Air bag type temple massage structure

By introducing a support component into the airbag-type temple massager, the problem of excessive collapse or shrinkage of the airbag without repositioning is solved, resulting in a more stable and comfortable massage effect.

CN224085692UActive Publication Date: 2026-04-07SHENZHEN DATOUREN IND CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-26
Publication Date
2026-04-07

AI Technical Summary

Technical Problem

Existing airbag-type temple massagers suffer from reduced massage effectiveness or discomfort due to excessive collapse or non-repositioning of the airbags.

Method used

Design an airbag-type temple massage structure, including a main unit, a suspension sleeve, an airbag, and a support assembly. The support assembly consists of a fixing member and a support plate. The support assembly is used to support the inflation and deflation of the airbag and prevent the airbag from collapsing excessively or shrinking without returning to its original position.

Benefits of technology

It effectively prevents excessive collapse or shrinkage of the airbag without proper recovery, improving the stability and comfort of the massage effect, ensuring consistency of the massage effect and a comfortable user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of massage, in particular to an air bag type temple massage structure which comprises a main machine and a massage assembly connected with the main machine, the massage assembly comprises a hanging sleeve connected with the main machine, an air bag connected with the hanging sleeve and a supporting assembly connected with the hanging sleeve and the air bag, and the supporting assembly is used for supporting the air bag to be inflated and deflated. By arranging the supporting assembly connected with the hanging sleeve and the air bag, the air bag cannot sink towards the interior of the hanging sleeve when contracting, guiding and supporting are provided for the air bag when the air bag expands, and the situation that the air bag excessively collapses or cannot be reset is prevented; the problem that according to an existing air bag type temple massage instrument, the massage effect is reduced or discomfort is generated due to the fact that an air bag excessively collapses or the air bag shrinks and is not reset is solved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to massage field, concretely is a kind of air bag type temple massage structure. BACKGROUND

[0002] Air bag type temple massage instrument is a kind of air bag technology to human temple part is massaged instrument, this air bag type temple massage instrument is generally provided with air bag, when user starts massage instrument, internal motor starts work, drive air bag and inflate or deflate, with the expansion and contraction of air bag, they will exert pressure on temple part, and massage.

[0003] Since this air bag type temple massage instrument is driven by the expansion and contraction of air bag by motor, in the expansion and contraction process of air bag, air bag is prone to excessive collapse or air bag concave resetless, thereby leading to reduced massage effect or discomfort, therefore, a kind of air bag type temple massage structure needs to be developed to solve the problem of reduced massage effect or discomfort caused by excessive collapse of air bag or air bag concave resetless of existing air bag type temple massage instrument. SUMMARY

[0004] In view of the above-mentioned problem of the existing air bag type temple massage instrument that is prone to excessive collapse of air bag or air bag concave resetless, the utility model solves its technical problems by adopting the technical scheme of:

[0005] An air bag type temple massage structure, comprising a host computer, a massage assembly connected to the host computer, the massage assembly comprising a suspension sleeve connected to the host computer, an air bag connected to the suspension sleeve, and a support assembly connecting the suspension sleeve and the air bag, the support assembly is used to support the air bag inflation and deflation to prevent the air bag from excessive collapse or concave resetless.

[0006] Further, the support assembly comprises a fixing member connected to the suspension sleeve, a support plate connected to the fixing member and the air bag, one side of the support plate is connected to the fixing member, and the other side is connected to the air bag.

[0007] Further, one side of the suspension sleeve is provided with a first cavity for mounting the fixing member, the shape and size of the first cavity are matched with the shape and size of the fixing member, so that the fixing member is connected and fixed in the first cavity.

[0008] Further, the fixing member is provided with a first groove, one side of the support plate connected to the fixing member is provided with a first clamping hook, the first groove bottom is provided with a first mounting hole for the first clamping hook to extend into, and a first mounting portion matched with the first clamping hook for cooperation and connection, and the support plate is provided with a second cavity for mounting the air bag.

[0009] Further, the air bag is provided with a first extension part on the side connected with the support plate, the first extension part is provided with an air passage for air to enter or exit the air bag, the main machine is provided with a motor for controlling the expansion and contraction of the air bag, and the first extension part is connected with the motor through a pipeline.

[0010] Further, the suspension sleeve is provided with a second extension part on the side connected with the main machine, the second extension part is provided with a second matching part, the main machine is provided with a first support and a second support connected with the first support, the first support is provided with a first counterbore, the second support is provided with a first protrusion matched and connected with the first counterbore, and the first counterbore and the first protrusion jointly form a third cavity matched and connected with the second matching part.

