Wearable massager
By adopting the design of a strap structure, an airbag cover and a first bracket in the wearable massager, the airbag cover is placed outside the strap structure, solving the problem that the airbag is restricted by the strap structure and improving the massage effect and user experience.
Patent Information
- Application Number
- CN202421659307.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-12
- Publication Date
- 2025-07-18
- Estimated Expiration
- 2034-07-12
AI Technical Summary
In the existing wearable massagers, the airbag adopts a built-in assembly method wrapped by a strap structure, which causes the airbag to be restricted by the wrapping layer of the strap structure when performing massage operations, affecting the massage effect.
The design of a strap structure includes a flexible body, an airbag sleeve and a first bracket. The airbag sleeve is installed and fixed on the mounting part through the first bracket. The airbag is arranged in the receiving cavity of the airbag sleeve. The air pipe is connected to the airbag through the airbag sleeve. The power component provides expansion and contraction power. The airbag sleeve is outside the strap structure to reduce the limitations on the airbag.
It improves the massage effect of the airbag, reduces the risk of tracheal exposure, avoids assembly errors and position deviations, and improves the user experience and massage effect.
Smart Images

Figure CN223111958U_ABST
Abstract
Description
Technical Field
[0001] This application belongs to the technical field of massage devices, and particularly relates to a wearable massager. Background Art
[0002] In the related art, some wearable massagers use airbags as the massage parts for performing massage operations. During the inflation and deflation processes of the airbags, state changes of expansion and contraction occur. When the airbags expand, they squeeze and massage the part to be massaged, and when the airbags deflate, they release the part to be massaged, thereby achieving the effect of repeatedly massaging the part to be massaged.
[0003] However, in existing wearable massagers, the airbags are generally assembled in an internal assembly manner directly wrapped by the strap structure of the wearable massager. When a user wears and uses the wearable massager, the strap structure needs to be tightly tied around the part to be massaged, so that the airbags internally assembled in the strap structure are restricted by the wrapping layer of the strap structure when performing massage operations on the part to be massaged, resulting in an impact on the massage effect. Utility Model Content
[0004] The purpose of this application is to provide a wearable massager, aiming to solve the problem that in existing wearable massagers, the airbags are assembled in an internal assembly manner wrapped by a strap structure, and the airbags are restricted by the wrapping layer of the strap structure when performing massage operations, resulting in an impact on the massage effect.
[0005] To achieve the above purpose, the technical solution adopted in this application is: A wearable massager, comprising:
[0006] A strap structure, including a flexible body, the flexible body includes a mounting part, a first extension band and a second extension band, the first extension band and the second extension band are respectively connected to both ends of the mounting part, and the first extension band and the second extension band are detachably connected to be worn around the part to be massaged;
[0007] An airbag and an airbag sleeve, the airbag sleeve has a skin-friendly layer and a back-skin layer, the skin-friendly layer and the back-skin layer are connected to form a receiving cavity, and the airbag is arranged in the receiving cavity of the airbag sleeve;
[0008] A first bracket, arranged in the airbag sleeve, the first bracket passes through the back-skin layer and is connected to the mounting part, and the back-skin layer is clamped between the first bracket and the mounting part; and,
[0009] A power component and an air tube, the power component is installed on the first bracket, and the power component is located on the back-skin side of the mounting part. One end of the air tube is communicated with the power component, and the other end of the air tube sequentially passes through the mounting part, the back-skin side and the first bracket and is communicated with the airbag, and the power component provides power for the expansion and contraction of the airbag.
[0010] In some embodiments of the present application, the wearable massager further includes a second bracket and a cover body. The second bracket is disposed on the back-skin side of the installation part. The second bracket is connected to the first bracket. The installation part is clamped between the first bracket and the second bracket. The cover body is connected to the side of the second bracket facing away from the installation part. The cover body and the second bracket form an assembly space, and the power assembly is installed in the assembly space.
[0011] In some embodiments of the present application, in the thickness direction of the strap structure, the cover body, the strap structure, and the airbag are stacked, and the cover body is used to support the airbag.
[0012] In some embodiments of the present application, the power assembly includes a solenoid valve and an air pump. The solenoid valve and the air pump are connected by a pipeline. One end of the air pipe is connected to the solenoid valve, and the other end of the air pipe passes through the installation part and is connected to the airbag.
[0013] In some embodiments of the present application, the airbag includes a flexible connection part, a first airbag structure, and a second airbag structure. The first airbag structure and the second airbag structure are respectively connected to both ends of the flexible connection part. The first airbag structure, the flexible connection part, and the second airbag structure are arranged in sequence along the length extension direction of the strap structure. The wearable massager further includes a third bracket and a fourth bracket. The third bracket is connected to the installation part, and the fourth bracket is connected to the airbag sleeve. The third bracket is connected to the fourth bracket, and the flexible connection part is clamped between the third bracket and the fourth bracket.
[0014] In some embodiments of the present application, the third bracket is located on the near-skin side of the installation part, the fourth bracket is located outside the airbag sleeve, the fourth bracket is connected to the third bracket, and the flexible connection part and the airbag sleeve are clamped between the third bracket and the fourth bracket.
[0015] In some embodiments of the present application, the wearable massager further includes a lighting structure. The lighting structure includes a light source assembly and a housing. The light source assembly is installed in the housing, and the light emitted by the light source assembly can pass through the housing. The housing is connected to the fourth bracket.
[0016] In some embodiments of the present application, the wearable massager further includes a plurality of massage heads. The massage heads are arranged on the near-skin layer. When the airbag is inflated, the airbag pushes the massage heads to press the part to be massaged.
[0017] In some embodiments of the present application, the wearable massager further includes a vibrator, and a vibrator is arranged in the massage head.
[0018] In some embodiments of the present application, the wearable massager further includes a heating element; the heating element is arranged on the surface of the near-skin layer; or, the heating element is arranged in the airbag sleeve and is located between the airbag and the near-skin layer.
[0019] The present application has at least the following beneficial effects:
[0020] In the wearable massager, the airbag sleeve is fixedly mounted on the mounting portion through the first bracket, and the airbag is disposed in the accommodating cavity of the airbag sleeve. Therefore, the trachea passes through the airbag sleeve from the first bracket and extends into the accommodating cavity to be connected to the airbag, so that the trachea is not exposed outside, preventing the trachea from being accidentally touched and pulled to fail. Moreover, compared with the prior art in which the airbag sleeve is fixed by gluing, resulting in the airbag sleeve being prone to positional deviation relative to the mounting portion and prone to bonding errors, in the wearable massager of the present application, the airbag sleeve is fixedly mounted through the first bracket, and the first bracket is connected to the mounting portion by structures such as guide posts and connecting rods corresponding to passing through the assembly holes of the airbag sleeve. Therefore, only by corresponding the structures such as guide posts and connecting rods on the first bracket to the assembly holes of the airbag sleeve one by one, not only is the assembly error avoided, but also there is no longer any positional deviation between the airbag sleeve and the mounting portion, which is stable and reliable. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the following will briefly introduce the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings in the following description are only some embodiments of the present application. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.
