present invention also has the following advantages: by setting the first and second external connecting pipes on the panel, it facilitates the insertion and removal of the negative pressure cup device and the external device. Attached Figure Description
[0008] Figure 1 This is a perspective view of the negative pressure massage host assembly of the present invention.
[0009] Figure 2 This is an exploded perspective view of the negative pressure massage host of the present invention.
[0010] Figure 3 This is a block diagram of the negative pressure massage host of the present invention.
[0011] Figure 4 This is an exploded view of the first external pipe and the air intake of the present invention.
[0012] Figure 5 This is an exploded view of the air intake casing of the present invention.
[0013] Symbol explanation:
[0014] 10: Main Body
[0015] 11: Base
[0016] 12: Shell
[0017] 13: Panel
[0018] 131: Blue button
[0019] 132: Yellow button
[0020] 133: Red button
[0021] 14: Control and Processing Module
[0022] 20: First gas transmission structure
[0023] 21: First external takeover
[0024] 22: Air Suction Tank
[0025] 221: Intake port
[0026] 222: First venting port
[0027] 223: Second vent port
[0028] 23: Vacuum pump
[0029] 231: Air intake interface
[0030] 232: Exhaust port
[0031] 24: First connecting pipe
[0032] 25: Air vent
[0033] 251: Air intake interface
[0034] 252: Exhaust port
[0035] 26: Fourth connecting pipe
[0036] 30: Second gas delivery structure
[0037] 31: Second external takeover
[0038] 32: Air intake cylinder
[0039] 321: Air intake interface
[0040] 322: Exhaust port
[0041] 323: Exhaust pipe
[0042] 324: Exhaust port
[0043] 325: First filter element
[0044] 326: Second filter element
[0045] 327: Install cover
[0046] 33: Solenoid valve
[0047] 331: Air outlet
[0048] 34: Second connecting pipe
[0049] 35: Third connecting pipe
[0050] 36: Another solenoid valve
[0051] 361: Air Intake Interface
[0052] 362: Air outlet
[0053] 37: Fifth connecting pipe
[0054] 38: Sixth connecting pipe
[0055] 7: Negative pressure cup device
[0056] 8: External devices Detailed Implementation
[0057] The detailed description and technical content of the present invention will be explained in conjunction with the accompanying drawings. However, the accompanying drawings are for illustrative purposes only and are not intended to limit the present invention.
[0058] Please see Figures 1 to 4 As shown, this invention provides a negative pressure massage host with a dual air delivery structure, which can be paired with a negative pressure cup device 7 ( Figure 3 (as shown) or / and an external device 8 ( Figure 3As shown), they are combined to form a negative pressure massager, wherein the negative pressure massage host includes a main body 10, a first air supply structure 20 and a second air supply structure 30.
[0059] The main body 10 is generally trapezoidal in shape and mainly includes a base 11, a housing 12, and a panel 13. The housing 12 covers the base 11, and the panel 13 is fixed to the front of the housing 12. In this embodiment, the panel 13 is also provided with a blue button 131, a yellow button 132, a red button 133, and other related components such as knobs, buzzers, display screens, and switches.
[0060] The first gas supply structure 20 mainly includes a first external pipe 21, a suction tank 22, a vacuum pump 23, and a first connecting pipe 24. The first external pipe 21 is disposed on the front of the panel 13 to provide connection for the aforementioned negative pressure cup device 7. The suction tank 22 is fixed to the back of the panel 13 and communicates with the first external pipe 21. The suction tank 22 has a suction port 221, a first vent port 222, and a second vent port 223. The detailed structure, connection type, and operation mode of the suction tank 22 and the first external pipe 21 have been described in the specification of the patent certificate number TWM621904 previously applied for and published by the inventor, and therefore will not be described in detail hereafter.
[0061] The vacuum pump 23 is fixed on the base 11 and formed inside the housing 12. The vacuum pump 23 has an air inlet 231 and an air outlet 232. The two ends of the first connecting pipe 24 are respectively connected to the air inlet 231 of the vacuum pump 23 and the air intake 221 of the suction tank 22.
[0062] The second gas supply structure 30 mainly includes a second external pipe 31, an air inlet 32, a solenoid valve 33, a second connecting pipe 34, and a third connecting pipe 35. The second external pipe 31 is located on the front of the panel 13 and on the side of the first external pipe 21, and is used to provide connection for external devices 8 such as oxygen injectors, negative ion generators, ozone generators, and hydroxide ion generators. The air inlet 32 is fixed on the base 11 and formed inside the housing 12. The air inlet 32 has an air inlet 321, an air outlet 322, an air outlet pipe 323, and an air outlet 324. The two ends of the second connecting pipe 34 are respectively connected to the second external pipe 31 and the air inlet 321 of the air inlet 32.