[0011] Further, the massage assembly comprises a locking block sleeved outside the second extension part, locking pieces connected with the first support and the second matching part respectively on two sides, the locking block is connected with the second support and the suspension sleeve respectively on two sides, and the second support is provided with a second protrusion connected with the side surface of the locking block.

[0012] Further, the side surface of the first protrusion is provided with a third protrusion, and the second matching part is provided with a second groove matched and connected with the third protrusion.

[0013] Further, the massage assembly further comprises an air bag cover connected with the suspension sleeve, the suspension sleeve is provided with a third groove, the air bag cover is provided with a third extension part matched and connected with the third groove, the third extension part is connected with the third groove and the support plate respectively on two sides and forms an extension and contraction cavity with the support plate, the air bag is located in the extension and contraction cavity, and the cross-sectional shape of the air bag cover is in the shape of an arc.

[0014] Further, the suspension sleeve is made of elastic material, the first cavity is provided with a third fixing part, the support plate is provided with a fourth fixing hole, one side of the fixing piece is provided with a third fixing hole matched and connected with the third fixing part, and the other side of the fixing piece is provided with a fourth fixing part matched and connected with the fourth fixing hole.

[0015] The beneficial effects of the utility model are as follows:

[0016] The utility model discloses a support assembly connected with the suspension sleeve and the air bag, so that the air bag cannot be recessed into the suspension sleeve when being contracted, and the air bag is provided with guidance and support when being expanded, so that the air bag is prevented from excessive collapse or from being unable to reset, and the problem that the massage effect is reduced or discomfort is caused due to excessive collapse of the air bag or the air bag being recessed and being unable to reset in the existing air bag type temple massage instrument is solved. DRAWINGS

[0017] Figure 1This is a schematic diagram of an airbag-type temple massage structure according to the present invention.

[0018] Figure 2 This is a partial cross-sectional view of an airbag-type temple massage structure according to the present invention.

[0019] Figure 3 This is a partial enlarged view A of an airbag-type temple massage structure according to the present invention.

[0020] Figure 4 This is a schematic diagram of the structure of a massage component of an airbag-type temple massage structure according to this utility model.

[0021] Figure 5 This is an exploded view of a massage component of an airbag-type temple massage structure according to this utility model.

[0022] Figure 6 This is a cross-sectional view of a massage component of an airbag-type temple massage structure according to this utility model.

[0023] Figure 7 This is an exploded view of an airbag-type temple massage structure according to the present invention.

[0024] Figure 8 This is a schematic diagram of the fixing component of an airbag-type temple massage structure according to this utility model.

[0025] Figure 9 This is a schematic diagram of the support plate of an airbag-type temple massage structure according to this utility model.

[0026] Figure 10 This is a cross-sectional view showing the connection between the first and second supports of an airbag-type temple massage structure according to this utility model. Detailed Implementation

[0027] The embodiments of this utility model will now be described in detail with reference to the accompanying drawings. The described embodiments are merely some, not all, of the embodiments of this utility model. All other embodiments obtained by those skilled in the art based on the embodiments of this utility model without inventive effort are within the scope of protection of this utility model.

[0028] It should be noted that all directional indicators (such as up, down, left, right, front, back, etc.) in this utility model embodiment are only used to explain the relative positional relationship and movement of each component in a certain specific posture (as shown in the figure). If the specific posture changes, the directional indicator will also change accordingly.

[0029] Furthermore, the use of terms such as "first" and "second" in this utility model is for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of technical features indicated. Therefore, a feature defined as "first" or "second" may explicitly or implicitly include at least one of that feature. Additionally, the technical solutions of the various embodiments can be combined with each other, but only on the basis of being achievable by those skilled in the art. When the combination of technical solutions is contradictory or impossible to implement, such a combination of technical solutions should be considered non-existent and not within the scope of protection claimed by this utility model.

[0030] Please refer to Figures 1 to 10 The aforementioned airbag-type temple massage structure includes a main unit 1 and a massage component 2 connected to the main unit 1. The massage component 2 includes a suspension sleeve 21 connected to the main unit 1, an airbag 22 connected to the suspension sleeve 21, and a support component 23 connecting the suspension sleeve 21 and the airbag 22. The support component 23 is used to support the inflation and deflation of the airbag 22 to prevent the airbag 22 from collapsing excessively or shrinking without returning to its original position.

