Massage device

By placing the massage mechanism and heating components on the two sides of the wearer's shell respectively, and combining exercise massage and heat therapy functions, the problem of poor user experience in existing massage devices is solved, achieving better massage effects and safety.

CN224141187UActive Publication Date: 2026-04-21GUANGDONG SKG INTELLIGENT TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
GUANGDONG SKG INTELLIGENT TECH CO LTD
Filing Date
2025-03-03
Publication Date
2026-04-21

AI Technical Summary

Technical Problem

The massage experience provided by existing massage equipment is subpar and fails to meet people's demand for high-quality massages.

Method used

Design a massage device with a massage mechanism on one side of the wearable shell and a heating component on the opposite side. Combining exercise massage and heat therapy functions, the device utilizes the space on both sides of the wearable shell in the thickness direction to achieve a compact structure and high portability, and transfers heat to the area to be massaged by bringing the heating component close to the area to be massaged.

Benefits of technology

It enhances the massage experience, increases the functionality and safety of massage equipment, reduces the risk of direct contact between massage institutions and the massaged areas, and improves the heat therapy effect and safety of use.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of massage equipment, in particular to massage equipment. A massage device comprises a wearing shell used for being worn on a part to be massaged; the massage mechanism is arranged on the wearing shell, at least part of the massage mechanism is located on the first side, in the thickness direction, of the wearing shell, and the massage mechanism is used for exercise massage; the heating assembly is arranged on the wearing shell, at least part of the heating assembly is located on the second side, opposite to the first side, of the wearing shell, the heating assembly is used for hot compress massage, and the second side faces the part to be massaged. The massage equipment provided by the utility model is relatively good in massage experience.
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Description

Technical Field

[0001] This application relates to the field of massage equipment technology, and more particularly to a massage device. Background Technology

[0002] As people's demands for quality of life increase, their expectations for the massage experience from massage devices also rise. However, when using massage devices with relevant technologies, people find the massage experience unsatisfactory and fails to meet their expectations. Utility Model Content

[0003] This application discloses a massage device that can enhance the massage experience, making the massage experience better.

[0004] To achieve the above objectives, this application discloses a massage device, comprising:

[0005] A wearing case, the wearing case being worn on the area to be massaged;

[0006] A massage mechanism, wherein the massage mechanism is disposed on the wearable housing and at least a portion of the massage mechanism is located on a first side in the thickness direction of the wearable housing, the massage mechanism being used for motion massage; and...

[0007] A heating component is disposed on the wearable housing and at least a portion of the heating component is located on a second side of the wearable housing opposite to the first side. The heating component is used for hot compress massage, wherein the second side faces the area to be massaged.

[0008] Since the heating component is located on the wearing shell and at least part of the heating component is located on the second side of the wearing shell opposite to the first side, and the heating component is facing the area to be massaged, the area to be massaged can also be heated by the heating component, thereby achieving the purpose of heating and massaging the area to be massaged.

[0009] As can be seen, by placing the massage mechanism on the wearing shell with at least a portion of the massage mechanism located on the first side in the thickness direction of the wearing shell, and placing the heating component on the wearing shell with at least a portion of the heating component located on the second side of the wearing shell opposite to the first side, the massage device can perform both exercise massage and heat therapy massage through the massage mechanism. In other words, the massage device has both exercise massage and heat therapy massage functions, thus improving the massage experience and making the massage device more comfortable.

[0010] In addition, since the massage mechanism is disposed on the wearing shell and at least part of the massage mechanism is located on the first side in the thickness direction of the wearing shell, and the heating component is disposed on the wearing shell and at least part of the heating component is located on the second side of the wearing shell opposite to the first side, with the second side facing the part to be massaged, that is, the massage mechanism and the heating component are respectively located on both sides in the thickness direction of the wearing shell, with the heating component facing the part to be massaged and the massage mechanism facing away from the part to be massaged.

[0011] In this way, on the one hand, the massage mechanism and heating components can fully utilize the space on both sides of the wearing shell's thickness, making the massage device's structural layout more compact and portable. On the other hand, it allows the heating components to be relatively close to the area to be massaged, facilitating heat transfer and improving the massage experience. Furthermore, the distance between the massage mechanism and the area to be massaged reduces the possibility of scratches or injuries from direct contact, making the device safer to use. Finally, the greater distance also allows the massage mechanism to apply a more vigorous, kneading motion, further enhancing the massage experience.

[0012] Optionally, the heating assembly includes:

[0013] A bulb heating sub-assembly is disposed on the wear housing and at least a portion of the bulb heating sub-assembly is located on the second side.

[0014] When the heating component includes a bulb heating sub-component, the bulb heating sub-component can heat the area by emitting light from the bulb. Since light has stronger penetrating power, it can heat the deeper layers of skin in the area to be massaged, thus making the hot compress massage more effective.

[0015] Optionally, the bulb heating sub-assembly includes:

[0016] A circuit board disposed on the wearable housing, the circuit board having a first mounting surface facing the second side; and...

[0017] A heating bulb is disposed on the first mounting surface, electrically connected to the circuit board, and located on the second side.

[0018] Since the circuit board has a first mounting surface facing the second side, and the heating bulb is disposed on the first mounting surface, on the one hand, the heating bulb can be closer to the area to be massaged than the circuit board, which is conducive to the heating bulb transferring heat to the area to be massaged, so that the heating bulb heating sub-assembly has a better heat therapy massage effect.

[0019] On the other hand, the circuit board can be used to mount the heating bulb and supply power to the heating bulb, thus solving both the installation and power supply requirements of the heating bulb. The circuit board has multiple uses and can reduce the number of parts in the bulb heating sub-assembly to a certain extent, thereby reducing the cost of the bulb heating sub-assembly.

[0020] Optionally, the bulb heating sub-assembly further includes:

[0021] A bulb holder is disposed on the first mounting surface, and a heating bulb is mounted on the bulb holder and located on the side of the bulb holder facing the second side.

[0022] By setting up a bulb holder, on the one hand, the bulb holder can fix the heating bulb, so that the heating bulb can be set more stably on the first mounting surface. On the other hand, the bulb holder can also isolate the heating bulb from the circuit board to a certain extent, so that there can be a certain distance between the heating bulb and the circuit board, thereby improving the safety of the bulb heating sub-assembly to a certain extent.