[0022] Figure 1 is the front view schematic diagram of the wearable massager according to the embodiment of the present application;
[0023] Figure 2 is Figure 1 the exploded schematic diagram of the wearable massager shown;
[0024] Figure 3 is Figure 1 the front view schematic diagram of the airbag adopted by the wearable massager shown;
[0025] Figure 4 is Figure 1 the Figure 3 rear view schematic diagram of the airbag adopted by the wearable massager shown;
[0026] Figure 5 is Figure 1 the Figure 3 structural schematic diagram of the airbag adopted by the wearable massager shown when inflated;
[0027] Figure 6 is Figure 1 the Figure 3 front view schematic diagram of the first airbag in the airbag adopted by the wearable massager shown;
[0028] Figure 7 is Figure 6 the rear view schematic diagram of the first airbag shown;
[0029] Figure 8 The Figure 1 front view schematic diagram of the second airbag among the airbags shown in the wearable massager adopted; Figure 3 for the wearable massager shown;
[0030] Figure 9 The Figure 1 exploded schematic diagram of the strap structure adopted by the wearable massager shown;
[0031] Figure 10 The Figure 9 enlarged schematic diagram at position A in
[0032] Figure 11 The Figure 1 exploded schematic diagram of the lighting structure adopted by the wearable massager shown.
[0033] Among them, each reference numeral in the figure is:
[0034] 100, strap structure; 10, flexible body; 11, first extension band; 12, second extension band; 13, mounting part; 131, center line; 15, opening; 16, first connecting part; 17, second connecting part; 20, buckle part; 201, first buckle part; 202, second buckle part; 21, connecting band; 22, buckle; 30, sub-band; 301, first sub-band; 302, second sub-band; 31, first end; 32, second end; 33, third connecting part; 34, fourth connecting part;
[0035] 40, heating element;
[0036] 200, airbag; 2001, first airbag structure; 2002, second airbag structure; 210, flexible connecting part; 220, first airbag; 221, ventilation hole; 222, connecting part; 223, massage protrusion; 230, second airbag; 231, first diaphragm; 232, second diaphragm; 233, edge connecting part; 234, first partition part; 235, second partition part; 236, first cavity; 237, second cavity; 240, air nozzle;
[0037] 311, first bracket; 312, second bracket; 313, cover body; 320, power assembly; 321, air pump; 322, solenoid valve; 323, battery; 324, circuit board; 330, control switch; 340, electric wire;
[0038] 410, flexible decorative layer; 411, avoidance opening; 420, airbag sleeve; 430, fourth bracket; 440, third bracket; 450, airbag pad;
[0039] 510, heating element; 520, vibrator; 530, massage head;
[0040] 600, Lighting structure; 610, Lamp board; 620, Reflector; 630, Light guide member; 640, Housing; 650, Translucent member. Detailed implementation manner
[0041] The embodiments of the present application will be described in detail below. The examples of the embodiments are shown in the drawings, where the same or similar reference numerals indicate the same or similar elements or elements with the same or similar functions throughout. The embodiments described below with reference to the drawings are exemplary and are intended to explain the present application, and should not be construed as a limitation to the present application.
[0042] In the description of the present application, it should be understood that the orientation or positional relationship indicated by the terms "length", "width", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc. is based on the orientation or positional relationship shown in the drawings, and is only for the convenience of describing the present application and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation to the present application.
[0043] In addition, the terms "first", "second", etc. are only used for descriptive purposes and cannot be understood as indicating or implying relative importance or implicitly indicating the quantity of the indicated technical features. Thus, the features defined with "first", "second", etc. may explicitly or implicitly include one or more of such features. In the description of the present application, the meaning of "a plurality" is two or more, unless otherwise specifically defined.
[0044] In the present application, unless otherwise clearly specified and limited, the terms "mounted", "connected", "connected", "fixed", etc. should be understood in a broad sense. For example, it may be a fixed connection, a detachable connection, or integrated; it may be a mechanical connection or an electrical connection; it may be directly connected or indirectly connected through an intermediate medium, and it may be the internal communication of two elements or the interaction relationship between two elements. For those of ordinary skill in the art, the specific meanings of the above terms in the present application can be understood according to specific circumstances.
[0045] Such as Figure 1 and Figure 2As shown in the figure, the wearable massager provided by the embodiment of the present application includes a strap structure 100, an airbag 200, an airbag sleeve 420, a first bracket 311, a power assembly 320 and an air tube. The strap structure 100 includes a flexible body 10. The flexible body 10 includes a mounting portion 13, a first extension band 11 and a second extension band 12. The first extension band 11 and the second extension band 12 are respectively connected to two ends of the mounting portion 13. The first extension band 11 and the second extension band 12 are detachably connected to surround and be worn on the part to be massaged. The part to be massaged can be, for example, the waist and abdomen position, the thigh position, the arm position, etc., and there is no unique limitation here. The airbag sleeve 420 has a skin-friendly layer and a back-skin layer. The skin-friendly layer and the back-skin layer of the airbag sleeve 420 are connected to form a receiving cavity, and the airbag 200 is arranged in the receiving cavity of the airbag sleeve 420. The first bracket 311 is arranged in the airbag sleeve 420. The first bracket 311 passes through the back-skin layer of the airbag sleeve 420 and is connected to the mounting portion 13. The back-skin layer of the airbag sleeve 420 is clamped between the first bracket 311 and the mounting portion 13. The airbag sleeve 420 is connected to the mounting portion 13 through the first bracket 311, and thus the assembly of the airbag 200 to the strap structure 100 can be completed, improving the assembly efficiency of the airbag 200. The power assembly 320 is installed on the first bracket 311, and the power assembly 320 is located on the back-skin side of the mounting portion 13. One end of the air tube is communicated with the power assembly 320, and the other end of the air tube sequentially passes through the mounting portion 13, the back-skin side and the first bracket 311 and is communicated with the airbag 200. The power assembly 320 provides power for the expansion and contraction of the airbag 200.