[0063] The solenoid valve 33 is fixed on the base 11 and located on one side of the air inlet 32, and the solenoid valve 33 is connected to the air inlet 32 through the air outlet pipe 323; in addition, the solenoid valve 33 has an air outlet 331, wherein the two ends of the third connecting pipe 35 are respectively connected to the air outlet 331 of the solenoid valve 33 and the first venting port 222 of the air inlet 22.
[0064] In one embodiment, the main body 10 further includes a control and processing module 14, which is disposed on one side of the vacuum pump 23 and electrically connected to the vacuum pump 23 and the solenoid valve 33.
[0065] In one embodiment, the first gas supply structure 20 further includes a venting tank 25 and a fourth connecting pipe 26. The venting tank 25 is fixed on the base 11 and formed inside the housing 12. The venting tank 25 has an air inlet 251 and an exhaust port 252. The two ends of the fourth connecting pipe 26 are respectively connected to the exhaust port 232 of the vacuum pump 23 and the air inlet port 251 of the venting tank 25.
[0066] In one embodiment, the second gas supply structure 3 further includes another solenoid valve 36, a fifth connecting pipe 37, and a sixth connecting pipe 38. The other solenoid valve 36 is fixed on the base 11 and formed on the side of the venting tank 25. The other solenoid valve 36 has an air inlet 361 and an air outlet 362. The two ends of the fifth connecting pipe 37 are respectively connected to the air outlet 324 of the air inlet tank 32 and the air inlet 361 of the other solenoid valve 36. The two ends of the sixth connecting pipe 38 are respectively connected to the air outlet 362 of the other solenoid valve 36 and the second venting port 223 of the air intake tank 22.
[0067] By combining the above components, the operational process can take the following various modes:
[0068] In the instrument's blue key mode (i.e., after the blue button 131 lights up), another solenoid valve 36 remains closed. After opening and releasing gas for a few seconds, the vacuum pump 23 starts and evacuates for a few seconds, repeating this action. The external device 8 continuously injects pure oxygen, negative ions, ozone, hydroxide ions, and other gases through the second external pipe 31. These gases enter the air intake chamber 32 through the second connecting pipe 34 via the air intake port 321. When the solenoid valve 33 is open, the gas sequentially passes through the air outlet pipe 323, the air outlet port 331 of the solenoid valve 33, the third connecting pipe 35, the second vent port 223, and the suction chamber 22 to the negative pressure cup device 7. When the solenoid valve 33 is closed, the gas is discharged from the exhaust port 322 of the air intake chamber 32.
[0069] In the instrument's yellow key mode (i.e., after the yellow key 132 lights up), solenoid valve 33 remains closed, while another solenoid valve 36 opens to release gas for a few seconds, after which vacuum pump 23 starts to evacuate for a few seconds, repeating this action. The external device 8 continuously injects pure oxygen, negative ions, ozone, hydroxide ions, and other gases through the second external pipe 31. These gases enter the air intake tank 32 through the second connecting pipe 34 via the air intake port 321. When solenoid valve 33 is open, the gas sequentially passes through the air outlet port 324, the fifth connecting pipe 37, the air intake port 361, the other solenoid valve 36, the air outlet port 362, the sixth connecting pipe 38, the first vent port 222, and the suction tank 22 to the negative pressure cup device 7. When solenoid valve 33 is closed, the gas is discharged from the exhaust port 322 of the air intake tank 32.
[0070] In the instrument's red key mode (i.e., when the red button 133 is lit), solenoid valve 33 and another solenoid valve 36 remain closed, while vacuum pump 23 is activated to continuously draw a vacuum. External device 8 continuously injects pure oxygen, negative ions, ozone, hydroxide ions, and other gases through the second external pipe 31. These gases enter the air intake chamber 32 through the second connecting pipe 34 from the air intake port 321 and are discharged from the exhaust port 322 of the air intake chamber 32.
[0071] In the instrument's blue and red key mode (i.e., when blue key 131 and red key 133 are lit up at the same time), another solenoid valve 36 remains closed, and solenoid valve 33 opens to release gas for a few seconds and then closes for a few seconds, repeating the action; vacuum pump 23 is turned on to continuously pump vacuum.
[0072] In the instrument's yellow and red key modes (i.e., when yellow key 132 and red key 133 are lit up simultaneously), solenoid valve 33 remains closed, while another solenoid valve 36 opens to release air for a few seconds and then closes for a few seconds, repeating the action; vacuum pump 23 is turned on to continuously pump vacuum.