[0023] Optionally, a snap-fit ​​joint is formed between the peripheral wall of the bulb holder and the wearing housing;

[0024] The massage device further includes a cover assembly, the cover assembly having a protruding end that protrudes from the wearing shell in a direction from the first side to the second side, the protruding end being adapted to the part to be massaged so as to fit the part to be massaged, the protruding end protruding from the heating assembly in a direction from the first side to the second side, and a portion of the structure of the cover assembly being snapped and fixed to the snap-fit ​​seam.

[0025] Because a snap-fit ​​seam is formed between the bulb holder's peripheral wall and the wearing shell, and part of the cover assembly's structure is snapped and fixed to this seam, the cover assembly can be installed on the massage device through this seam. When the cover assembly is installed on the massage device through the snap-fit ​​seam, on the one hand, the seam provides a certain positioning function for the cover assembly, resulting in higher installation accuracy. On the other hand, when part of the cover assembly's structure is snapped and fixed to the seam, the cover assembly can be installed more firmly and securely.

[0026] Optionally, the cover assembly includes:

[0027] A heat insulation part is provided on the heating assembly and located on the side of the heating assembly facing the second side, and a portion of the structure of the heat insulation part is snapped and fixed to the snap joint.

[0028] The adhesive portion covers the heat insulation portion and is located on the side of the heat insulation portion facing the second side, and the adhesive portion has the protruding end.

[0029] Since the heat insulation part is covered by the heating component and located on the side of the heating component facing the second side, and the fitting part is covered by the heat insulation part and located on the side of the heat insulation part facing the second side, and the fitting part has a protruding end, the heat insulation part can block the protruding end from contacting the heating component, so that the protruding end and the heating component will not come into direct contact, thereby preventing the temperature of the protruding end from becoming too high, thus avoiding the situation where the protruding end burns the area to be massaged.

[0030] Optionally, the bonding portion includes:

[0031] An enclosing wall, one end of which is disposed at the heat insulation portion and the other end of which is located on the side of the heat insulation portion facing the second side; and,

[0032] A bonding wall is disposed at the other end of the enclosing wall, the bonding wall and the enclosing wall enclose to form a cavity, at least a portion of the structure of the heat insulation part is located within the cavity, and the bonding wall forms the protruding end.

[0033] Since the fitting wall is located at the other end of the enclosure wall, the fitting wall and the enclosure wall form a cavity, and at least part of the heat insulation part is located in the cavity, when the heat of the heating component is transferred to the cavity through the heat insulation part, the heat can be retained in the cavity for heat therapy under the action of the enclosure wall, avoiding the situation where a large amount of heat flows out to the external environment and causes heat loss, thus making the heat therapy effect of the massage device better.

[0034] Optionally, the cover assembly further includes:

[0035] A temperature sensing element is disposed at the heating assembly to detect the temperature at the heating assembly, or the temperature sensing element is disposed at the heat insulation part to detect the temperature at the heat insulation part.

[0036] Because the heat insulation part is closer to the area to be massaged, it can more accurately reflect the temperature of the area to be massaged. Therefore, when the temperature detection element is set at the heat insulation part, the temperature detected by the temperature detection element will be closer to the temperature of the area to be massaged. This allows for more precise adjustment of the temperature of the heating component, resulting in a better heat therapy effect of the massage device.

[0037] Optionally, the heat insulation part is provided with an extension tube, the extension tube extends to the heating component, and the temperature detection element is disposed at the heat insulation part and located inside the extension tube.

[0038] By inserting the heating bulb into the mounting hole, the bulb holder can enclose the bulb, making the environment safer and thus improving its durability. Furthermore, the mounting hole positions the bulb precisely, ensuring a more accurate installation. It also allows for a more stable and secure mounting of the bulb to the holder.

[0039] Optionally, the bulb holder has a second mounting surface facing the second side, and the second mounting surface is provided with a plurality of mounting holes, each of which is in which the heating bulb is inserted.

[0040] By inserting the heating bulb into the mounting hole, the bulb holder can enclose the bulb, making the environment safer and thus improving its durability. Furthermore, the mounting hole positions the bulb precisely, ensuring a more accurate installation. It also allows for a more stable and secure mounting of the bulb to the holder.

[0041] Optionally, the heating bulb is recessed into the second mounting surface.

[0042] By recessing the heating bulb into the second mounting surface, the bulb is completely protected by the bulb holder. Compared to a bulb protruding from the second mounting surface, this further enhances the safety of the environment in which the heating bulb is located, thus improving its durability. Furthermore, it prevents the heating bulb from coming into contact with the area to be massaged, thereby avoiding burns.

[0043] Optionally, the second mounting surface is a spherical surface, and the second mounting surface gradually concaves from the periphery of the second mounting surface toward the center of the second mounting surface.

[0044] By making the second mounting surface spherical and gradually concave from the periphery of the second mounting surface towards the center, the second mounting surface can better fit the area to be massaged, thereby making the massage device more adaptable and providing a better massage experience.

[0045] Optionally, the heating assembly further includes:

[0046] A heating film sub-assembly, wherein the heating film sub-assembly is disposed on the second side of the wearing housing and surrounds the bulb heating sub-assembly, or the heating film sub-assembly is disposed on the second side of the wearing housing and the bulb heating sub-assembly surrounds the heating film sub-assembly.

[0047] When the heating component also includes a heating membrane component, in addition to heat therapy massage via the bulb heating component, heat therapy massage can also be performed via the heating membrane component. That is, two different types of heat therapy massage can be performed by combining the bulb heating component with the heating membrane component. Therefore, the heat therapy massage effect is better and the experience is more enjoyable.

[0048] Optionally, the heating membrane sub-assembly includes:

[0049] A heating film, the heating film being disposed on the second side of the wearing housing; and,

[0050] A protective film is located on the side of the heating film facing the second side and wraps around the heating film.

[0051] Since the protective film is located on the side of the heating film facing the second side and is wrapped around the heating film, the protective film can wrap around the heating film, which can prevent the heating film from being directly exposed to the outside, and thus can prevent the area to be massaged from being burned to a certain extent.

[0052] Optionally, the heating membrane sub-assembly further includes:

[0053] A flexible layer is located between the protective film and the heating film.

[0054] By setting a flexible layer between the protective film and the heating film, the entire heating film sub-assembly can be made more flexible, thereby improving the user experience of the massage device.