[0046] When the user wears the wearable massager, the flexible body 10 of the strap structure 100 includes a first extension strap 11 and a second extension strap 12. When the flexible body 10 needs to surround the part to be massaged, the first extension strap 11 and the second extension strap 12 are connected, so that the strap structure 100 can be stably worn around the part to be massaged. The airbag 200 is covered by the airbag sleeve 420. The airbag sleeve 420 is externally disposed outside the installation part 13 and directly contacts the part to be massaged. When the airbag 200 is inflated, the airbag sleeve 420 expands together with the airbag 200 to squeeze and massage the part to be massaged, and inflates and deflates repeatedly like this, so as to repeatedly squeeze, massage and relax the part to be massaged of the user, so that the muscles of the part to be massaged of the user are relaxed and the user feels comfortable. In this wearable massager, the airbag sleeve 420 is installed and fixed on the installation part 13 through the first bracket 311, and the airbag 200 is disposed in the accommodation cavity of the airbag sleeve 420. Therefore, the trachea passes through the airbag sleeve 420 from the first bracket 311 and extends into the accommodation cavity to be connected with the airbag 200, so that the trachea is not exposed outside, preventing the trachea from being accidentally touched and pulled to fail. And, compared with the situation in the prior art where the airbag sleeve is fixed by gluing, which makes the airbag sleeve prone to position deviation relative to the installation part and prone to bonding errors, in the wearable massager of the present application, the airbag sleeve 420 is installed and fixed through the first bracket 311. The first bracket 311 is connected to the installation part 13 through structures such as guide posts and connecting rods corresponding to pass through the assembly holes of the airbag sleeve 420. Therefore, only by corresponding the structures such as guide posts and connecting rods on the first bracket 311 with the assembly holes of the airbag sleeve 420 one by one, not only the assembly error is avoided, but also the position deviation between the airbag sleeve 420 and the installation part 13 no longer occurs, which is stable and reliable.
[0047] Moreover, the airbag 200 is assembled to the installation part 13 of the strap structure 100 by using the airbag sleeve 420. The user can be stably worn on the part to be massaged through the strap structure 100. And, by making the airbag 200 externally disposed relative to the installation part 13 of the strap structure 100 through the airbag sleeve 420, the airbag 200 is no longer restricted by the tight wrapping of the strap structure 100 during the inflation and deflation process. The resistance received by the airbag 200 during the massage operation is reduced, and the massage effect of the airbag 200 expanding and contracting to massage the part to be massaged is improved, thereby improving the user experience.
[0048] In the wearable massager of the present application, the strap structure 100 includes a flexible body 10, and the flexible body 10 can be made of soft materials such as cloth and leather. The airbag sleeve 420 covering the airbag 200 is not only beautiful in appearance, but also the airbag sleeve 420 is generally formed by using a soft fabric, such as skin-friendly cloth and leather, so that the skin touch of the part to be massaged is more comfortable during the massage process, improving the user experience.
[0049] Such as Figure 2As shown in the figure, the wearable massager further includes a second bracket 312 and a cover 313. The second bracket 312 is disposed on the back skin side of the installation part 13. The second bracket 312 is connected to the first bracket 311. The installation part 13 is clamped between the first bracket 311 and the second bracket 312. The cover 313 is connected to the side of the second bracket 312 facing away from the installation part 13. The cover 313 and the second bracket 312 form an assembly space, and the power assembly 320 is installed in the assembly space. In this wearable massager, the cover 313 and the second bracket 312 are externally disposed on the back skin side of the installation part 13. Therefore, when the user wears the strap structure 100, the cover 313 and the second bracket 312 are far from the part to be massaged, so as not to cause squeezing discomfort to the part to be massaged. Moreover, the cover 313 and the second bracket 312 are externally disposed on the back skin side of the installation part 13, and the airbag sleeve 420 makes the airbag 200 externally disposed relative to the installation part 13 of the strap structure 100. In this way, the installation part 13 only needs a thin layer of cloth tape to meet the assembly requirements of the installation part 13, making the strap structure 100 as a whole thinner and lighter, and the wearable massager as a whole more portable.
[0050] As Figures 2 to 5 shown, the airbag 200 includes a flexible connection part 210, a first airbag structure 2001 and a second airbag structure 2002. The first airbag structure 2001 and the second airbag structure 2002 are respectively connected to both ends of the flexible connection part 210. The first airbag structure 2001 and the second airbag structure 2002 are symmetrically connected to both ends of the flexible connection part 210 with respect to the center line 131 of the flexible connection part 210. The first airbag structure 2001, the flexible connection part 210 and the second airbag structure 2002 are arranged in sequence along the length extension direction of the strap structure 100, so that the airbag 200 can fully massage the part to be massaged in a large range. When the airbag 200 is inflated, both the first airbag structure 2001 and the second airbag structure 2002 flip towards the direction close to the flexible connection part 210. That is, the ends of the first airbag structure 2001 and the second airbag structure 2002 far from the flexible connection part 210 approach each other. Thus, the first airbag structure 2001 and the second airbag structure 2002 perform squeezing massage operations on the part to be massaged in a coordinated manner. Since the first airbag structure 2001 and the second airbag structure 2002 are respectively connected to both ends of the flexible connection part 210, the squeezing massage of the first airbag structure 2001 and the second airbag structure 2002 on the part to be massaged can be coordinated. The massage action on the part to be massaged is similar to the massage action of human hands kneading. In this way, by repeatedly inflating and deflating, the part to be massaged of the user is repeatedly squeezed, massaged and relaxed, so that the muscles of the part to be massaged of the user are relaxed, feel comfortable, and the massage effect is improved.
[0051] As Figure 1 and Figure 2As shown, in the thickness direction of the strap structure 100, the cover body 313, the strap structure 100 and the airbag 200 are stacked, and the cover body 313 is used to support the airbag 200. As Figure 1 shown, the number of the cover bodies 313 is two, and the two cover bodies 313 are symmetrically arranged with respect to the midline 131 of the mounting part 13 perpendicular to the extending direction of the flexible body 10. One of the cover bodies 313 is correspondingly arranged with the position of the first airbag structure 2001 to support the first airbag structure 2001, and the other cover body 313 is correspondingly arranged with the position of the second airbag structure 2002 to support the second airbag structure 2002.
