Massage structure and massager
By adopting the design of soft massage head and roller swing seat in the massager, the problems of high friction and noise of hard massage balls are solved. Combined with the graphene heating structure and light-emitting device, the comfort and aesthetics are improved.
Patent Information
- Application Number
- CN202511157970.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-19
- Publication Date
- 2025-10-10
AI Technical Summary
The massage balls of existing massagers are mostly made of hard materials, which leads to high friction, easy accumulation of dirt and grime, poor comfort, and noise problems.
It adopts a soft massage head and bionic functional design, combined with the rotating connection between the roller and the swing seat to reduce friction and noise; at the same time, it uses a graphene heating structure and a modular light-emitting device to improve the aesthetics and massage effect.
The massage comfort is improved, the friction and noise are reduced, and the aesthetics and massage effect of the massager are enhanced.
Smart Images

Figure CN120753930A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of massagers, in particular to a massage structure and a massager. BACKGROUND
[0002] A massager combines principles of physics, bionics, bioelectricity and traditional Chinese medicine, and simulates manual massage techniques (such as kneading, pounding, acupuncture) through mechanical vibration, electrical pulse or air pressure. The core functions of a massager include: relaxing muscles, promoting blood circulation, relieving chronic pain (shoulder and neck / back pain), improving sleep quality, and some models also have slimming and immune regulation functions.
[0003] With the improvement of living standards, massagers have gradually become an important tool in modern life. However, the existing massager includes a massage head structure, which is driven to rotate by a motor, and a plurality of massage balls are arranged on the base to achieve a squeezing massage effect. Currently, most massage balls adopt a spherical structure, and most of the massage balls are steel balls, so there may be the following shortcomings: First, during use, the friction is large, especially after long-term use, dirt is easily accumulated, and the friction is further increased. Second, most of the current massage products use hard materials to replace hand massage, and the comfort is poor.
[0004] Therefore, the present application provides a massage structure and a massager. SUMMARY
[0005] The present application aims to at least solve one of the technical problems existing in the prior art. To this end, the present application provides a massage structure, which uses a soft massage head to replace hand massage, i.e. uses a bionic function to improve comfort. Since a soft massage head is used, if the soft massage head does not roll during the rotation of the massage device, a large friction force may be generated when the soft massage head contacts the skin or fabric. Therefore, the roller is supported to reduce contact with the swing seat, thereby reducing the friction force. Further, if only the roller is lifted, the roller surface will still generate a radial friction force during the rotation of the massage device and the rolling of the roller itself, or generate noise during the massage process. Therefore, the swing seat is used to swing the roller to reduce the radial friction force and noise. The defects of the current massage head structure are overcome.
[0006] The present application also provides a massager.
[0007] According to the massage structure provided by the present application, the massage structure comprises: a driving device; a massage device arranged on the output end of the driving device and driven to rotate by the driving device; The massage device comprises: a base, at least one mounting position is arranged on the base, and the base is arranged on the output end of the driving device; a swing seat, the swing seat is arranged on the mounting position and swing-connected with the base; a roller, the roller is arranged on the swing seat and rotationally connected with the swing seat.
[0008] The massage device of the present application realizes the swing of the roller by adding the swing seat, and the roller is rotationally connected with the swing seat, so that the roller can swing along with the angle of the muscle during the rotation of the massage device driven by the driving device, thereby reducing the friction and noise.
[0009] In some embodiments of the present application, the driving device can drive two massage devices to rotate simultaneously.
[0010] In some embodiments of the present application, the massage device further comprises a first housing, an upper cover, the base is arranged in the first housing, the upper cover is arranged on the first housing and above the base, and a first avoiding position for the roller to pass through is arranged on the upper cover.
[0011] In some embodiments of the present application, the swing seat swings along a first center line, the roller rotates along a second center line, and the first center line is arranged perpendicularly to the second center line.
[0012] In some embodiments of the present application, the swing angle of the swing seat is ±30°.
[0013] In some embodiments of the present application, the mounting position comprises two support columns, a first clamping groove is arranged on the inner side of the two support columns, and a first step for embedding the first clamping groove is arranged on the two sides of the swing seat; the first clamping groove is in a cylindrical shape, the first step corresponds to the cylindrical shape, and a first notch is arranged above the first clamping groove to enable the first step to be embedded, and the width of the first notch is smaller than the inner diameter of the first clamping groove.
[0014] In some embodiments of the present application, the roller comprises a central rotating shaft and a soft massage head or a hard massage head sleeved on the outer side of the central rotating shaft; a second clamping groove for embedding the two ends of the central rotating shaft is arranged on the two sides of the swing seat, the second clamping groove is in a cylindrical shape, the two ends of the central rotating shaft correspond to the cylindrical shape, and a second notch is arranged above the second clamping groove to enable the two ends of the central rotating shaft to be embedded, and the width of the second notch is smaller than the inner diameter of the second clamping groove.