[0055] Optionally, the wearing housing is provided with anti-scalding protrusions, which protrude from the bulb heating sub-assembly and the heating film sub-assembly respectively in the direction from the first side to the second side.

[0056] By making the anti-scalding protrusions protrude from the bulb heating sub-assembly and the heating film sub-assembly in the direction from the first side to the second side, the anti-scalding protrusions will support the area to be massaged, so that the area to be massaged cannot directly contact the heating sub-assembly and the heating film assembly, thereby avoiding the situation where the area to be massaged is burned by the heating sub-assembly or the heating film assembly.

[0057] Optionally, the anti-scalding protrusion is an anti-scalding ring, which is located between the bulb heating sub-assembly and the heating film sub-assembly.

[0058] By positioning the anti-scalding ring between the bulb heating sub-assembly and the heating film sub-assembly, the distance between the anti-scalding ring and the bulb heating sub-assembly, as well as the distance between the anti-scalding ring and the heating film assembly, can be made approximately equal. This can better prevent the area to be massaged from coming into contact with the heating sub-assembly or the heating film assembly, and thus better prevent the area to be massaged from being burned by the heating sub-assembly or the heating film assembly.

[0059] Optionally, the wearing housing includes:

[0060] A housing portion, the housing portion being worn on the area to be massaged; and,

[0061] The mounting base is disposed on the housing portion, and the heating component and the massage mechanism are both disposed on the mounting base.

[0062] By mounting both the massage mechanism and heating element on the mounting base, the base serves two purposes. First, it acts as a dedicated base for the massage mechanism and heating element, ensuring greater stability during installation. Second, the mounting base can be made of a material with high rigidity, allowing for a more secure installation of the massage mechanism and heating element. Furthermore, it enables the massage movements to be better transmitted to the area being massaged, thus enhancing the overall massage experience.

[0063] Optionally, the massage mechanism and the heating component at least partially overlap in the direction from the first side to the second side.

[0064] By making the massage mechanism and the heating element at least partially overlap, the distance between the massage mechanism and the heating element can be reduced. This makes it easier for the massage of the massage mechanism and the heat therapy of the heating element to be superimposed on the same area of ​​the body to be massaged, thereby further enhancing the massage experience of the massage device.

[0065] Compared with the prior art, the beneficial effects of this application are as follows:

[0066] In this application, by placing the massage mechanism on the wearing shell and at least part of the massage mechanism on the first side in the thickness direction of the wearing shell, and placing the heating component on the wearing shell and at least part of the heating component on the second side of the wearing shell opposite to the first side, the massage device can perform both exercise massage and heat therapy massage through the massage mechanism. In other words, the massage device has both exercise massage and heat therapy massage functions, thus improving the massage experience of the massage device and making the massage experience of the massage device better.

[0067] In addition, since the massage mechanism is disposed on the wearing shell and at least part of the massage mechanism is located on the first side in the thickness direction of the wearing shell, and the heating component is disposed on the wearing shell and at least part of the heating component is located on the second side of the wearing shell opposite to the first side, with the second side facing the part to be massaged, that is, the massage mechanism and the heating component are respectively located on both sides in the thickness direction of the wearing shell, with the heating component facing the part to be massaged and the massage mechanism facing away from the part to be massaged.

[0068] In this way, on the one hand, the massage mechanism and heating components can fully utilize the space on both sides of the wearing shell's thickness, making the massage device's structural layout more compact and portable. On the other hand, it allows the heating components to be relatively close to the area to be massaged, facilitating heat transfer and improving the massage experience. Furthermore, the distance between the massage mechanism and the area to be massaged reduces the possibility of scratches or injuries from direct contact, making the device safer to use. Finally, the greater distance also allows the massage mechanism to apply a more vigorous, kneading motion, further enhancing the massage experience. Attached Figure Description

[0069] To more clearly illustrate the technical solutions in the embodiments of this application, the drawings used in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0070] Figure 1 This is a schematic diagram of the structure of a massage device provided in one embodiment of this application;

[0071] Figure 2 yes Figure 1 A schematic diagram of the structure of a massage device when worn on the area to be massaged;

[0072] Figure 3 yes Figure 1 An exploded view of a massage device;

[0073] Figure 4 yes Figure 3 An exploded view of the bulb heating sub-assembly;

[0074] Figure 5 This is a schematic diagram of the structure of another massage device provided in one embodiment of this application;

[0075] Figure 6 yes Figure 5An exploded view of a Chinese massage device;

[0076] Figure 7 yes Figure 5 A schematic diagram of the structure of a massage device when worn on the area to be massaged;

[0077] Figure 8 yes Figure 1 A schematic diagram of the massage device from another perspective;

[0078] Figure 9 yes Figure 8 Cross-sectional view of the massage device at position AA;

[0079] Figure 10 This is a schematic diagram of the structure of a heating assembly provided in one embodiment of this application;

[0080] Figure 11 This is a schematic diagram of another heating component provided in an embodiment of this application.

[0081] Explanation of main figure symbols

[0082] 1-Wearing housing; 11-Anti-scalding protrusion; 12-Housing part; 13-Mounting base;

[0083] 2-Massage facilities;

[0084] 3-Heating assembly; 31-Bulb heating sub-assembly; 311-Circuit board; 3111-First mounting surface; 312-Heating bulb; 313-Bulb holder; 3131-Second mounting surface; 3131a-Mounting hole; 32-Heating film sub-assembly; 321-Protective film;

[0085] 4-Cover assembly; 41-Protruding end; 42-Insulation part; 421-Extension tube; 43-Fitting part; 431-Enclosing wall; 432-Fitting wall; 44-Temperature detection element;

[0086] 100-Massage equipment;

[0087] C1 - First side; C2 - Second side; F - Seam; K - Cavity; M - Area to be massaged. Detailed Implementation

[0088] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.

[0089] In this application, the terms "upper," "lower," "left," "right," "front," "rear," "top," "bottom," "inner," "outer," "middle," "vertical," "horizontal," "lateral," and "longitudinal" indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. These terms are primarily for the purpose of better describing this application and its embodiments, and are not intended to limit the indicated device, element, or component to having a specific orientation, or to be constructed and operated in a specific orientation.

[0090] Furthermore, in addition to indicating location or positional relationship, some of the aforementioned terms may also have other meanings. For example, the term "above" may also be used in some cases to indicate a certain dependency or connection relationship. Those skilled in the art can understand the specific meaning of these terms in this application based on the specific circumstances.