[0052] In the embodiment of the present application, both of the two cover bodies 313 are strip-shaped, and the extending direction of the length of the cover body 313 intersects with the extending direction of the length of the strap structure 100. Preferably, the extending direction of the length of the cover body 313 is perpendicular to the extending direction of the length of the strap structure 100. Moreover, the two cover bodies 313 are arranged at intervals. When the user wears the wearable massager, the first extension band 11 is connected to the second extension band 12, so that the flexible body 10 surrounds the part to be massaged of the user. Thus, the mounting part 13 between the two cover bodies 313 can be bent and deformed along with the circumferential contour shape of the part to be massaged of the user. Therefore, on the basis that the two cover bodies 313 together satisfy sufficient assembly space, the mounting part 13 can also be well adapted to and fit the part to be massaged of the user. That is to say, the part of the mounting part 13 vacated between the two cover bodies 313 arranged at intervals can be adaptively bent and deformed along with the contour shape of the part to be massaged of the user, so as to be tightly fitted to the contour of the part to be massaged of the user, thereby improving the comfort of the user wearing the wearable massager.
[0053] As Figure 2As shown, the power assembly 320 includes a solenoid valve 322 and an air pump 321. The solenoid valve 322 and the air pump 321 are connected through a pipeline. One end of the air pipe is connected to the solenoid valve 322, and the other end of the air pipe passes through the mounting portion 13 and is connected to the airbag 200. The power assembly 320 further includes a battery 323 and a circuit board 324. Among them, the air pump 321 and the battery 323 are two components with relatively large weights. Therefore, the air pump 321 and the battery 323 are respectively installed in the assembly spaces of the two cover bodies 313 to basically balance the assembly weights between the two cover bodies 313. And, the wearable massager of the present application is provided with two solenoid valves 322, and the two solenoid valves 322 are respectively installed in the assembly spaces of the two cover bodies 313 to further balance the assembly weights between the two cover bodies 313. The circuit board 324 can be flexibly installed according to actual installation requirements. It can be dispersedly installed in the assembly spaces of the two cover bodies 313, or can be centrally assembled in the assembly space of any one of the cover bodies 313. The battery 323 is electrically connected to the circuit board 324, the air pump 321 and the solenoid valve 322 are both electrically connected to the circuit board 324, and the air pump 321 is connected to the solenoid valve 322. One of the solenoid valves 322 is connected to the first airbag structure 2001, and the other solenoid valve 322 is connected to the second airbag structure 2002, thereby facilitating the laying of the connecting hose between the solenoid valve 322 and the airbag. And, the connecting wires electrically connecting the air pump 321 and the circuit board 324, the connecting wires electrically connecting the battery 323 and the circuit board 324, the connecting hose connecting the air pump 321 and the solenoid valve 322, and the connecting hose connecting the solenoid valve 322 and the airbag, etc., in addition to being laid and routed in the assembly space, can be laid and routed inside the mounting portion 13 according to actual connection requirements.
[0054] As Figure 1 and Figure 2 shown, the wearable massager further includes a control switch 330. The control switch 330 is arranged on the back skin side of the first extension band 11; alternatively, the control switch 330 is arranged on the back skin side of the second extension band 12. The control switch 330 is electrically connected to the circuit board 324 through a wire 340. When the control switch 330 is provided on the first extension band 11, the wire 340 is built into the first extension band 11; when the control switch 330 is provided on the second extension band 12, the wire 340 is built into the second extension band 12. This makes the wire 340 not exposed and appear messy, improving the overall appearance neatness and beauty of the wearable massager.
[0055] As Figure 2As shown, the wearable massager further includes a third bracket 440 and a fourth bracket 430. The third bracket 440 is connected to the mounting portion 13, and the fourth bracket 430 is connected to the airbag sleeve 420. The third bracket 440 is connected to the fourth bracket 430, and the flexible connection portion 210 is clamped between the third bracket 440 and the fourth bracket 430. The flexible connection portion 210 of the airbag 200 is connected to the airbag sleeve 420 through the third bracket 440 and the fourth bracket 430, thus completing the assembly of the airbag 200 to the strap structure 100 and improving the assembly efficiency of the airbag 200. Moreover, the flexible connection portion 210 is assembled and fixed by the third bracket 440 and the fourth bracket 430, thereby preventing the situation that when the first airbag structure 2001 and the second airbag structure 2002 are inflated and expanded, they will pull the flexible connection portion 210, causing a moving friction between the flexible connection portion 210 and the airbag sleeve 420, avoiding wear of the airbag 200 and the airbag sleeve 420, and improving the service life of the airbag 200 and the airbag sleeve 420.
[0056] As Figure 2 shown, in the embodiment of the present application, the third bracket 440 is located on the skin-friendly side of the mounting portion 13, and the fourth bracket 430 is located outside the airbag sleeve 420. The fourth bracket 430 passes through the airbag sleeve 420 and is connected to the third bracket 440 (alternatively, the third bracket 440 passes through the airbag sleeve 420 and is connected to the fourth bracket 430), and the flexible connection portion 210 and the airbag sleeve 420 are clamped between the third bracket 440 and the fourth bracket 430. In this way, the flexible connection portion 210 can be quickly installed by the fourth bracket 430 and the third bracket 440, that is, the airbag 200 can be quickly installed, improving the assembly efficiency.
[0057] Further, as Figure 2 shown, the wearable massager further includes an airbag pad 450. The airbag pad 450 is clamped and fixed to the mounting portion 13 by the fourth bracket 430 and the third bracket 440, and the airbag pad 450 is located between the skin-friendly side of the mounting portion 13 and the back-skin layer of the airbag sleeve 420. The airbag pad 450 separates the back-skin layer of the airbag sleeve 420 from the skin-friendly side of the mounting portion 13, protecting the back-skin layer of the airbag sleeve 420, reducing the friction between the back-skin layer of the airbag sleeve 420 and the skin-friendly side of the mounting portion 13 during the inflation and deflation of the airbag, delaying the wear rate of the airbag sleeve 420 and the mounting portion 13, and improving the service life.