[0015] In some embodiments of the present application, the upper cover is detachably connected with the first housing, at least two buckles are arranged on the upper cover, and a third clamping groove for cooperating with the buckles is arranged on the inner side of the first housing.
[0016] According to the massage device, the massage device is provided with the massage structure.
[0017] In some embodiments of the present application, the massage device further comprises: a center body, a cavity for mounting the driving device is arranged inside the center body, at least one massage site is arranged above the center body, and a first through hole is arranged at the bottom of the massage site and is communicated with the cavity; The number of the massage devices corresponds to the number of the massage sites.
[0018] In some embodiments of the present application, the massage device further comprises: a heating structure, the heating structure is arranged on the mounting site corresponding to the massage device; The heating structure comprises: a second housing, a mounting cavity is arranged inside the second housing; a heating device, the heating device is arranged in the mounting cavity and is used for generating heat; a light-emitting device, the light-emitting device is arranged in the mounting cavity and is used for emitting light; The heating device is closer to the opening of the mounting cavity than the light-emitting device, and a plurality of light-transmitting holes are arranged on the outer surface of the second housing and are communicated with the mounting cavity.
[0019] In some embodiments of the present application, at least two protruding parts are arranged above the center body, a massage site is formed between every two adjacent protruding parts, and the massage site adopts an ergonomic structure.
[0020] In some embodiments of the present application, a heating structure is embedded between every two adjacent protruding parts and on the surface of the center body, and the heating structure can be arranged with one or two corresponding to any massage device.
[0021] In some embodiments of the present application, the center body adopts a first PU piece and a second PU piece, the cavity is formed between the first PU piece and the second PU piece, the protruding part, the first through hole and the massage site are arranged on the second PU piece.
[0022] In some embodiments of the present application, the heating device comprises a substrate, a heating layer arranged on the substrate, the heating layer is located between the heating layer and the heating device; wherein the substrate is completely separated from the second housing, or one side of the substrate is connected with the second housing, that is, the substrate and the second housing are integrated and are directly formed by a stamping process.
[0023] In some embodiments of the present application, the second shell body is made of a heat-conducting material, which can be metal, such as stainless steel, or plastic with a plating layer, preferably stainless steel, for better heat conduction.
[0024] In some embodiments of the present application, the heat generated by the heating device is transferred to the outer surface of the second shell body through the side wall of the second shell body, so that the outer surface of the second shell body has heat.
[0025] In some embodiments of the present application, the substrate is made of a metal plate, and both the second shell body and the substrate of the present application can be made of stainless steel. After the heating layer generates heat, the heat is conducted to the side wall of the second shell body through the substrate, and then to the outer surface of the second shell body through the side wall of the second shell body. The heat then acts on the desired parts, such as the soles of the feet, the lower legs, or the arms.
[0026] In some embodiments of the present application, the heating layer is made of any one of a graphene layer, an electric heating wire, an electric heating sheet, a mica sheet, a silica gel heating sheet, a carbon fiber heating sheet, and a ceramic heating sheet. Preferably, the graphene layer is used, which not only generates heat but also generates certain infrared radiation, which then penetrates the light emitting device and the second shell body to act on the desired parts, such as the soles of the feet, the lower legs, or the arms.
[0027] In some embodiments of the present application, the light emitting device includes a light guide plate and a light emitting element disposed on the light guide plate, or the light emitting device is a lamp panel, such as an LED lamp panel. The light guide plate is preferably used with the light emitting element structure to avoid direct eye exposure to light.
[0028] In some embodiments of the present application, the light guide plate can be made of a transparent material, such as a plastic transparent plate or a transparent glass plate, such as an acrylic plate or a PC plate. The shape of the upper surface can be adapted to the structure of the surface of the second shell body. The light emitted by the light emitting element is transmitted through the light guide plate and then emitted from the light transmission hole. The color of the light can be set to any one of red, green, or blue, or any combination of the colors.
[0029] In some embodiments of the present application, the light emitting element is a light strip that surrounds the outside of the light guide plate and emits light through the light guide plate, avoiding eye strain.
[0030] In some embodiments of the present application, the substrate has a second through hole, or the side wall of the second shell body has a relief position, so that the first wire of the heating layer and the second wire of the light emitting element can pass through, and the first wire and the second wire are used to supply power to the heating layer and the light emitting element, respectively.
[0031] In some embodiments of the present invention, a plurality of fixing buckles are further provided on the second outer shell for confining the light-emitting device and the heat-generating device within the installation cavity.
[0032] In some embodiments of the present invention, the fixing buckle is T-shaped so as to better confine the light-emitting device and the heating device in the installation cavity, making the heating structure modular as a whole.
[0033] In some embodiments of the present invention, the second outer shell includes a main body portion for generating heat and an annular portion provided on an outer edge of the main body portion.