[0091] Furthermore, the terms "installation," "setup," "equipped with," "connection," and "linked" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral structure; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium, or an internal connection between two devices, components, or parts. Those skilled in the art can understand the specific meaning of these terms in this application based on the specific circumstances.

[0092] Furthermore, the terms "first," "second," etc., are primarily used to distinguish different devices, elements, or components (which may be the same or different in specific type and construction), and are not intended to indicate or imply the relative importance or quantity of the indicated devices, elements, or components. Unless otherwise stated, "a plurality of" means two or more.

[0093] Before explaining the technical solution of this application, the background technology of this application shall be explained first.

[0094] As people's demands for quality of life increase, their expectations for the massage experience from massage devices also rise. However, when using massage devices in the existing technology, people find the massage experience unsatisfactory and fails to meet their requirements. Therefore, this application provides a new massage device to solve the aforementioned problems.

[0095] The technical solution of this application will be further described below with reference to specific embodiments and accompanying drawings.

[0096] Figure 1 This is a schematic diagram of the structure of a massage device 100 provided in one embodiment of this application. Figure 2 yes Figure 1 A schematic diagram of the structure of the massage device 100 when worn on the area M to be massaged, see [link / reference]. Figure 1 and Figure 2 The massage device 100 includes a wearing shell 1, a massage mechanism 2, and a heating component 3. The wearing shell 1 is worn on the area M to be massaged. The massage mechanism 2 is disposed on the wearing shell 1, and at least a portion of the massage mechanism 2 is located on a first side C1 in the thickness direction of the wearing shell 1. Figure 1 The left side of the wearing shell 1), the massage mechanism 2 is used for motion massage, and the heating component 3 is disposed on the wearing shell 1, with at least a portion of the heating component 3 located on the second side C2 of the wearing shell 1 opposite to the first side C1. Figure 1 (Wearing the right side of the housing 1), the heating component 3 is used for hot compress massage, wherein the second side C2 faces the area M to be massaged.

[0097] In this embodiment, when it is necessary to massage the area M to be massaged, firstly, the wearing shell 1 can be worn on the area M to be massaged, and the heating component 3 is made to face the area M to be massaged. Then, since the massage mechanism 2 is disposed on the wearing shell 1 and at least part of the massage mechanism 2 is located on the first side C1 in the thickness direction of the wearing shell 1, the massage mechanism 2 can be moved. When the massage mechanism 2 moves, the massage mechanism 2 can transmit massage action to the area M to be massaged through the wearing shell 1, so that the area M to be massaged can feel the massage action such as pressing or shaking, thereby achieving the purpose of performing exercise massage on the area M to be massaged.

[0098] Meanwhile, since the heating component 3 is disposed on the wearing shell 1 and at least part of the heating component 3 is located on the second side C2 of the wearing shell 1 opposite to the first side C1, and the heating component 3 faces the part M to be massaged, the part M to be massaged can also be heated by the heating component 3, thereby achieving the purpose of heating and massaging the part M to be massaged.

[0099] As can be seen, by placing the massage mechanism 2 on the wearing shell 1 with at least a portion of the massage mechanism 2 located on the first side C1 in the thickness direction of the wearing shell 1, and placing the heating component 3 on the wearing shell 1 with at least a portion of the heating component 3 located on the second side C2 of the wearing shell 1 opposite to the first side C1, the massage device 100 can perform both exercise massage via the massage mechanism 2 and heat therapy massage via the heating component 3. In other words, the massage device 100 has both exercise massage and heat therapy massage functions, thus improving the massage experience of the massage device 100 and making the massage experience of the massage device 100 better.

[0100] In addition, since the massage mechanism 2 is disposed on the wearing shell 1 and at least part of the massage mechanism 2 is located on the first side C1 in the thickness direction of the wearing shell 1, and the heating component 3 is disposed on the wearing shell 1 and at least part of the heating component 3 is located on the second side C2 of the wearing shell 1 opposite to the first side C1, the second side C2 faces the part M to be massaged. That is, the massage mechanism 2 and the heating component 3 are respectively located on both sides in the thickness direction of the wearing shell 1, the heating component 3 faces the part M to be massaged, and the massage mechanism 2 faces away from the part M to be massaged.

[0101] In this way, on the one hand, the massage mechanism 2 and the heating component 3 can fully utilize the space on both sides of the wearing shell 1 in the thickness direction, making the structural layout of the massage device 100 more compact and portable. On the other hand, the heating component 3 can be placed relatively close to the area M to be massaged, which is conducive to the heat transfer of the heating component 3 to the area M to be massaged, thereby improving the massage experience of the massage device 100. Furthermore, the massage mechanism 2 can be placed further away from the area M to be massaged, which can reduce the possibility of scratching or injuring the area M from direct contact, making the massage device 100 safer to use. Moreover, because the massage mechanism 2 is further away from the area M to be massaged, it is also more conducive to the massage mechanism 2 to perform a shaking and kneading massage motion on the area M to be massaged, thus improving the massage experience to a certain extent.

[0102] It should be noted that the massage device 100 mentioned above can be a shoulder massager, a joint massager, or a knee massager, etc., and this embodiment does not limit it.

[0103] When the massage device 100 is a knee massager, the area M to be massaged can be understood as the knee joint.

[0104] It should also be noted that the aforementioned massage mechanism 2 being disposed on the wearing shell 1 and at least part of the massage mechanism 2 being located on the first side C1 in the thickness direction of the wearing shell 1 means that the entire massage mechanism 2 is located on the first side C1 in the thickness direction of the wearing shell 1, or that a portion of the structure of the massage mechanism 2 is located on the first side C1 in the thickness direction of the wearing shell 1, and the remaining portion of the structure is located on the second side C2 in the thickness direction of the wearing shell 1. The aforementioned at least part of the heating component 3 being located on the second side C2 of the wearing shell 1 opposite to the first side C1 can be understood in a similar way to the at least part of the massage mechanism 2 being located on the first side C1 in the thickness direction of the wearing shell 1, and will not be elaborated further in this embodiment.

[0105] In some embodiments, see Figure 2 and Figure 3 , Figure 3 yes Figure 1An exploded view of a massage device 100 shows that the heating component 3 includes a bulb heating sub-component 31, which is disposed on the wearing housing 1 and at least a portion of the bulb heating sub-component 31 is located on the second side C2.