[0058] As Figures 3 to 8As shown, both the first airbag structure 2001 and the second airbag structure 2002 include a first airbag 220 and a second airbag 230. That is, the airbags of the present application altogether have two first airbags 220 and two second airbags 230. Among them, the second airbag 230 is connected to the flexible connection part 210, and the first airbag 220 and the second airbag 230 are stacked. The two first airbags 220 are symmetrically connected to both ends of the flexible connection part 210 with respect to the flexible connection part 210, and the two second airbags 230 are symmetrically connected to both ends of the flexible connection part 210 with respect to the flexible connection part 210. The first airbag 220 is located on the skin-proximal side of the second airbag 230. When the airbag 200 is inflated, the second airbag 230 pushes the first airbag 220, causing the first airbag 220 to flip towards the direction close to the flexible connection part 210, so as to perform squeezing massage on the part to be massaged of the user. During the inflation process of the first airbag 220 and the second airbag 230, the inflated first airbag 220 and second airbag 230 both flip towards the direction close to the flexible connection part 210 with their connection positions with the flexible connection part 210 as the rotation fulcrums. Among them, when the first airbag 220 is inflated, it expands to form a first-level squeezing massage effect on the part to be massaged of the user. And when the second airbag 230 is inflated, it expands and will push the first airbag 220 to continue to squeeze the part to be massaged of the user again, thus forming a second-level squeezing massage effect on the part to be massaged of the user. In this way, during the process of repeated inflation and deflation of the airbag, the first airbag 220 and the second airbag 230 always work stably and coordinately with each other, performing squeezing massage on the part to be massaged of the user, just like the human hand kneading and massaging the part to be massaged, making the muscles of the part to be massaged of the user relaxed, feeling comfortable, and improving the massage effect.
[0059] As Figure 3 and Figure 4 shown, the widths of the first airbag structure 2001 and the second airbag structure 2002 gradually become narrower from the end connected to the flexible connection part 210 to their free ends. When the airbag 200 is inflated, the positions where the first airbag structure 2001 and the second airbag structure 2002 come into contact with the part to be massaged after inflation tend to their respective middle positions. Therefore, the design structure in which the widths of the first airbag structure 2001 and the second airbag structure 2002 gradually become narrower from the end connected to the flexible connection part 210 to their free ends is beneficial for the first airbag structure 2001 and the second airbag structure 2002 to expand rapidly, so that the first airbag structure 2001 and the second airbag structure 2002 quickly come into contact with the part to be massaged to perform the massage operation, improving the massage frequency, and thus enhancing the massage effect.
[0060] As Figure 4 and Figure 5As shown, the first end of the first airbag 220 is connected to the second airbag 230. That is, the connection between the first airbag 220 and the flexible connection part 210 is an indirect connection. Specifically, as Figure 5 and Figure 7 shown, the airbag further includes a connection part 222. The first end of the first airbag 220 is fixedly connected to the second airbag 230 through the connection part 222. Among them, the connection part 222 is formed during the hot pressing process of the first airbag 220 and the second airbag 230. The connection part 222 is provided with a ventilation hole 221, and the cavities of the first airbag 220, the second airbag 230, and the ventilation hole 221 are connected and communicated. In this way, the cavity of the first airbag 220 is connected to the cavity of the second airbag 230. During inflation, the first airbag 220 and the second airbag 230 are inflated or deflated simultaneously. Since the first airbag 220 and the second airbag 230 are inflated or deflated simultaneously, that is, the first airbag 220 and the second airbag 230 are inflated through a single hose, the number of hoses to be laid is reduced, the difficulty of laying hoses is reduced, and the cost is also reduced.
[0061] As Figure 4 and Figure 5 shown, the second airbag 230 and the flexible connection part 210 are formed by the first diaphragm 231 and the second diaphragm 232. The first diaphragm 231 and the second diaphragm 232 are stacked. As Figure 2 and Figure 6 shown, at some edges of the first diaphragm 231 and the second diaphragm 232, they are fixedly connected to form two edge connection parts 233, and at the non-edge parts of the first diaphragm 231 and the second diaphragm 232, they are fixedly connected to form two spaced first partition parts 234. Among them, an adjacent edge connection part 233 and a first partition part 234 are connected to form a second airbag 230, and another adjacent edge connection part 233 and another first partition part 234 are connected to form another second airbag 230. A flexible connection part 210 is formed between the two first partition parts 234. That is to say, the flexible connection part 210 and the second airbag 230 are an integrally formed whole component. Not only is the connection stability between the flexible connection part 210 and the second airbag 230 good, but also the hot pressing processing efficiency is high.
[0062] As Figure 4 and Figure 8As shown, the second airbag 230 is provided with a second partition portion 235. The second partition portion 235 divides the cavity of the second airbag 230 into a first cavity 236 and a second cavity 237. The first cavity 236 communicates with the second cavity 237, and the inflation amount of the second cavity 237 is greater than that of the first cavity 236. The airbag further includes an air nozzle 240. The air nozzle 240 is disposed in the first cavity 236 and communicates with the first cavity 236, and the air nozzle 240 is fixedly installed in the ventilation hole 221 of the connecting portion 222. During inflation, the air flow sequentially flows into the first cavity 236 and the second cavity 237. Moreover, the second partition portion 235 can limit the opening degree of the communication channel between the first cavity 236 and the second cavity 237, thereby restricting the air flow flowing from the first cavity 236 into the second cavity 237, so that the flow rate flowing into the second airbag 230 is less than the flow rate flowing into the first airbag 220. Thus, while the air nozzle 240 inflates and deflates the second airbag 230, it also inflates and deflates the first airbag 220, so that the repeated kneading massage of the user's part to be massaged has a distinct sense of hierarchy. That is, the first airbag 220 has a distinct sense of hierarchy in repeatedly squeezing and massaging the user's part to be massaged, and the effect of kneading massage on the user's part to be massaged is better, and the muscles of the user's part to be massaged are relaxed, improving the user's experience.
[0063] As Figure 2 and Figure 11 shown, the wearable massager further includes a lighting structure 600. The lighting structure 600 includes a light source assembly and a housing 640. The light source assembly is installed in the housing 640. The light source assembly is electrically connected to the circuit board 324, and the light emitted by the light source assembly can pass through the housing 640, and the emitted light either acts on the part to be massaged or provides decorative lighting. Since the fourth bracket 430 is located outside the skin-friendly layer of the airbag sleeve 420, the housing 640 is directly connected to the fourth bracket 430 to form a hollow internal space. Among them, as Figure 11 shown, the light source assembly includes a lamp board 610, a reflector 620, and a light guide member 630. The lamp board 610, the reflector 620, and the light guide member 630 are sequentially stacked along the light-emitting direction, and then the light source assembly is clamped and fixed in the housing 640 by connecting the housing 640 to the fourth bracket 430. When the lamp board 610 emits light and irradiates the light guide member 630, the light is refracted. Part of the light is refracted towards the light-transmitting member 650 for light emission, and the other part of the light is refracted onto the reflector 620. The reflector 620 reflects the light towards the light guide member 630 and / or the light-transmitting member 650, and a large proportion of the reflected light can emit light from the light-transmitting member 650, thereby reducing light loss and improving the light-emitting effect.