[0031] In this invention, the suspension sleeve 21 is connected to the main unit 1 and protrudes from the surface of the main unit 1. The suspension sleeve 21 is used to install the support assembly 23 and the airbag 22. The protrusion of the suspension sleeve 21 from the surface of the main unit 1 allows the airbag 22 to more effectively contact the temple area, thus providing a better massage effect. The airbag 22 directly acts on the temple area, massaging it through inflation and deflation. Furthermore, in existing airbag massagers, a clamping force may exist between the airbag and the temple area. When the airbag deflates and contracts, this clamping force applies pressure to the airbag, causing it to shift from its preset position during contraction, thus preventing it from returning to its original position. Similarly... Under the suction of the motor, the airbag may continue to collapse into the suspension sleeve, causing excessive deformation and preventing it from effectively massaging the temple area. Therefore, by setting a support component 23 connecting the suspension sleeve 21 and the airbag 22, excessive collapse of the airbag 22 can be prevented when it deflates, and smooth return to its original position when it is inflated. Furthermore, the support component 23 provides support for the airbag 22 when it is inflated, allowing it to expand in a preset direction, thereby providing a good massage effect and a comfortable massage experience for the user. Therefore, the design of the support component 23 can provide support and fixation for the airbag 22, preventing excessive collapse or failure to return to its original position, effectively improving the reliability of the structure, as well as the stability and comfort of the massage.

[0032] Furthermore, the support component 23 is located between the suspension sleeve 21 and the airbag 22. One side of the support component 23 is connected to the suspension sleeve 21, and the other side is connected to the airbag 22, serving a fixing and connecting function. When the airbag 22 deflates and contracts, the support component 23 can support the airbag 22 to prevent it from collapsing towards the suspension sleeve 21. When the airbag 22 inflates, the support component 23 can provide support and guidance for the airbag 22, causing it to expand in a preset direction, thereby effectively providing a massage effect. If the massage structure does not have the support component 23, the airbag 22 will not receive support when deflating and contracting, and will continue to collapse into the suspension sleeve 21 under the suction force generated by the motor, thus failing to effectively produce a massage effect. Therefore, the support component 23 can effectively improve the situation of excessive collapse and non-recovery of the airbag 22.

[0033] Furthermore, the support assembly 23 includes a fixing member 231 connected to the suspension sleeve 21 and a support plate 232 connected to the fixing member 231 and the airbag 22. One side of the support plate 232 is connected to the fixing member 231, and the other side is connected to the airbag 22.

[0034] In this invention, the fixing member 231 serves as the connecting hub between the support assembly 23 and the suspension sleeve 21. The fixing member 231 is connected to the suspension sleeve 21, while the support plate 232 is connected and fixed to the fixing member 231. Therefore, the fixing member 231 ensures that the support assembly 23 and the suspension member 21 are firmly connected and will not loosen or shift during the massage process. The support plate 232 is the component in the support assembly 23 that provides support for the airbag 22. One side of it is connected to the fixing member 231, and the other side is connected to the airbag 22. When the airbag 22 is inflated, the support plate 232 can support the airbag 22 to expand it in a preset direction, ensuring effective massage of the temples and precise pressure control. When the airbag 22 is deflated, the support plate 22 can prevent the airbag 22 from collapsing excessively, maintaining its basic shape and ensuring that it can be smoothly reset when inflated again, thereby ensuring the consistency and stability of the massage effect.

[0035] Furthermore, the fixing member 231 can be made of high-strength, wear-resistant plastic or metal to ensure the reliability of the connection and the stability of long-term use, while the supporting member 232 can be made of materials with a certain degree of elasticity and strength, such as elastic metal sheets, high-strength elastic plastic plates, etc., which can provide the necessary support force during the inflation and deflation of the airbag 22, and can also undergo elastic deformation to a certain extent with the deformation of the airbag 22, without affecting the normal massage action of the airbag 22.

[0036] Furthermore, the suspension sleeve 21 has a first cavity 211 on one side for installing the fixing member 231. The shape and size of the first cavity 211 match the shape and size of the fixing member 231 so that the fixing member 231 is connected and fixed in the first cavity 211.

[0037] This invention features a first cavity 211 on one side of the suspension sleeve 21 for mounting the fastener 231. The cavity 211's shape and size precisely match the fastener 231. This design significantly improves the ease and accuracy of fastener 231 installation. During production and assembly, workers can quickly and accurately place the fastener 231 into the first cavity 211 without complex positioning operations, reducing assembly time and errors, and effectively improving production efficiency. Furthermore, the fastener 231 is fixedly connected to the first cavity 211. This design not only ensures the stability of the fastener 231 during initial installation but also prevents it from easily detaching from the first cavity 211 even under vibration, tension, or other external forces during long-term use. This ensures the stability and reliability of the connection between the support assembly 23 and the suspension sleeve 21. In addition, the fastener 231 located in the first cavity 211 provides support for the suspension 21, ensuring its deformation is within a controllable range and preventing excessive deformation that could lead to massage structure failure. This effectively improves the structural stability and reliability of the massage structure.