[0106] When the heating component 3 includes a bulb heating sub-component 31, the bulb heating sub-component 31 can heat the area M by emitting light from the bulb. Since light has stronger penetrability, it can heat the deep skin of the area M to be massaged, thus the effect of hot compress massage is better.

[0107] There are multiple ways to implement the above-mentioned bulb heating sub-assembly 31. In one possible implementation, see [link to relevant documentation]. Figure 3 and Figure 4 , Figure 4 yes Figure 3 An exploded view of a bulb heating sub-assembly 31, which includes a circuit board 311 and a heating bulb 312. The circuit board 311 is disposed on the housing 1 and has a first mounting surface 3111 facing the second side C2. The heating bulb 312 is disposed on the first mounting surface 3111, electrically connected to the circuit board 311, and located on the second side C2.

[0108] Since the circuit board 311 has a first mounting surface 3111 facing the second side C2, and the heating bulb 312 is disposed on the first mounting surface 3111, on the one hand, the heating bulb 312 can be closer to the part M to be massaged than the circuit board 311, which is conducive to the heating bulb 312 transferring heat to the part M to be massaged, so that the heat massage effect of the bulb heating sub-assembly 31 is better.

[0109] On the other hand, the circuit board 311 can be used to mount the heating bulb 312 and supply power to the heating bulb 312, so that the installation needs and power supply requirements of the heating bulb 312 are both solved. The circuit board 311 has multiple uses and can reduce the number of parts of the bulb heating sub-assembly 31 to a certain extent, thereby reducing the cost of the bulb heating sub-assembly 31.

[0110] The heating bulb 312 can be an infrared bulb or any other possible bulb, and this embodiment does not limit this. The heating bulb 312 can be mounted on the circuit board 311 by soldering or by other possible means, and this embodiment does not limit this.

[0111] In some embodiments, see Figure 3 and Figure 4The bulb heating sub-assembly 31 also includes a bulb holder 313, which is disposed on the first mounting surface 3111. The heating bulb 312 is mounted on the bulb holder 313 and is located on the side of the bulb holder 313 facing the second side C2.

[0112] By setting up the bulb holder 313, on the one hand, the bulb holder 313 can fix the heating bulb 312, so that the heating bulb 312 can be set more stably on the first mounting surface 3111. On the other hand, the bulb holder 313 can also isolate the heating bulb 312 from the circuit board 311 to a certain extent, so that there can be a certain distance between the heating bulb 312 and the circuit board 311, thereby improving the safety of the bulb heating sub-assembly 31 to a certain extent.

[0113] In some embodiments, see Figure 5 , Figure 6 and Figure 7 , Figure 5 This is a schematic diagram of the structure of another massage device 100 provided in one embodiment of this application. Figure 6 yes Figure 5 An exploded view of a massage device 100. Figure 7 yes Figure 5 The diagram shows the structure of the massage device 100 when worn on the area M to be massaged. A snap-fit ​​seam F is formed between the peripheral wall of the bulb holder 313 and the wearing shell 1. The massage device 100 also includes a cover assembly 4, which has a protruding end 41 that protrudes from the wearing shell 1 in a direction from the first side C1 to the second side C2. The protruding end 41 is adapted to fit the area M to be massaged so as to conform to the area M. The protruding end 41 protrudes from the heating assembly 3 in a direction from the first side C1 to the second side C2. A portion of the structure of the cover assembly 4 is snap-fitted and fixed to the snap-fit ​​seam F.

[0114] Because a snap-fit ​​seam F is formed between the peripheral wall of the bulb holder 313 and the wearing shell 1, a portion of the cover assembly 4 is snapped and fixed to the snap-fit ​​seam F. Therefore, the cover assembly 4 can be installed in the massage device 100 through the snap-fit ​​seam F. When the cover assembly 4 is installed in the massage device 100 through the snap-fit ​​seam F, on the one hand, the snap-fit ​​seam F plays a certain positioning role in the installation of the cover assembly 4, making the installation accuracy of the cover assembly 4 higher. On the other hand, when a portion of the cover assembly 4 is snapped and fixed to the snap-fit ​​seam F, the cover assembly 4 can be installed more firmly and securely.

[0115] When the massage device 100 also includes a cover assembly 4, the cover assembly 4 has a protruding end 41 protruding from the wearing shell 1 in the direction from the first side C1 to the second side C2. The protruding end 41 is adapted to the part M to be massaged. Therefore, when the wearing shell 1 is worn on the part M to be massaged and the protruding end 41 of the cover assembly 4 is in contact with the part M to be massaged, the cover assembly 4 acts like a support between the wearing shell 1 and the part M to be massaged. This means that only or most of the part M to be massaged is in contact with the protruding end 41 of the cover assembly 4, while there will be a gap between the wearing shell 1 and the part M to be massaged. In this way, on the one hand, the part M to be massaged can be more breathable and there will be less or no stuffiness, thereby making the massage experience of the massage device 100 better.

[0116] On the other hand, when the housing 1 is worn on the part M to be massaged, it can reduce the feeling of constriction on the part M to be massaged, so that the part M to be massaged is not completely fixed by the housing 1, and the part M to be massaged can move freely, making the massage device 100 more user-friendly and thus further enhancing the massage experience of the massage device 100.

[0117] By making the protruding end 41 protrude from the heating component 3 in the direction from the first side C1 to the second side C2, when the protruding end 41 is in contact with the part M to be massaged, there can still be a distance between the heating component 3 and the part M to be massaged, thereby avoiding direct contact between the heating component 3 and the part M to be massaged, and thus avoiding the situation where the heating component 3 burns the part M to be massaged, making the massage device 100 safer to use.

[0118] In some embodiments, the cover assembly 4 can be a silicone cover assembly 4. When the cover assembly 4 is a silicone cover assembly 4, the cover assembly 4 is light-transmitting, so that the heating component 3 can be seen through the cover assembly 4, achieving a visible heat therapy effect.