[0064] As Figure 2As shown, the wearable massager further includes a plurality of massage heads 530. The massage heads 530 are arranged on the skin-friendly layer of the airbag sleeve 420. When the airbag 200 is inflated and expanded, the massage heads 530 correspond one-to-one with the first airbag structure 2001 and the second airbag structure 2002. The massage heads 530 can directly abut against the part of the user to be massaged, that is, the airbag 200 pushes the massage heads 530 to press the part to be massaged. By directly acting on the part to be massaged through the massage heads 530, the intensity of the clamping massage is more obvious and the massage effect is better.
[0065] As Figure 3 , Figure 5 and Figure 6 As shown, on the side of the first airbag 220 facing away from the second airbag 230, there are massage protrusions 223, and the massage protrusions 223 are arranged in one-to-one correspondence with the massage heads 530. Therefore, when the airbag 200 is inflated, the airbag 200 expands and makes the massage protrusions 223 push the massage heads 530 one-to-one, so that the squeezing force and feeling of the massage heads 530 squeezing and massaging the part of the user to be massaged are more significant, the effect of kneading massage on the part of the user to be massaged is better, the muscles of the part of the user to be massaged are relaxed, and the user experience is improved.
[0066] As Figure 2 As shown, the wearable massager further includes a vibrator 520, and the vibrator 520 is arranged inside the massage head 530. While the airbag 200 performs kneading massage on the part to be massaged, the vibrator 520 is powered on and vibrates continuously, and the vibrator 520 drives the massage head 530 to vibrate continuously. Since the massage head 530 directly abuts against the part to be massaged, the massage head 530 performs continuous vibration massage on the part to be massaged. That is to say, while the wearable massager uses the airbag 200 to perform kneading massage on the part to be massaged, the massage head 530 always performs vibration massage on the part to be massaged, which further improves the massage effect of the wearable massager on the part to be massaged and further improves the user experience.
[0067] As Figure 2As shown, the wearable massager further includes a heating element 510, which is staggered with the massage head 530, and the heating element 510 is electrically connected to the circuit board 324. In some embodiments of the present application, the heating element 510 is disposed on the skin-near surface of the airbag cover 420. Alternatively, in other embodiments of the present application, the heating element 510 is disposed in the airbag cover 420 and is located between the airbag 200 and the skin-near layer of the airbag cover 420. There are two heating elements 510, and the two heating elements 510 are disposed one-to-one with the two first airbags 220. The heating elements 510 generate heat, which is attached to the massaged part through the outer surface of the airbag cover 420, so as to perform hot compress health care on the massaged part. In this way, the wearable massager not only uses the airbag 200 to perform kneading massage on the massage part and uses the vibrator 520 and the massage head 530 to perform vibration massage on the massage part, but also uses the heating element 510 to generate heat for hot compress on the massage part, so that the muscles of the massage part are further relaxed, further improving the user experience.
[0068] like Figure 2 As shown, in the embodiment of the present application, the first extension belt 11 and the second extension belt 12 are both equipped with a heating element 40, and the heating element 40 is electrically connected to the circuit board 324. In this way, after the binding structure is completed, the heating element 40 also surrounds the part to be massaged. While the airbag 200 squeezes and massages the part to be massaged, the heating element 40 generates heat, thereby performing hot compress health care on the part to be massaged, relaxing the muscles of the part to be massaged, and relieving the user's waist and abdomen discomfort.
[0069] In some other embodiments of the present application, only one of the first extension belt 11 and the second extension belt 12 is installed with a heating element 40. Moreover, when the user wears the strap structure, the heating element 40 needs to be close to the part to be massaged. That is, taking the example that only the first extension belt 11 is installed with a heating element 40, when the user wears the strap structure, the second extension belt 12 needs to be stacked on the back skin side of the first extension belt 11, so that the heating element 40 on the first extension belt 11 can be as close to the part to be massaged as possible.
[0070] like Figure 9As shown, the strap structure 100 further includes a sub - strap 30 and a buckle component 20. The sub - strap 30 includes a first sub - strap 301 and a second sub - strap 302. The first sub - strap 301 is provided on the first extension strap 11, and the second sub - strap 302 is provided on the second extension strap 12. The first end 31 of the first sub - strap 301 is connected to the second end of the first extension strap 11, and the first end 31 of the second sub - strap 302 is connected to the second end of the second extension strap 12. The buckle component 20 includes a first buckle component 201 and a second buckle component 202. The first buckle component 201 is close to the connection position between the first extension strap 11 and the mounting portion 13, and the second buckle component 202 is close to the connection position between the second extension strap 12 and the mounting portion 13. The second end 32 of the first sub - strap 301 passes through the first buckle component 201, and the second end 32 of the second sub - strap 302 passes through the second buckle component 202. The first sub - strap 301 can slide relative to the first buckle component 201 so that the second end of the first extension strap 11 approaches or moves away from the mounting portion 13, and the second sub - strap 302 can slide relative to the second buckle component 202 so that the second end of the second extension strap 12 approaches or moves away from the mounting portion 13. Thus, when the first extension strap 11 and the second extension strap 12 are connected and the strap structure is initially stabilized at the part to be massaged, the user pulls the second end 32 of the first sub - strap 301, which causes the first sub - strap 301 to slide relative to the first buckle component 201 and the second end of the first extension strap 11 to approach the mounting portion 13. When the user pulls the second end 32 of the first sub - strap 301, the user also pulls the second end 32 of the second sub - strap 302 at the same time. Thus, the overall length of the strap structure is adjusted to better adapt to the girth of the part to be massaged, and the strap structure 100 can be bound to the part to be massaged according to the girth of the part to be massaged. When the second end of the first extension strap 11 moves away from the mounting portion 13 and the second end of the second extension strap 12 moves away from the mounting portion 13, if the user releases the second end 32 of the first sub - strap 301 and the second end 32 of the second sub - strap 302, the strap structure releases the part to be massaged.
[0071] Preferably, both the buckle component 20 and the sub - strap 30 are located on the back - skin side of the flexible body 10. That is, the first sub - strap 301 is on the back - skin side of the first extension strap 11, the second sub - strap 302 is on the back - skin side of the second extension strap 12, and both the first buckle component 201 and the second buckle component 202 are on the back - skin side of the mounting portion 13. In this way, when the user wears the strap structure, it will be more convenient and easier for the user to pull the second end 32 of the first sub - strap 301 and the second end 32 of the second sub - strap 302 respectively, improving the convenience of the adjustment operation.