[0038] Furthermore, the fixing member 231 is provided with a first groove 2311, and the side of the support plate 232 connected to the fixing member 231 is provided with a first hook 2321. The bottom of the first groove 2311 is provided with a first mounting hole 23111 for the first hook 2321 to extend into, and a first mounting part 23112 that cooperates with the first hook 2321. The support plate 232 is provided with a second cavity 2322 for installing the airbag 22.

[0039] In this invention, the first groove 2311 on the fixing member 231 provides space and a connection base for the installation of the support plate 232. The bottom of the first groove 2311 is provided with a first mounting hole 23111 and a first mounting part 23112. The first mounting hole 23111 allows a first hook 2321 on one side of the support plate 232 to extend into it. During assembly, the first hook 2321 can enter the first groove 2311 through the first mounting hole 23111. The first mounting part 23112 is the part that mates with the first hook 2321. The first mounting part 23112 can be a groove or protrusion that matches the shape of the first hook 2321, ensuring the connection between the support plate 232 and the fixing member. The secure connection between the components 231 allows the first hook 2321 to pass through the first mounting hole 23111 and engage tightly with the first mounting part 23112, preventing the support plate 232 from accidentally detaching from the fixing component 231. This enhances the stability and reliability of the connection. Furthermore, the second cavity 2322 is mounted on the support plate 232 for mounting the airbag 22. The second cavity 2322 provides mounting space for the airbag 22, ensuring that the airbag 22 maintains the correct position and shape during operation. When the airbag 22 is inflated or deflated, it can better achieve the massage function for the temples, reducing the possibility of the airbag 22 shifting position or loosening connection, effectively improving the integrity of the massage structure and ensuring the massage effect of the massage structure.

[0040] Specifically, in some embodiments, there are multiple first hooks 2321, and each first hook 2321 corresponds one-to-one with the first mounting hole 23111 and the first mounting part 23112. Multiple first hooks 2321 are evenly distributed on the fixing member 231. This design can further improve the connection stability between the fixing member 231 and the support plate 232, evenly distribute the force on the first hooks 2321, and effectively improve the structural strength and service life.

[0041] Furthermore, the side of the airbag 22 connected to the support plate 232 is provided with a first extension 221. The first extension 221 is provided with an air passage 2211 for air to enter and exit the airbag 22. The main unit 1 is provided with a motor for controlling the expansion and contraction of the airbag 22. The first extension 221 is connected to the motor through a pipe.

[0042] In this invention, the first extension 221 is located on the side where the airbag 22 connects to the support plate 232. It ensures that the airbag 22 is effectively connected to the motor inside the main unit 1. Specifically, the fixing member 231, the support plate 232, and the suspension sleeve 21 are all provided with air passage holes through which the first extension 221 passes, so that the first extension 221 can connect to the motor inside the main unit 1. The motor can control the expansion and contraction of the airbag 22. The motor drives an air pump or other gas delivery device to deliver gas to the airbag 22 through the pipe and air passage 2211, thereby inflating the airbag 22. Conversely, the gas inside the airbag 22 can also be extracted to deflate the airbag 22. In summary, the combination of these technical features ensures the functionality, reliability, and ease of use of the airbag-type temple massage structure, enabling the massager to effectively massage the temples and to be flexibly adjusted and controlled according to the user's needs, providing the user with a comfortable and effective massage experience.

[0043] Furthermore, the side of the suspension sleeve 21 connected to the host 1 is provided with a second extension 212, the second extension 212 is provided with a second mating part 2121, the host 1 is provided with a first bracket 3 and a second bracket 4 connected to the first bracket 3, the first bracket 3 is provided with a first countersunk hole 31, the second bracket 4 is provided with a first protrusion 41 that mates with the first countersunk hole 31, the first countersunk hole 31 and the first protrusion 41 together form a third cavity 5 that mates with the second mating part 2121.