[0119] There are multiple ways to implement the aforementioned cover component 4. In one possible implementation, see [link to relevant documentation]. Figure 6 The cover assembly 4 includes a heat insulation part 42 and a fitting part 43, wherein the heat insulation part 42 covers the heating assembly 3 and is located on the side of the heating assembly 3 facing the second side C2. Figure 6 (On the left side of the heating component 3), part of the structure of the heat insulation part 42 is snapped and fixed to the snap joint F, and the fitting part 43 is covered on the heat insulation part 42 and located on the side of the heat insulation part 42 facing the second side C2. The fitting part 43 has a protruding end 41.

[0120] Since the heat insulation part 42 is covered by the heating component 3 and located on the side of the heating component 3 facing the second side C2, and the fitting part 43 is covered by the heat insulation part 42 and located on the side of the heat insulation part 42 facing the second side C2, and the fitting part 43 has a protruding end 41, the heat insulation part 42 can block the protruding end 41 from contacting the heating component 3, so that the protruding end 41 and the heating component 3 will not come into direct contact, thereby preventing the temperature of the protruding end 41 from becoming too high, thus avoiding the situation where the protruding end 41 burns the massage area M.

[0121] In some embodiments, see Figure 6 The fitting portion 43 includes a surrounding wall 431 and a fitting wall 432. One end of the surrounding wall 431 is disposed on the heat insulation portion 42 and the other end is located on the side of the heat insulation portion 42 facing the second side C2. The fitting wall 432 is disposed on the other end of the surrounding wall 431. The fitting wall 432 and the surrounding wall 431 enclose each other to form a cavity K. At least a portion of the structure of the heat insulation portion 42 is located in the cavity K. The fitting wall 432 forms a protruding end 41.

[0122] Since the fitting wall 432 is located at the other end of the enclosure wall 431, the fitting wall 432 and the enclosure wall 431 enclose and form a cavity K. At least part of the heat insulation part 42 is located in the cavity K. Therefore, when the heat of the heating component 3 is transferred to the cavity K through the heat insulation part 42, the heat can be retained in the cavity K for heat therapy under the action of the enclosure wall 431, avoiding the situation where a large amount of heat flows out to the external environment and causes heat loss, so that the heat therapy effect of the massage device 100 is better.

[0123] To avoid burns to the massaged area M due to excessively high heat temperature, and to avoid ineffective heat therapy due to excessively low heat temperature, in some embodiments, see... Figure 6 , Figure 8 and Figure 9 , Figure 8 yes Figure 1 A schematic diagram of the massage device 100 from another perspective. Figure 9 yes Figure 8 The massage device 100 is shown in a cross-sectional view at position AA. The cover assembly 4 also includes a temperature detection element 44, which is disposed at the heating assembly 3 and is used to detect the temperature at the heating assembly 3.

[0124] By installing a temperature sensing element 44 at the heating component 3, the temperature at the heating component 3 can be monitored in real time. In this way, if the temperature at the heating component 3 is too high, posing a risk of scalding the area M to be massaged, the heating component 3 can automatically lower the temperature, thereby preventing scalding. Conversely, if the temperature at the heating component 3 is too low, resulting in poor heat therapy, the heating component 3 can automatically raise the temperature, thereby improving the heat therapy effect.

[0125] Considering that the heating component 3 is farther away from the massage area M than the heat insulation part 42, there is a temperature difference between the heating component 3 and the massage area M. As a result, the temperature of the heating component 3 cannot reflect the temperature of the massage area M well. In some embodiments, the temperature detection element 44 is disposed at the heat insulation part 42 to detect the temperature at the heat insulation part 42.

[0126] Since the heat insulation part 42 is closer to the area M to be massaged, it can more accurately reflect the temperature of the area M to be massaged. Therefore, when the temperature detection element 44 is set at the heat insulation part 42, the temperature detected by the temperature detection element 44 will be closer to the temperature of the area M to be massaged. This allows for more precise adjustment of the temperature of the heating component 3, resulting in a better heat therapy effect of the massage device 100.

[0127] In some embodiments, see Figure 9 An extension tube 421 is provided on the heat insulation part 42, and the extension tube 421 extends to the heating component 3. The temperature detection element 44 is provided on the heat insulation part 42 and located inside the extension tube 421.

[0128] Since the temperature sensing element 44 is located inside the extension tube 421, the extension tube 421 can wrap the temperature sensing element 44 to protect it, making the environment in which the temperature sensing element 44 is located safer and more durable.

[0129] By placing the extension tube 421 on the heat insulation part 42 and extending it to the heating assembly 3, the extension tube 421 can serve as a wiring source for the temperature sensing element 44, making it easier for the wires of the temperature sensing element 44 to be routed through the extension tube 421 to the heating assembly 3, thus facilitating the wiring of the temperature sensing element 44.

[0130] It should be noted that the temperature detection element 44 can be a temperature probe or any detection element capable of detecting temperature. This embodiment does not limit the temperature detection element 44.

[0131] In some embodiments, see Figure 3 and Figure 4The bulb holder 313 has a second mounting surface 3131 facing the second side C2. The second mounting surface 3131 is provided with a plurality of mounting holes 3131a, and a heating bulb 312 is inserted into each mounting hole 3131a.

[0132] By inserting the heating bulb 312 into the mounting hole 3131a, the bulb holder 313 can surround the heating bulb 312, making the environment in which the heating bulb 312 is located safer, thereby improving the durability of the heating bulb 312 to a certain extent. On the other hand, the mounting hole 3131a plays a positioning role for the installation position of the heating bulb 312, resulting in higher installation accuracy. Furthermore, it also allows the heating bulb 312 to be installed more stably and securely in the bulb holder 313.

[0133] In some embodiments, see Figure 3 and Figure 4 The heating bulb 312 is recessed into the second mounting surface 3131.

[0134] By recessing the heating bulb 312 into the second mounting surface 3131, the heating bulb 312 is completely protected by the bulb holder 313. Compared to a heating bulb 312 protruding from the second mounting surface 3131, this further enhances the safety of the environment in which the heating bulb 312 is located, thereby increasing its durability. Furthermore, it prevents the heating bulb 312 from contacting the area M to be massaged, thus avoiding burns to the area M.

[0135] In some embodiments, the second mounting surface 3131 is a spherical surface, and the second mounting surface 3131 gradually becomes concave in the direction from the periphery of the second mounting surface 3131 to the center of the second mounting surface 3131.

[0136] By making the second mounting surface 3131 a spherical surface, and gradually concave along the periphery of the second mounting surface 3131 toward the center of the second mounting surface 3131, the second mounting surface 3131 can be better adapted to the part M to be massaged, thereby making the massage device 100 more adaptable and providing a better massage experience when massaging the part M to be massaged.