[0073] Please see Figure 5 As shown, the air intake chamber 32 also includes a filter element and a mounting cover 327. The filter element is disposed inside the air intake chamber 32, and the mounting cover 327 is fixed to the end face of the air intake chamber 32. The filter element includes a first filter element 325 and a second filter element 326, which are stacked on top of each other. The first filter element 325 can be a filter foam, and the second filter element 326 can be an activated carbon filter or a high-efficiency particulate air (HEPA) filter. The filter material of the HEPA filter is usually made of irregularly arranged chemical fibers (e.g., non-woven fabric of polypropylene fibers or polyester fibers) or glass fibers to keep the intake air clean.
[0074] It should be noted that the structures, proportions, sizes, etc., illustrated in the accompanying drawings are merely for illustrative purposes to aid those skilled in the art and to facilitate understanding and reading. They are not intended to limit the scope of the invention and therefore have no substantial technical significance. Any modifications to the structure, changes in proportions, or adjustments to size, without affecting the effectiveness and purpose of the invention, should still fall within the scope of the technical content disclosed herein. Furthermore, the terms "upper," "lower," "left," "right," "middle," and "one" used in this specification are merely for clarity and not intended to limit the scope of the invention. Changes or adjustments to their relative relationships, without substantially altering the technical content, should also be considered within the scope of the invention.
Claims
1. A negative pressure massage host with a dual air delivery structure, characterized in that, include: A main body, comprising a housing and a panel connected to the housing; A first gas delivery structure includes a first external pipe, a suction tank, a vacuum pump, and a first connecting pipe. The first external pipe is disposed on the panel, the suction tank is connected to the first external pipe, and the vacuum pump is disposed inside the housing and connected to the suction tank through the first connecting pipe. A second air supply structure includes a second external pipe, an air inlet tank, a solenoid valve, a second connecting pipe, and a third connecting pipe. The second external pipe is disposed on the panel. The air inlet tank is disposed inside the housing and connected to the second external pipe through the second connecting pipe. The solenoid valve is disposed inside the housing and connected to the air inlet tank. The solenoid valve is connected to the suction tank through the third connecting pipe. The air intake barrel has an air intake port, and the two ends of the second connecting pipe are respectively connected to the second external connecting pipe and the air intake port of the air intake barrel; The air intake has a first vent port, the solenoid valve has an outlet port, and the two ends of the third connecting pipe are respectively connected to the outlet port of the solenoid valve and the first vent port of the air intake. The air inlet barrel also has an air outlet pipe, and the solenoid valve is connected to the air inlet barrel through the air outlet pipe; The second gas supply structure also includes another solenoid valve and a fifth connecting pipe. The air inlet barrel also has an air outlet, the other solenoid valve has an air inlet, and the two ends of the fifth connecting pipe are respectively connected to the air outlet of the air inlet barrel and the air inlet of the other solenoid valve. The second gas supply structure also includes a sixth connecting pipe, the other solenoid valve also has an air outlet, the air intake barrel also has a second air vent, and the two ends of the sixth connecting pipe are respectively connected to the air outlet of the other solenoid valve and the second air vent of the air intake barrel. The main body also includes a control and processing module, which is electrically connected to the vacuum pump and the solenoid valve.
2. The negative pressure massage host with a dual air supply structure according to claim 1, characterized in that, The air intake barrel has an air intake port, an exhaust port, an exhaust pipe, and an exhaust port that are interconnected.
3. The negative pressure massage host with a dual air supply structure according to claim 1, characterized in that, The suction barrel has a suction port, the vacuum pump has an air inlet port, and the two ends of the first connecting pipe are respectively connected to the air inlet port of the vacuum pump and the suction port of the suction barrel.
4. The negative pressure massage host with a double air feeding structure according to claim 3, characterized in that, The first gas supply structure also includes a venting tank and a fourth connecting pipe. The vacuum pump also has an exhaust port. The venting tank is disposed inside the housing and has an air inlet. The two ends of the fourth connecting pipe are respectively connected to the exhaust port of the vacuum pump and the air inlet of the venting tank.
5. The negative pressure massage host with a dual air supply structure according to claim 1, characterized in that, The air intake chamber is equipped with a filter.
6. The negative pressure massage host with a dual air feeding structure according to claim 5, characterized in that, The filter element includes a first filter element and a second filter element stacked with the first filter element. The first filter element is a filter foam, and the second filter element is an activated carbon filter material or a high-efficiency filter screen.
Citation Information
Patent Citations
Health preserving instrument
CN206473607U
Negative pressure massage main machine with double gas transmission structures
CN218500978U
Negative pressure massage host with double air transmission structure
TWI812278B
Negative pressure massage host with embedded filter
TWM621904U