[0044] In this invention, the second extension 212 is located on the side where the suspension sleeve 21 connects to the main unit 1. It provides additional support and positioning for the connection between the suspension sleeve 21 and the main unit 1, ensuring that the suspension sleeve 21 is stably connected to the main unit 1. Even when subjected to various external forces during use, it maintains a stable relative position. Furthermore, the first bracket 3 and the second bracket 4 are part of the main unit 1, used to support and connect other components. The first bracket 3 has a first countersunk hole 31, a recessed structure that provides space and a positioning reference for cooperation with the second bracket 4. Correspondingly, the second bracket 4 has a first protrusion 41 that mates with the first countersunk hole 31. The first countersunk hole 31 and the first protrusion 41 can be circular, square, or other shapes. The first countersunk hole 31 mainly accommodates the first protrusion 41 and together with the first protrusion 41 forms a mating part 21. The third cavity 5 provides a space for the suspension sleeve 21 to be securely connected to the host 1. Specifically, the second bracket 4 should have a connecting hole through which the second extension 212 passes, so that the second mating part 2121 of the second extension 212 can smoothly pass through the connecting hole and enter the third cavity 5, thereby achieving the connection and fixation between the suspension sleeve 21 and the host 1. In summary, the cooperation between the second extension 212 and its second mating part 2121 and the third cavity 5 formed by the first bracket 3 and the second bracket 4 greatly enhances the connection stability between the suspension sleeve 21 and the host 1. Furthermore, during assembly, the relative positioning and connection of the first bracket 3 and the second bracket 4 can be achieved by utilizing the cooperation of the first countersunk hole 31 and the first protrusion 41, and then the second mating part 2121 can be inserted into the third cavity 5 to achieve the connection between the suspension sleeve 21 and the host 1. This connection method effectively improves the ease of assembly and facilitates assembly operations during the production process.

[0045] Furthermore, the massage component 2 includes a locking block 24 sleeved on the outside of the second extension 212 and locking pieces 25 connected to the first bracket 3 and the second mating part 2121 on both sides respectively. The locking block 24 is connected to the second bracket 4 and the suspension sleeve 21 on both sides respectively. The second bracket 4 is provided with a second protrusion 311 connected to the side of the locking block 24.

[0046] In this invention, the locking block 24 is sleeved on the outside of the second extension 212. The two sides of the locking block 24 are respectively connected to the second bracket 4 and the suspension sleeve 21. The second bracket 4 has a second protrusion 311 connected to the side of the locking block 24. This design means that the inner and outer sides of the locking block 24 are connected to the second extension 212 and the second protrusion 311, respectively. The upper and lower sides of the locking block 24 are connected to the second bracket 4 and the suspension sleeve 21, respectively, forming a constraint structure that more tightly connects the suspension sleeve 21 and the second bracket 4, preventing the second extension 212 from loosening or shifting during use. This effectively improves the connection stability and reliability between the suspension sleeve 21 and the host 1. Furthermore, by providing a locking piece 25 connected to the first bracket 3 and the suspension sleeve 21, the connection between the first bracket 3 and the second bracket 4 is further improved. The tight connection of the two mating parts 2121 prevents the second mating part 2121 from loosening or shifting within the third cavity 5, effectively improving the stability and tightness of the connection between the suspension sleeve 21 and the host 1. Specifically, since the locking piece 25 ensures that the second mating part 2121 is tightly fitted with the first bracket 3 and the second bracket 4 within the third cavity 5 to prevent loosening, and since the suspension sleeve 21 is made of an elastic material, the locking piece 25 can be made of metal, such as stainless steel or aluminum alloy. The locking block 24 further tightens the connection between the suspension sleeve 21 and the second bracket 4. Since the suspension sleeve 21 is made of an elastic material, the locking block 24 can be made of high-strength, wear-resistant plastic or metal, further ensuring a tight connection between the suspension sleeve 21 and the second bracket 4.

[0047] Furthermore, the first protrusion 41 has a third protrusion 411 on its side, and the second mating part 2121 has a second groove 21211 that is mated and connected with the third protrusion 411.

[0048] This invention provides additional positioning and connection stability for the connection between the suspension sleeve 21 and the first bracket 3 and the second bracket 4 by providing a third protrusion 411 on the side of the first protrusion 41 and a second groove 21211 that engages with and connects to the third protrusion 411 in the second mating part 2121. This ensures that the suspension sleeve 21 cannot rotate relative to the first bracket 3 and the second bracket 4 within the third cavity 5, thus ensuring that the massager will not be misaligned due to force during use and guaranteeing the stability of the overall structure.

[0049] Furthermore, the massage component 2 also includes an airbag cover 26 connected to the suspension sleeve 21. The suspension sleeve 21 is provided with a third groove 213. The airbag cover 26 is provided with a third extension 261 that cooperates with the third groove 213. The two sides of the third extension 261 are respectively connected to the third groove 213 and the support plate 232 and form a telescopic cavity 6 with the support plate 232. The airbag 22 is located in the telescopic cavity 6. The cross-sectional shape of the airbag cover 26 is arc-shaped.