[0137] In some embodiments, see Figure 10 , Figure 10 This is a schematic diagram of the structure of a heating component 3 provided in an embodiment of this application. The heating component 3 also includes a heating film sub-component 32, which is disposed on the second side C2 of the wearing housing 1 and surrounds the bulb heating sub-component 31.

[0138] When the heating component 3 also includes a heating membrane component 32, in addition to heat therapy massage via the bulb heating component 31, heat therapy massage can also be performed via the heating membrane component 32. That is, two different types of heat therapy massage can be performed by combining the bulb heating component 31 with the heating membrane component 32. Therefore, the heat therapy massage effect is better and the experience is better.

[0139] By placing the heating membrane assembly 32 on the second side C2 of the wearing housing 1 and surrounding the bulb heating assembly 31, the middle part of the heating assembly 3 can be heated and massaged by the bulb heating assembly 31, and the outer part can be heated and massaged by the heating membrane assembly 32. The inventors have found that this heating and massage method can improve the effect of heating and massage.

[0140] Of course, the above-mentioned arrangement of the heating film sub-assembly 32 surrounding the bulb heating sub-assembly 31 is only one possible arrangement of the heating film sub-assembly 32 and the bulb heating sub-assembly 31 given in this embodiment. For another possible arrangement, see [link to relevant documentation]. Figure 11 , Figure 11 This is a schematic diagram of another heating component 3 provided in an embodiment of this application, in which the bulb heating sub-component 31 surrounds the heating film sub-component 32.

[0141] By arranging the bulb heating sub-assembly 31 around the heating membrane sub-assembly 32, the central part of the heating assembly 3 can be heated and massaged through the heating membrane assembly 32, while the outer part can be heated and massaged through the bulb heating sub-assembly 31. The inventors have found that this heating and massage method can enhance the effect of the heating and massage.

[0142] In some embodiments, see Figure 10 The heating film sub-assembly 32 includes a heating film (not shown in the figure) and a protective film 321. The heating film is disposed on the second side C2 of the wearing housing 1, and the protective film 321 is located on the side of the heating film facing the second side C2 and is wrapped around the heating film.

[0143] Since the protective film 321 is located on the side of the heating film facing the second side C2 and is wrapped around the heating film, the protective film 321 can wrap the heating film and prevent the heating film from being directly exposed, thereby preventing the area to be massaged M from being burned to a certain extent.

[0144] The protective film 321 can be a protein skin or any other element that can wrap the heating film. This embodiment does not limit the protective film 321.

[0145] The heating film mentioned above can be a graphene heating film or a PI (Polyimide Film) heating element, etc., and this embodiment does not limit it.

[0146] To make the heating film assembly 32 more flexible and have a better feel, in some embodiments, the heating film assembly 32 further includes a flexible layer (not shown in the figure), which is located between the protective film 321 and the heating film.

[0147] By setting a flexible layer between the protective film 321 and the heating film, the entire heating film sub-assembly 32 can be made more flexible, thereby improving the user experience of the massage device 100.

[0148] The flexible layer can be a sponge layer or a flexible layer of other materials, as long as it makes the entire heating film assembly 32 more flexible. This embodiment does not limit this.

[0149] To prevent the heating film assembly 32 or the bulb heating assembly 31 from burning the area M to be massaged, in some embodiments, see [link to relevant documentation]. Figure 10 The housing 1 is provided with anti-scalding protrusions 11, which protrude from the bulb heating sub-assembly 31 and the heating film sub-assembly 32 respectively along the direction from the first side C1 to the second side C2.

[0150] By making the anti-scalding protrusion 11 protrude from the bulb heating sub-assembly 31 and the heating film sub-assembly 32 respectively in the direction from the first side C1 to the second side C2, the anti-scalding protrusion 11 will support the part M to be massaged, so that the part M to be massaged cannot directly contact the heating sub-assembly 31 and the heating film assembly 32, thereby avoiding the situation of the part M to be massaged being burned by the heating sub-assembly 31 or the heating film assembly 32.

[0151] There are multiple ways to implement the aforementioned anti-scalding protrusion 11. In one possible implementation, see [link to relevant documentation]. Figure 10 The anti-scalding protrusion 11 is an anti-scalding ring, which is located between the bulb heating sub-assembly 31 and the heating film sub-assembly 32.

[0152] By positioning the anti-scalding ring between the bulb heating sub-assembly 31 and the heating film sub-assembly 32, the distance between the anti-scalding ring and the bulb heating sub-assembly 31, as well as the distance between the anti-scalding ring and the heating film assembly 32, can be made approximately equal. This can better prevent the massaged area M from coming into contact with the heating sub-assembly 31 or the heating film assembly 32, and thus better prevent the massaged area M from being burned by the heating sub-assembly 31 or the heating film assembly 32.

[0153] The aforementioned anti-scalding ring being located between the bulb heating sub-assembly 31 and the heating film sub-assembly 32 is only one possible setting position of the anti-scalding ring given in this embodiment. In other possible implementations, the anti-scalding ring can also be set in other positions, and this embodiment does not limit this.

[0154] In some embodiments, see Figure 3 The wearing shell 1 includes a shell part 12 and a mounting base 13. The shell part 12 is worn on the part M to be massaged, and the mounting base 13 is disposed on the shell part 12. The heating component 3 and the massage mechanism 2 are both disposed on the mounting base 13.

[0155] By mounting both the massage mechanism 2 and the heating element 3 on the mounting base 13, the mounting base 13 serves as a dedicated base for the massage mechanism 2 and the heating element 3, thus ensuring a more stable installation. Furthermore, the mounting base 13 can be made of a material with high rigidity, allowing for a more secure installation of the massage mechanism 2 and the heating element 3. This also allows the massage movements of the massage mechanism 2 to be better transmitted to the area M to be massaged, thereby enhancing the massage experience of the massage device 100.

[0156] In some embodiments, see Figure 1 and Figure 3 Along the direction from the first side C1 to the second side C2, the massage mechanism 2 and the heating component 3 at least partially overlap.

[0157] By making the massage mechanism 2 and the heating component 3 at least partially overlap, the distance between the massage mechanism 2 and the heating component 3 can be closer. This makes it easier for the motion massage of the massage mechanism 2 and the heat massage of the heating component 3 to be superimposed on the same area of ​​the part M to be massaged, thereby further enhancing the massage experience of the massage device 100.

