Massage assembly
Through the combined design of the bottom airbag and the top airbag, combined with the intelligent control of the air pump and air source controller, the massage component can achieve pressing and rotation massage, solving the problem of the single mode of traditional massage equipment and providing a more efficient, comfortable and personalized massage experience.
Patent Information
- Application Number
- CN202422409844.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-30
- Publication Date
- 2025-09-12
- Estimated Expiration
- 2034-09-30
AI Technical Summary
Traditional massage equipment has a single massage method and cannot be flexibly adjusted according to the user's physical condition and massage needs, causing users to feel monotonous and uncomfortable during long-term use.
The combination design of bottom airbags and top airbags realizes the dual functions of pressing and rotating massage. Through the intelligent control of the air pump and air source controller, the inflation and deflation of the airbags are precisely adjusted to provide a diverse massage experience.
It improves the effect and comfort of massage, meets users' needs for massage comfort and accuracy, and realizes personalized and intelligent massage services.
Smart Images

Figure CN223323753U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of massage chairs, in particular to a massage component. Background Art
[0002] In modern society, with the accelerating pace of life and increasing work pressure, massage devices have gradually become essential tools for people to relieve fatigue and relax. Traditional massage devices generally use mechanical or electric massage methods. However, these massage methods have many shortcomings and cannot meet users' demands for massage comfort, precision, and personalization.
[0003] Traditional massage devices offer a limited range of massage methods, often offering fixed massage modes and intensities. For example, a single method like pressing cannot be flexibly adjusted to the user's physical condition or massage needs. This can lead to users experiencing monotony and discomfort during extended use, failing to achieve the desired massage effect.
[0004] For this purpose, we propose a massage component. Utility Model Content
[0005] In view of the shortcomings of the above-mentioned existing production technology, the applicant provides a massage component that realizes the dual functions of pressing and rotating massage, greatly improving the massage effect and user comfort.
[0006] The technical solutions adopted in this utility model are as follows:
[0007] A massage assembly comprising:
[0008] Bottom airbags, which achieve support and massage effects by inflating;
[0009] There are multiple top airbags connected to the expansion end surface of the bottom airbag, which are used to support the top airbag and provide additional pressing effect. The multiple top airbags are supplied with air separately and are inflated and deflated in a clockwise or counterclockwise manner to achieve rotary massage.
[0010] As a further improvement of the above technical solution:
[0011] The plurality of top airbags are distributed on the bottom airbag in an annular manner with equal distances, and a convex structure is provided on the surface of the top airbag to further improve the massage effect.
[0012] The bottom airbag and the top airbag are both supplied with air independently.
[0013] The expansion height of the expansion end surface of the bottom airbag is adjustable, so that the angles of the multiple top airbags can be adjusted to better fit the massage area.
[0014] The number of the top airbags is greater than or equal to 3.
[0015] The number of the top airbags is 3.
[0016] Also includes:
[0017] a bracket that provides support for the massage assembly;
[0018] The air pump is fixed on the bracket and serves as a power source to provide an independent and stable air source for each air bag in the massage component.
[0019] It also includes an air source controller, which is located between the air pump and each air bag, is individually connected to each air bag through an air tube, and accurately controls the output of the air pump according to a preset massage program.
[0020] It also includes a bottom airbag connecting tube and a top airbag connecting tube. The bottom airbag connecting tube is used to connect the bottom airbag with the air source controller, and a first electric-controlled valve is provided on the bottom airbag connecting tube. The top airbag connecting tube is used to connect the top airbag with the air source controller, and a second electric-controlled valve is provided on the top airbag connecting tube. The inflation and deflation of the airbag are controlled by the electric-controlled valve.
[0021] The first electronically controlled valve is divided into two types, one uses a pulse signal to achieve rapid tapping, and the other uses a normally open or normally closed control method to ensure the stability of the bottom airbag; the pulse signal of the second electronically controlled valve is 500ms-850ms, which realizes orderly massage of the top airbag.
[0022] The beneficial effects of the utility model are as follows:
[0023] This utility model boasts a compact, rational structure and easy operation. Through the combined design of the bottom and top airbags, it achieves dual functions of compression and rotational massage, significantly enhancing the massage effect and user comfort. Furthermore, the massage component fully considers the user's individual needs, providing a more diverse massage experience by adjusting the inflation height of the bottom airbag and the number of top airbags. Furthermore, the application of intelligent control makes the massage process more precise and continuous. Overall, this massage component excels in massage effect, personalization, and intelligence, providing users with a more comprehensive, in-depth, and personalized massage service.