[0050] In this invention, the airbag cover 26 protects and covers the airbag 22. Its cross-sectional shape is arc-shaped, which better conforms to the curve of the temple area of ​​the human head, allowing the massage structure to better fit the user's head during use, effectively improving user comfort. Simultaneously, the arc shape helps to disperse pressure during massage, providing a more even and gentle massage experience. Furthermore, by providing a third extension 261 to the airbag cover 26 and a third groove 213 on the suspension sleeve 21 for connection with the third extension 261, the airbag cover 26 is securely mounted on the suspension sleeve 21, preventing displacement or detachment during use. Furthermore, both sides of the third extension 261 are connected to the third groove 213 and the support plate 232, respectively. The support plate 232 forms a telescopic cavity 6, which provides a space for the airbag 22 to be accommodated and move. When the airbag 22 is inflated or deflated, it can expand and contract within the telescopic cavity 6. The telescopic cavity 6 can limit the expansion range of the airbag 22 and also protect the airbag 22, preventing it from being damaged due to over-inflation or affecting the massage effect due to positional displacement. Specifically, in some embodiments, the airbag cover 26 can be made of high-elasticity protein leather. This type of leather can stretch and return to its original shape accordingly with the expansion and contraction of the airbag 22. This allows the airbag cover 26 to closely fit the movement of the airbag 22, ensuring uniform pressure transmission during the massage process. It can also provide a similar appearance and feel to natural leather, giving users a better user experience.

[0051] Furthermore, the suspension sleeve 21 is made of elastic material, the first cavity 211 is provided with a third fixing part 2111, the support plate 232 is provided with a fourth fixing hole 2323, the fixing member 231 is provided with a third fixing hole 2312 on one side that cooperates with the third fixing part 2111, and a fourth fixing part 2313 on the other side that cooperates with the fourth fixing hole 2323.

[0052] In this invention, by using an elastic material for the suspension sleeve 21, the suspension sleeve 21 can better adapt to the user's head shape and size, making the massager fit the user's head more snugly when worn, improving wearing comfort and stability. Secondly, when the user makes slight head movements or adjustments during use, the elastic suspension sleeve 21 can deform accordingly, without causing excessive restraint or discomfort to the user. In addition, during the massage, the elastic suspension sleeve 21 can play a certain buffering role, absorbing some of the vibration and impact force generated by the inflation and deflation of the airbag 22, reducing direct impact on the user's head, and effectively improving the user's massage experience. Specifically, the elastic material of the suspension sleeve 21 can be silicone, rubber, TPE, and TPU, etc. Furthermore, the first cavity 211 is provided with a third fixing part 2111, and the fixing part 231 is provided with a corresponding part. The third fixing hole 2312 of the third fixing part 2111 is connected to the third fixing hole 2312, so that the fixing member 231 and the first cavity 211 cannot rotate relative to each other, which further improves the connection stability and reliability of the fixing member 231 and the suspension member 21. Similarly, the support plate 232 is provided with a fourth fixing hole 2323, and the fixing member 231 is provided with a fourth fixing part 2313 that is connected to the fourth fixing hole 2323. The connection between the fourth fixing hole 2323 and the fourth fixing part 2313 is further improved, and the connection stability between the fixing member 231 and the support plate 232 is also improved. At the same time, the support plate 232 and the fixing member 231 cannot rotate relative to each other, ensuring that the connection between them will not loosen or separate due to the expansion and contraction of the airbag 22 and external force during the inflation and deflation of the airbag 22.

[0053] Furthermore, since the first bracket 3 and the second bracket 4 are used to support and fix the suspension member 21, the first bracket 3 and the second bracket 4 can be made of materials with high strength, toughness and hardness, such as plastic, polycarbonate and silicone with high hardness. Specifically, in order to further improve the adaptability of the massage structure to the user's head, in some embodiments, the suspension sleeve 21 can be made of silicone with lower hardness, and the second bracket 4 can be made of silicone with higher hardness than the suspension sleeve 21. For example, the suspension sleeve 21 can be made of silicone with Shore 50°, and the second bracket 4 can be made of silicone with Shore 70°. This design can meet the support and fixation requirements of the second bracket 4 for the suspension sleeve 21, while further improving the adaptability to the user's head, thereby improving the user's experience.

[0054] Example 1

[0055] An airbag-type temple massage structure includes a main unit 1 and a massage component 2 connected to the main unit 1. The massage component 2 includes a suspension sleeve 21 connected to the main unit 1, an airbag 22 connected to the suspension sleeve 21, and a support component 23 connecting the suspension sleeve 21 and the airbag 22. The support component 23 is used to support the inflation and deflation of the airbag 22 to prevent the airbag 22 from collapsing excessively or shrinking without returning to its original position.