[0072] Such as Figure 9 and Figure 10As shown, both the first extension band 11 and the second extension band 12 are provided with an inner sleeve space (not shown) and an opening 15 near the mounting portion 13. The first buckle member 201 is connected to the first extension band 11 and is located within the inner sleeve space of the first extension band 11. The portion from the first end 31 of the first sub-band 301 to the first buckle member 201 is located within the inner sleeve space of the first extension band 11, and the second end 32 of the first sub-band 301 passes through the opening 15 of the first extension band 11. That is, in the strap structure provided in this application, both the first buckle member 201 and a part of the first sub-band 301 are hidden and assembled within the inner sleeve space of the first extension band 11, while the second end 32 of the first sub-band 301 passes through the opening 15 to the outside of the inner sleeve space, so as to facilitate the user to perform a pulling operation on the second end 32 of the first sub-band 301, thereby conveniently and quickly adjusting the overall length of the strap structure, enabling the strap structure to be more comfortably bound to the part to be massaged. Further, the second buckle member 202 is connected to the second extension band 12 and is located within the inner sleeve space of the second extension band 12. The portion from the first end 31 of the second sub-band 302 to the second buckle member 202 is located within the inner sleeve space of the second extension band 12, and the second end 32 of the second sub-band 302 passes through the opening 15 of the second extension band 12. That is, in the strap structure provided in this application, both the second buckle member 202 and a part of the second sub-band 302 are hidden and assembled within the inner sleeve space of the second extension band 12, while the second end 32 of the second sub-band 302 passes through the opening 15 to the outside of the inner sleeve space, so as to facilitate the user to perform a pulling operation on the second end 32 of the second sub-band 302, thereby conveniently and quickly adjusting the overall length of the strap structure, enabling the strap structure to be more comfortably bound to the part to be massaged.
[0073] As Figure 9As shown in the figure, both the first buckle member 201 and the second buckle member 202 include a connecting band 21 and a buckle 22. Among them, the connecting band 21 has self-adaptive elastic properties. The buckle 22 is connected to the connecting band 21. The connecting band 21 of the first buckle member 201 is sewn to the first end of the first extension band 11. The second end portion 32 of the first sub-band 301 passes through the buckle 22 of the first buckle member 201 and then turns and exits from the opening 15 of the first extension band 11; the connecting band 21 of the second buckle member 202 is sewn to the first end of the second extension band 12. The second end portion 32 of the second sub-band 302 passes through the buckle 22 of the second buckle member 202 and then turns and exits from the opening 15 of the second extension band 12. When the user pulls the second end portions 32 of the first sub-band 301 and the second sub-band 302, the buckle 22 of the first buckle member 201 moves in a direction away from the first end of the first extension band 11. Since the connecting band 21 has self-adaptive elastic properties, the connecting band 21 is stretched, and then drives the first end of the first extension band 11 to move in a direction close to the second end. Part of the area of the first extension band 11 is stacked together, and the length of the first extension band 11 is shortened; the buckle 22 of the second buckle member 202 moves in a direction away from the first end of the second extension band 12. Since the connecting band 21 has self-adaptive elastic properties, the connecting band 21 is stretched, and then drives the first end of the second extension band 12 to move in a direction close to the second end. Part of the area of the second extension band 12 is stacked together, and the length of the second extension band 12 is shortened. In this way, the surrounding length of the strap structure is shortened, thereby tightening the strap structure. When the second end portion 32 of the first sub-band 301 is released, the buckle 22 of the first buckle member 201 moves in a direction close to the first end of the first extension band 11. The connecting band 21 can return to the initial state or the stretched length becomes smaller, thereby driving the first end of the first extension band 11 to move in a direction away from the second end. The length of the first extension band 11 becomes longer or returns to the unfolded state; when the second end portion 32 of the second sub-band 302 is released, the buckle 22 of the second buckle member 202 moves in a direction close to the first end of the second extension band 12. The connecting band 21 can return to the initial state or the stretched length becomes smaller, thereby driving the first end of the second extension band 12 to move in a direction away from the second end. The length of the second extension band 12 becomes longer or returns to the unfolded state. In this way, the surrounding length of the strap structure is lengthened, thereby loosening the strap structure.
[0074] When the strap structure is bound to the part of the user to be massaged, due to the self-adaptive elastic properties of the connecting band 21, it can achieve self-adaptive adjustment when the part to be massaged has a perimeter change during the user's breathing, so that the strap structure can always be comfortably and stably bound to the part of the user to be massaged.
[0075] In some embodiments of the present application, the connecting band 21 of the first buckle member 201 may be sewn to the mounting portion 13 at one end and extend into the inner sleeve space of the first extension band 11 at the other end, that is, the buckle 22 is located within the inner sleeve space of the first extension band 11. Similarly, the connecting band 21 of the second buckle member 202 may be sewn to the mounting portion 13 at one end and extend into the inner sleeve space of the second extension band 12 at the other end, that is, the buckle 22 is located within the inner sleeve space of the second extension band 12.
[0076] As Figure 9 shown, the first extension band 11 is provided with a first connecting member 16. As Figure 9 shown, the second extension band 12 is provided with a second connecting member 17. The second connecting member 17 can be detachably connected to the first connecting member 16 to be worn around the part to be massaged. In this way, the strap structure provided by the present application uses a connecting member to conveniently and quickly connect the first extension band 11 and the second extension band 12, so as to quickly complete the connection of the first extension band 11 and the second extension band 12 to surround the part to be massaged, so that the strap structure is initially stabilized on the part to be massaged. When it is necessary to loosen the strap structure from the part to be massaged, first loosen the first sub-band 301 and the second sub-band 302, and then unfasten the first connecting member 16 and the second connecting member 17, so as to remove the strap structure from the part to be massaged.
[0077] Preferably, the first connecting member 16 and the second connecting member 17 include but are not limited to matching magic tapes. In some other embodiments, the first connecting member 16 and the second connecting member 17 may also be matching snap fasteners. In this way, the first connecting member 16 and the second connecting member 17 can be quickly connected and can be quickly unfastened.
[0078] As Figure 9 shown, the first sub-band 301 is provided with a third connecting member 33, and the third connecting member 33 can be detachably connected to the first connecting member 16 or the second connecting member 17. Further, as Figure 9 shown, the second sub-band 302 is provided with a fourth connection, and the fourth connecting member 34 can be detachably connected to the first connecting member 16 or the second connecting member 17. In this way, when the user pulls the second end portion 32 of the first sub-band 301, the portion of the first sub-band 301 from the first buckle member 201 to the second end portion 32 can be connected to the first connecting member 16 or the third connecting member 33 can be connected to the second connecting member 17, so as to quickly fix the first sub-band 301 that has been pulled to an appropriate degree. Similarly, when the user pulls the second end portion 32 of the second sub-band 302, the portion of the second sub-band 302 from the second buckle member 202 to the second end portion 32 can be connected to the first connecting member 16 or the fourth connecting member 34 can be connected to the second connecting member 17, so as to quickly fix the second sub-band 302 that has been pulled to an appropriate degree.