[0024] At the same time, the utility model also has the following advantages:
[0025] 1. Improved Massage Effect and Comfort: The massage assembly proposed in this embodiment achieves dual massage functions through the combined design of bottom and top airbags, providing both pressure and rotational massage. This design not only enhances the intensity and depth of the massage, but also provides more comprehensive coverage of fatigue-prone areas through rotational massage, significantly improving massage effect and user comfort. Compared to the single massage method of traditional massage devices, this massage assembly better meets users' demands for massage comfort and precision, allowing users to experience a more comprehensive and profound sense of relaxation during the massage.
[0026] 2. Enhanced Massage Personalization and Flexibility: This massage component is designed with the user's individual needs in mind. By adjusting the inflation height of the bottom airbag, the angle of the top airbag can be flexibly adjusted to better fit the user's massage area. Furthermore, the number of top airbags can be increased or decreased based on actual needs, providing a more diverse massage experience. This personalized design allows the massage component to better adapt to different users' physical conditions and massage needs, enhancing the targeted and effective massage experience.
[0027] 3. Intelligent Control and Precision Massage: This massage unit utilizes a combination of an air pump and an air source controller to precisely control the inflation and deflation of the airbags. Using pre-set massage programs, the air source controller accurately controls the air pump output, thereby precisely inflating and defusing the airbags. This intelligent control not only improves massage accuracy and continuity, but also makes the massage process more stable and reliable. Users can select the appropriate massage program and intensity based on their needs, enjoying a more personalized and precise massage service. BRIEF DESCRIPTION OF THE DRAWINGS
[0028] Figure 1 It is a structural diagram of the present utility model.
[0029] Figure 2 This is a schematic diagram of the connection structure of the massage component, air pump and air source controller in the utility model.
[0030] Figure 3 for Figure 2 rear view.
[0031] Figure 4 It is another massage component in the utility model.
[0032] Wherein: 10, bottom airbag; 101, bottom airbag connecting tube; 20, top airbag; 201, top airbag connecting tube; 30, air pump; 40, air source controller; 50, bracket; DETAILED DESCRIPTION
[0033] The specific implementation of the present utility model will be described below with reference to the accompanying drawings.
[0034] like Figure 1-Figure 4 As shown, this embodiment discloses a massage component, the structure of which includes a bottom airbag 10 and a top airbag 20. Through the combination of the two airbags, pressing and rotating massage is achieved, thereby improving the massage effect.
[0035] like Figure 1 As shown, specifically, the massage assembly in this embodiment includes a bottom airbag 10 and a plurality of top airbags 20, which respectively undertake the dual tasks of support and massage;
[0036] In this embodiment, there are three top airbags 20, which are connected to the expansion end face of the bottom airbag 10. That is, when the bottom airbag 10 is inflated or deflated, the top airbag 20 will be pushed up. At the same time, the bottom airbag 10 is supplied with air independently, and multiple top airbags 20 are also supplied with air independently. When the bottom airbag 10 is inflated, multiple top airbags 20 are pushed out, and as the top airbag 20 is inflated or deflated, the corresponding parts can be squeezed again.
[0037] In another embodiment, the expansion heights of the expansion end surfaces of the bottom airbags 10 are different, so that the angles of the multiple top airbags 20 can be adjusted to better fit the massage area and improve the subsequent massage effect.
[0038] At the same time, the three top airbags 20 in this embodiment are inflated and deflated in sequence. When the top airbags 20 are inflated and deflated in sequence, the three airbags 20 can rise and fall in a clockwise or counterclockwise direction, thereby achieving the effect of rotational massage. For the two parts that are most prone to fatigue, the use of pressing + rotational massage is beneficial to improving the comfort of the corresponding parts.
[0039] like Figure 4 As shown, in another embodiment, the number of top airbags 20 can be 4 and 5, and when in use, the number can also be set to 6, 7, or 8 according to the same logic. However, considering the actual use effect, when the number of top airbags 20 increases, the area of the bottom airbag needs to be appropriately increased, and because of the limitation of installation space, the number of top airbags 20 cannot be increased indefinitely. The area of the bottom airbag is adjusted within a certain range, and when the number of top airbags 20 increases, the size of each top airbag 20 will also become smaller accordingly. In summary, the number of top airbags 20 is greater than or equal to 3, and when the number of top airbags 20 is greater than 3, multiple top airbags 20 are inflated and deflated in a clockwise or counterclockwise manner.
[0040] Bracket 50, which provides support for the massage assembly and also provides an installation location for other equipment;
[0041] The air pump 30 is fixed to the bracket 50 and is responsible for providing an independent and stable air source to each air bag in the massage module 10 as a power source. Its performance directly affects the continuity and strength of the massage.
[0042] The air source controller 40 is located between the air pump 30 and each air bag, and is individually connected to each air bag through an air tube. As the core of intelligent control, the air source controller accurately controls the output of the air pump according to a preset massage program to achieve precise inflation and deflation of the air bag.