[0056] Example 2

[0057] Example 2, based on Example 1, also has the following implementation method:

[0058] The support assembly 23 includes a fixing member 231 connected to the suspension sleeve 21 and a support plate 232 connected to the fixing member 231 and the airbag 22. One side of the support plate 232 is connected to the fixing member 231 and the other side is connected to the airbag 22.

[0059] Example 3

[0060] Example 3, based on Example 2, also has the following implementation method:

[0061] The suspension sleeve 21 has a first cavity 211 on one side for installing the fixing member 231. The shape and size of the first cavity 211 match the shape and size of the fixing member 231 so that the fixing member 231 is connected and fixed in the first cavity 211.

[0062] Example 4

[0063] Example 4, based on Example 3, also has the following implementation method:

[0064] The fixing member 231 is provided with a first groove 2311, and the support plate 232 is provided with a first hook 2321 on the side connected to the fixing member 231. The bottom of the first groove 2311 is provided with a first mounting hole 23111 for the first hook 2321 to extend into, and a first mounting part 23112 that cooperates with the first hook 2321. The support plate 232 is provided with a second cavity 2322 for installing the airbag 22.

[0065] Example 5

[0066] Example 5, based on Example 3, also has the following implementation method:

[0067] The airbag 22 is provided with a first extension 221 on the side connected to the support plate 232. The first extension 221 is provided with an air passage 2211 for air to enter and exit the airbag 22. The main unit 1 is provided with a motor for controlling the expansion and contraction of the airbag 22. The first extension 221 is connected to the motor through a pipe.

[0068] Example 6

[0069] Example 6, based on Example 2, also has the following implementation method:

[0070] The suspension sleeve 21 is provided with a second extension 212 on the side connected to the host 1. The second extension 212 is provided with a second mating part 2121. The host 1 is provided with a first bracket 3 and a second bracket 4 connected to the first bracket 3. The first bracket 3 is provided with a first countersunk hole 31. The second bracket 4 is provided with a first protrusion 41 that mates with the first countersunk hole 31. The first countersunk hole 31 and the first protrusion 41 together form a third cavity 5 that mates with the second mating part 2121.

[0071] Example 7

[0072] Example 7, based on Example 6, also has the following implementation method:

[0073] The massage component 2 includes a locking block 24 sleeved on the outside of the second extension 212 and locking pieces 25 connected to the first bracket 3 and the second mating part 2121 on both sides respectively. The locking block 24 is connected to the second bracket 4 and the suspension sleeve 21 on both sides respectively. The second bracket 4 is provided with a second protrusion 311 connected to the side of the locking block 24.

[0074] Example 8

[0075] Example 8, based on Example 6, further includes the following implementation method:

[0076] The first protrusion 41 has a third protrusion 411 on its side, and the second mating part 2121 has a second groove 21211 that is mated and connected with the third protrusion 411.

[0077] Example 9

[0078] Example 9, based on Example 2, also has the following implementation method:

[0079] The massage component 2 also includes an airbag cover 26 connected to the suspension sleeve 21. The suspension sleeve 21 is provided with a third groove 213. The airbag cover 26 is provided with a third extension 261 that cooperates with the third groove 213. The two sides of the third extension 261 are respectively connected to the third groove 213 and the support plate 232 and form a telescopic cavity 6 with the support plate 232. The airbag 22 is located in the telescopic cavity 6. The cross-sectional shape of the airbag cover 26 is arc-shaped.

[0080] Example 10

[0081] Example 10, based on Example 3, also has the following implementation method:

[0082] The suspension sleeve 21 is made of elastic material. The first cavity 211 is provided with a third fixing part 2111. The support plate 232 is provided with a fourth fixing hole 2323. The fixing member 231 is provided with a third fixing hole 2312 on one side that cooperates with the third fixing part 2111, and a fourth fixing part 2313 on the other side that cooperates with the fourth fixing hole 2323.

[0083] Example 11

[0084] Based on Example 2, Example 11 also has the following implementation method:

[0085] The fastener 231 and the support plate 232 are made of plastic.

[0086] Example 12

[0087] Example 12, based on Example 4, also has the following implementation method:

[0088] There are four first hooks 2321. Each first hook 2321 corresponds to a first mounting hole 23111 and a first mounting part 23112. The four first hooks 2321 are evenly distributed on the support plate 232.

[0089] Example 13

[0090] Example 13, based on Example 6, also has the following implementation method:

[0091] The first bracket 3 is made of plastic, and the second bracket 4 is made of silicone with a Shore A value of 70°.