[0079] In some embodiments of the present application, a third connecting member 33 is provided on the first sub-band 301, a fourth connecting member is provided on the second sub-band 302, and the third connecting member 33 is detachably connected to the fourth connecting member 34. In this embodiment, when the user pulls the second ends 32 of the first sub-band 301 and the second sub-band 302, at this time, the third connecting member 33 on the first sub-band 301 is connected to the fourth connecting member 34 on the second sub-band 302, so that the first sub-band 301 and the second sub-band 302 that are pulled to an appropriate degree are quickly fixed at the same time.
[0080] Since the flexible body 10 is made of soft materials such as cloth and leather, it can better fit the skin of the part to be massaged, be skin-friendly and comfortable. Moreover, the flexible body 10 can be folded and stored, and the overall volume is small after folding, which is convenient to carry.
[0081] In the wearable massager, as Figure 1 and Figure 2 shown, the wearable massager further includes two flexible decorative layers 410. The two flexible decorative layers 410 are arranged in one-to-one correspondence with one of the cover bodies 313 and the other cover body 313. The flexible decorative layer 410 is mounted on the back skin side of the mounting portion 13. By covering and decorating the mounting portion 13 with the flexible decorative layer 410, the through holes opened on the mounting portion 13 for the need of assembling the housing and the assembly gap between the mounting portion 13 and the second bracket 312 are covered by the flexible decorative layer 410, making the whole mounting portion 13 neat and beautiful. Moreover, the flexible decorative layer 410 can be bent and deformed together with the mounting portion 13 to ensure that the mounting portion 13 can always fit the part to be massaged of the user. Further, decorative patterns can be provided on the outer surface of the flexible decorative layer 410 to make the overall appearance of the wearable massager more beautiful. As Figure 2 shown, the flexible decorative layer 410 is provided with an avoidance opening 411. The avoidance opening 411 is arranged opposite to the open end of the second bracket 312, so as to prevent the flexible decorative layer 410 from interfering with the installation of the power assembly 320 into the assembly space. And the circumferential edge area of the avoidance opening 411 covers the open edge of the second bracket 312. In this way, when the cover body 313 is covered on the open end of the second bracket 312, the open edge of the cover body 313 and the open edge of the second bracket 312 clamp and fix the circumferential edge of the avoidance opening 411, so that the circumferential edge of the avoidance opening 411 will not turn outwards, keeping the overall appearance of the wearable massager neat and beautiful.
[0082] The above are only the preferred embodiments of the present application and are not intended to limit the present application. Any modifications, equivalent replacements, and improvements made within the spirit and principle of the present application shall be included in the protection scope of the present application.
Claims
1. A wearable massager, characterized in that, Comprising: A strap structure including a flexible body which includes a mounting portion, a first extension strap and a second extension strap. The first extension strap and the second extension strap are respectively connected to two ends of the mounting portion, and are detachably connected to each other to be worn around a part to be massaged. An airbag and an airbag cover. The airbag cover has a skin-friendly layer and a back-skin layer. The skin-friendly layer and the back-skin layer are connected to form a receiving cavity, and the airbag is disposed in the receiving cavity of the airbag cover. A first bracket disposed in the airbag cover. The first bracket passes through the back-skin layer and is connected to the mounting portion, and the back-skin layer is clamped between the first bracket and the mounting portion. And, A power assembly and an air tube. The power assembly is mounted on the first bracket and is located on the back-skin side of the mounting portion. One end of the air tube is communicated with the power assembly, and the other end of the air tube sequentially passes through the mounting portion, the back-skin side and the first bracket and is communicated with the airbag. The power assembly provides power for the inflation and deflation of the airbag.
2. The wearable massager according to claim 1, wherein the wearable massager further includes a second bracket and a cover body. The second bracket is disposed on the back-skin side of the mounting portion, and the second bracket is connected to the first bracket. The mounting portion is clamped between the first bracket and the second bracket. The cover body is connected to a side of the second bracket away from the mounting portion, and the cover body and the second bracket form an assembly space, and the power assembly is mounted in the assembly space.
3. The wearable massager according to claim 2, wherein in the thickness direction of the strap structure, the cover body, the strap structure and the airbag are stacked, and the cover body is used to support the airbag.
4. The wearable massager according to any one of claims 1-3, wherein the power assembly includes a solenoid valve and an air pump. The solenoid valve and the air pump are connected by a pipeline. One end of the air tube is communicated with the solenoid valve, and the other end of the air tube passes through the mounting portion and is communicated with the airbag.
5. The wearable massager according to claim 1, wherein the airbag includes a flexible connection portion, a first airbag structure and a second airbag structure. The first airbag structure and the second airbag structure are respectively connected to two ends of the flexible connection portion. The first airbag structure, the flexible connection portion and the second airbag structure are arranged in sequence along the length extension direction of the strap structure. The wearable massager further includes a third bracket and a fourth bracket. The third bracket is connected to the mounting portion, and the fourth bracket is connected to the airbag cover. The third bracket is connected to the fourth bracket, and the flexible connection portion is clamped between the third bracket and the fourth bracket.
6. The wearable massager according to claim 5, wherein The third bracket is located on the skin-close side of the mounting part, the fourth bracket is located outside the airbag sleeve, the fourth bracket is connected to the third bracket, and the flexible connecting part and the airbag sleeve are clamped between the third bracket and the fourth bracket.
7. The wearable massager according to claim 5 or 6, wherein the wearable massager further includes a lighting structure, the lighting structure includes a light source assembly and a housing, the light source assembly is installed in the housing, and the light emitted by the light source assembly can pass through the housing, and the housing is connected to the fourth bracket.
8. The wearable massager according to any one of claims 1-3, wherein the wearable massager further includes a plurality of massage heads, the massage heads are arranged on the skin-close layer, and when the airbag is inflated, the airbag pushes the massage heads to press the part to be massaged.
9. The wearable massager according to claim 8, wherein the wearable massager further includes an oscillator, and the oscillator is arranged in the massage head.
10. The wearable massager according to any one of claims 1-3, wherein the wearable massager further includes a heating element; the heating element is arranged on the surface of the skin-close layer; or, the heating element is arranged in the airbag sleeve and is located between the airbag and the skin-close layer.