[0158] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this application, and are not intended to limit them. Although this application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some or all of the technical features therein. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of this application.

Claims

1. A massage device (100), characterized in that, include: Wearing shell (1), the wearing shell (1) is used to be worn on the part (M) to be massaged; A massage mechanism (2), wherein the massage mechanism (2) is disposed on the wearing shell (1) and at least a portion of the massage mechanism (2) is located on a first side (C1) in the thickness direction of the wearing shell (1), the massage mechanism (2) being used for motion massage; and, A heating component (3) is disposed on the wearing housing (1) and at least part of the heating component (3) is located on a second side (C2) of the wearing housing (1) opposite to the first side (C1). The heating component (3) is used for hot compress massage, wherein the second side (C2) faces the part to be massaged (M).

2. The massage device (100) according to claim 1, characterized in that The heating component (3) includes: A bulb heating sub-assembly (31) is disposed on the wearing housing (1) and at least a portion of the bulb heating sub-assembly (31) is located on the second side (C2).

3. The massage device (100) according to claim 2, characterized in that The bulb heating sub-assembly (31) includes: A circuit board (311) disposed on the wearing housing (1), the circuit board (311) having a first mounting surface (3111) facing the second side (C2); and, A heating bulb (312) is disposed on the first mounting surface (3111), electrically connected to the circuit board (311), and located on the second side (C2).

4. The massage device (100) according to claim 3, characterized in that The bulb heating sub-assembly (31) also includes: A bulb holder (313) is disposed on the first mounting surface (3111), and a heating bulb (312) is mounted on the bulb holder (313) and located on the side of the bulb holder (313) facing the second side (C2).

5. The massage device (100) according to claim 4, characterized in that A snap-fit ​​seam (F) is formed between the peripheral wall of the bulb holder (313) and the wearing housing (1); The massage device (100) further includes a cover assembly (4), which has a protruding end (41) protruding from the wearing shell (1) in a direction from the first side (C1) to the second side (C2). The protruding end (41) is adapted to the part to be massaged (M) to fit the part to be massaged (M). The protruding end (41) protrudes from the heating assembly (3) in a direction from the first side (C1) to the second side (C2). A portion of the structure of the cover assembly (4) is snapped and fixed to the snap-fit ​​seam (F).

6. The massage device (100) according to claim 5, characterized in that The cover assembly (4) includes: A heat insulation part (42) is provided on the heating assembly (3) and located on the side of the heating assembly (3) facing the second side (C2). A portion of the structure of the heat insulation part (42) is snapped and fixed to the snap joint (F). The fitting part (43) covers the heat insulation part (42) and is located on the side of the heat insulation part (42) facing the second side (C2), and the fitting part (43) has the protruding end (41).

7. The massage device (100) according to claim 6, characterized in that The bonding portion (43) includes: An enclosing wall (431), one end of which is disposed at the heat insulation part (42) and the other end of which is located on the side of the heat insulation part (42) facing the second side (C2); and, A fitting wall (432) is disposed at the other end of the enclosing wall (431), the fitting wall (432) and the enclosing wall (431) enclose to form a cavity (K), at least a portion of the structure of the heat insulation part (42) is located in the cavity (K), and the fitting wall (432) forms the protruding end (41).

8. The massage apparatus (100) according to claim 6, characterized in that The cover assembly (4) also includes: A temperature sensing element (44) is disposed at the heating assembly (3) for detecting the temperature at the heating assembly (3), or the temperature sensing element (44) is disposed at the heat insulation part (42) for detecting the temperature at the heat insulation part (42).

9. The massage device (100) according to claim 8, characterized in that An extension tube (421) is provided on the heat insulation part (42), the extension tube (421) extends to the heating component (3), and the temperature detection element (44) is provided on the heat insulation part (42) and located inside the extension tube (421).

10. The massage apparatus (100) according to claim 4, characterized in that, The bulb holder (313) has a second mounting surface (3131) facing the second side (C2), and the second mounting surface (3131) is provided with a plurality of mounting holes (3131a), and the heating bulb (312) is inserted into each mounting hole (3131a).

11. The massage device (100) according to claim 10, characterized in that, The heating bulb (312) is recessed in the second mounting surface (3131).

12. The massage device (100) according to claim 11, characterized in that The second mounting surface (3131) is a spherical surface, and the direction from the periphery of the second mounting surface (3131) to the center of the second mounting surface (3131) is gradually concave.

13. The massage device (100) according to any one of claims 2-12, characterized in that, The heating assembly (3) also includes: A heating film sub-assembly (32) is disposed on the second side (C2) of the wearing housing (1) and surrounds the bulb heating sub-assembly (31), or the heating film sub-assembly (32) is disposed on the second side (C2) of the wearing housing (1) and the bulb heating sub-assembly (31) surrounds the heating film sub-assembly (32).

14. The massage device (100) according to claim 13, characterized in that The heating film sub-assembly (32) includes: A heating film, the heating film being disposed on the second side (C2) of the wearing housing (1); and, A protective film (321) is located on the side of the heating film facing the second side (C2) and is wrapped around the heating film.

15. The massage device (100) according to claim 14, characterized in that The heating film sub-assembly (32) also includes: A flexible layer is located between the protective film (321) and the heating film.

16. The massage apparatus (100) according to claim 13, characterized in that The wearing housing (1) is provided with anti-scalding protrusions (11), which protrude from the bulb heating sub-assembly (31) and the heating film sub-assembly (32) respectively in the direction from the first side (C1) to the second side (C2).

17. The massage device (100) according to claim 16, characterized in that The anti-scalding protrusion (11) is an anti-scalding ring, which is located between the bulb heating sub-assembly (31) and the heating film sub-assembly (32).

18. The massage device (100) according to any one of claims 1-12 or 14-17, characterized in that, The wearing shell (1) includes: A housing portion (12) for wearing on the area to be massaged (M); and, Mounting base (13) is disposed on the housing part (12), and the heating component (3) and the massage mechanism (2) are both disposed on the mounting base (13).

19. The massage device (100) according to claim 18, characterized in that Along the direction from the first side (C1) to the second side (C2), the massage mechanism (2) at least partially overlaps with the heating component (3).