[0092] Example 14

[0093] Example 14, based on Example 7, also has the following implementation method:

[0094] The locking block 24 is made of plastic, and the locking piece 25 is made of stainless steel.

[0095] Example 15

[0096] In Example 15, based on Example 9, the airbag cover 26 is made of highly elastic protein leather.

[0097] The above examples are merely illustrative of the technical content of this utility model to facilitate reader understanding, but do not imply that the implementation of this utility model is limited to these embodiments. Any technical extensions or re-creations made based on this utility model are protected by this utility model. The scope of protection of this utility model is defined by the claims.

Claims

1. An airbag-type temple massage structure, characterized in that, The device includes a main unit (1) and a massage component (2) connected to the main unit (1). The massage component (2) includes a suspension sleeve (21) connected to the main unit (1), an airbag (22) connected to the suspension sleeve (21), and a support component (23) connecting the suspension sleeve (21) and the airbag (22). The support component (23) is used to support the inflation and deflation of the airbag (22) to prevent the airbag (22) from collapsing excessively or shrinking without returning to its original position.

2. The airbag-type temple massage structure according to claim 1, characterized in that, The support assembly (23) includes a fastener (231) connected to the suspension sleeve (21) and a support plate (232) connected to the fastener (231) and the airbag (22). One side of the support plate (232) is connected to the fastener (231), and the other side is connected to the airbag (22).

3. The airbag-type temple massage structure according to claim 2, characterized in that, The suspension sleeve (21) has a first cavity (211) on one side for installing the fixing member (231). The shape and size of the first cavity (211) match the shape and size of the fixing member (231) so that the fixing member (231) is connected and fixed in the first cavity (211).

4. The airbag-type temple massage structure according to claim 3, characterized in that, The fixing member (231) is provided with a first groove (2311), and the support plate (232) is provided with a first hook (2321) on the side connected to the fixing member (231). The bottom of the first groove (2311) is provided with a first mounting hole (23111) for the first hook (2321) to extend into, and a first mounting part (23112) that cooperates with the first hook (2321). The support plate (232) is provided with a second cavity (2322) for installing the airbag (22).

5. The airbag-type temple massage structure according to claim 3, characterized in that, The airbag (22) is provided with a first extension (221) on the side connected to the support plate (232). The first extension (221) is provided with an air passage (2211) for air to enter and exit the airbag (22). The main unit (1) is provided with a motor for controlling the expansion and contraction of the airbag (22). The first extension (221) is connected to the motor through a pipe.

6. The airbag-type temple massage structure according to claim 2, characterized in that, The suspension sleeve (21) is provided with a second extension (212) on the side connected to the host (1). The second extension (212) is provided with a second mating part (2121). The host (1) is provided with a first bracket (3) and a second bracket (4) connected to the first bracket (3). The first bracket (3) is provided with a first countersunk hole (31). The second bracket (4) is provided with a first protrusion (41) that is mated and connected to the first countersunk hole (31). The first countersunk hole (31) and the first protrusion (41) together form a third cavity (5) that is mated and connected to the second mating part (2121).

7. The airbag-type temple massage structure according to claim 6, characterized in that, The massage component (2) includes a locking block (24) sleeved on the outside of the second extension (212) and locking pieces (25) connected to the first bracket (3) and the second mating part (2121) on both sides respectively. The locking block (24) is connected to the second bracket (4) and the suspension sleeve (21) on both sides respectively. The second bracket (4) is provided with a second protrusion (311) connected to the side of the locking block (24).

8. The airbag-type temple massage structure according to claim 6, characterized in that, The first protrusion (41) has a third protrusion (411) on its side, and the second mating part (2121) has a second groove (21211) that is mated and connected with the third protrusion (411).

9. The airbag-type temple massage structure according to claim 2, characterized in that, The massage component (2) also includes an airbag cover (26) connected to the suspension sleeve (21). The suspension sleeve (21) is provided with a third groove (213). The airbag cover (26) is provided with a third extension (261) that is connected to the third groove (213). The third extension (261) is connected to the third groove (213) and the support plate (232) on both sides respectively and forms a telescopic cavity (6) with the support plate (232). The airbag (22) is located in the telescopic cavity (6). The cross-sectional shape of the airbag cover (26) is arc-shaped.

10. The airbag-type temple massage structure according to claim 3, characterized in that, The suspension sleeve (21) is made of elastic material. The first cavity (211) is provided with a third fixing part (2111). The support plate (232) is provided with a fourth fixing hole (2323). The fixing member (231) is provided with a third fixing hole (2312) on one side that is connected to the third fixing part (2111), and a fourth fixing part (2313) on the other side that is connected to the fourth fixing hole (2323).