[0043] In this embodiment, Figure 3 As shown, the control method for the massage component includes: a first electrically controlled valve is connected to the bottom airbag connecting tube 101 for connecting the bottom airbag 10. The first electrically controlled valve is divided into two types. One type uses the same pulse signal as the first electrically controlled valve to achieve rapid tapping, and the other type uses a normally open or normally closed control method to ensure that the bottom airbag 10 is in a relatively stable state. In this embodiment, the bottom airbag 10 has two functions. First, the bottom airbag 10 can improve the pressing effect so that the top airbag 20 can fully fit the massage part. Second, the bottom airbag 10 can adjust the angle of the top airbag 20 to better fit the shape of the massage part. At the same time, when the shape of the top airbag 20 is adjusted, the expansion height of the end face of the bottom airbag 10 is different.
[0044] The top airbag 20 in this embodiment is explained by taking three top airbags 20 as an example. The three top airbag connecting tubes 201 for connecting the three top airbags 20 are all connected to a second electrically controlled valve. The three second electrically controlled valves of the three top airbags 20 located on the same bottom airbag 10 are started in sequence, that is, after one of the second electrically controlled valves is closed, the other second electrically controlled valve clockwise / counterclockwise therewith is started. At the same time, the pulse signal of the second electrically controlled valve is 500ms-850ms, so that the three top airbags 20 can achieve orderly massage, thereby improving the massage effect.
[0045] In another embodiment, a raised structure may be provided on the surface of the top airbag 20 to further enhance the massage effect.
[0046] In summary, the massage assembly proposed in this embodiment, through the combined design of the bottom airbag 10 and the top airbag 20, achieves the dual functions of compression and rotational massage, significantly improving the massage effect and user comfort. Furthermore, this massage assembly fully considers the user's individual needs, providing a more diverse massage experience by adjusting the inflation height of the bottom airbag and the number of top airbags. Furthermore, the application of intelligent control also makes the massage process more precise and continuous. Overall, this massage assembly excels in massage effect, personalization, and intelligence, providing users with a more comprehensive, in-depth, and personalized massage service.
[0047] The above description is an explanation of the utility model, not a limitation of the utility model. The scope of the utility model is defined by the claims. Any form of modification can be made within the scope of protection of the utility model.
Claims
1. A massage component, characterized in that: include: A bottom airbag (10) which achieves support and massage effects by being inflated; The top airbags (20) are multiple in number and connected to the expansion end surface of the bottom airbag (10), and are used to support the top airbags (20) and provide an additional pressing effect. The multiple top airbags (20) are individually supplied with air and are inflated and deflated in a clockwise or counterclockwise manner to achieve rotary massage.
2. The massage assembly according to claim 1, characterized in that The plurality of top airbags (20) are distributed on the bottom airbag (10) in an annular manner and at equal intervals, and a convex structure is provided on the surface of the top airbag (20) to further improve the massage effect.
3. The massage assembly according to claim 2, characterized in that The bottom airbag (10) and the top airbag (20) are both supplied with air independently.
4. The massage assembly according to claim 1, wherein: The expansion height of the expansion end surface of the bottom airbag (10) is adjustable, so that the angles of the multiple top airbags (20) can be adjusted to better fit the massage area.
5. The massage assembly according to claim 2, characterized in that The number of the top airbags (20) is greater than or equal to 3.
6. The massage assembly according to claim 1, wherein: The number of the top airbags (20) is 3.
7. The massage assembly according to claim 1, wherein: Also includes: a bracket (50) that provides support for the massage assembly; An air pump (30) is fixed on a bracket (50) and serves as a power source to provide an independent and stable air source for each air bag in the massage component.
8. The massage assembly according to claim 7, characterized in that The air source controller (40) is also included. The air source controller (40) is located between the air pump (30) and each air bag, is individually connected to each air bag through an air pipe, and accurately controls the output of the air pump (30) according to a preset massage program.
9. The massage assembly according to claim 8, characterized in that The invention also includes a bottom airbag connecting tube (101) and a top airbag connecting tube (201), wherein the bottom airbag connecting tube (101) is used to connect the bottom airbag (10) with the air source controller (40), and a first electric-controlled valve is provided on the bottom airbag connecting tube (101), and the top airbag connecting tube (201) is used to connect the top airbag (20) with the air source controller (40), and a second electric-controlled valve is provided on the top airbag connecting tube (201), and the inflation and deflation of the airbag are controlled by the electric-controlled valve.
10. The massage assembly according to claim 9, characterized in that The first electrically controlled valve is divided into two types, one adopts a pulse signal to achieve rapid tapping, and the other adopts a normally open or normally closed control method to ensure the stability of the bottom airbag (10); the pulse signal of the second electrically controlled valve is 500ms-850ms, which realizes orderly massage of the top airbag (20).