[0034] In some embodiments of the present invention, the main body and the annular portion form a mounting cavity for accommodating a heating device and a light-emitting device. Specifically, the heating device and the light-emitting device are located inside the annular portion, with the main body, the light-emitting device, and the heating device disposed sequentially. A plurality of light-transmitting holes are disposed in the main body, and the fixing buckle is disposed below the annular portion. Heat generated by the heating device is conducted through the annular portion to the outer surface of the main body. BRIEF DESCRIPTION OF THE DRAWINGS
[0035] The drawings described herein are used to provide further understanding of the present invention and constitute a part of the present invention. The exemplary embodiments of the present invention and their descriptions are used to explain the present invention and do not constitute improper limitations on the present invention.
[0036] in: Figure 1 It is a schematic structural diagram of the massage device of the present invention; Figure 2 is a top view of the massage device of the present invention; Figure 3 This invention Figure 2 AA section view; Figure 4 This invention Figure 2 BB cross-sectional view; Figure 5 is a schematic diagram of the interior of the massage device of the present invention; Figure 6 It is a structural schematic diagram of the swing seat and the roller of the present invention; Figure 7 It is a structural schematic diagram of the swing seat of the present invention; Figure 8 It is a structural schematic diagram of the roller of the present invention; Figure 9 It is a structural schematic diagram of the upper cover of the present invention; Figure 10 This invention Figure 9 A partial enlarged view of Figure 11 It is a structural schematic diagram of the gland of the present invention; Figure 12is a structural schematic view of the massager of the present application; Figure 13 is a structural schematic view of the central body of the present application; Figure 14 is a structural schematic view of the heating structure of the present application Figure 1 ; Figure 15 is a structural schematic view of the heating structure of the present application Figure 2 ; Figure 16 is an exploded schematic view of the heating structure of the present application; Figure 17 is a structural schematic view of the outer shell of the present application; Figure 18 is a structural schematic view of the light emitting device of the present application; Figure 19 is a structural schematic view of the heating device of the present application.
[0037] Explanation of reference numerals: 10, massaging device; 11, base; 111, mounting position; 112, support column; 1121, first clamping groove; 11211, first notch; 113, second avoiding position; 12, swing seat; 121, first step; 122, second clamping groove; 1221, second notch; 13, roller; 131, central rotating shaft; 132, soft massaging head; 14, upper cover; 141, first avoiding position; 142, clasp; 1421, elastic arm; 1422, clamping part; 143, third avoiding position; 15, first outer shell; 151, bottom shell; 152, gland; 1521, third clamping groove; 20, driving device; 30, central body; 31, first PU piece; 32, second PU piece; 301, cavity; 302, protruding part; 303, massaging position; 304, first through hole; 305, mounting groove; 40, heating structure; 41, second outer shell; 4101, main body; 4102, annular part; 411, mounting cavity; 412, fixing clasp; 413, light transmission hole; 42, heating device; 421, base plate; 4211, second through hole; 422, heating layer; 43, light emitting device; 431, light guide plate; 432, light emitting piece. DETAILED DESCRIPTION
[0038] In order to make the technical problems, technical solutions and beneficial effects of the present application more clear and understandable, the present application is further described in detail below in combination with the drawings and examples. It should be understood that the specific examples described herein are only used to explain the present application and do not limit the present application. Example 1
[0039] Please refer to Figures 1 to 11, is a massage structure as an embodiment 1 of the present application, comprising a driving device 20, a massage device 10, the massage device 10 is arranged at the output end of the driving device 20 and is driven to rotate by the driving device 20; the massage device 10 comprises: a base 11, an oscillating seat 12, a roller 13, at least one mounting position 111 is arranged on the base 11, and the base 11 is arranged at the output end of the driving device 20; the oscillating seat 12 is arranged on the mounting position 111 and is swingably connected with the base 11; the roller 13 is arranged on the oscillating seat 12 and is rotatably connected with the oscillating seat 12; three rollers 13 are arranged in the present application, three mounting positions 111 are arranged, and the rollers 13 are arranged on the base 11 according to needs. The massage device of the present application increases the oscillating seat 12 to realize the oscillation of the roller 13, and the roller 13 is rotatably connected with the oscillating seat 12; in the process of driving the massage device 10 to rotate by the driving device 20, the roller 13 can be deflected to adapt to the angle of the muscle, so as to reduce the friction force; in addition, the rolling of the roller 13 and the oscillation of the oscillating seat 12 can reduce the noise. Further, the driving device 20 can drive two massage devices 10 to rotate simultaneously. The massage device of the present application adopts soft massage heads to replace human hands for massage, that is, the bionic function is adopted, so that the massage touch point is similar to the flexibility of the finger head, and the comfort is improved; since the soft massage heads are adopted, if the soft massage heads do not roll in the process of rotating the massage device, a large friction force may be generated when the soft massage heads contact the skin or cloth, therefore, the roller is supported to reduce the contact with the oscillating seat, so as to reduce the friction force, that is, the soft massage heads are supported by a central rotating shaft, so that a distance is generated between the outer surface of the soft massage heads and the oscillating frame; further, if only the roller is supported, the roller surface will have radial friction force generated in the process of rotating the massage device and rolling itself, or noise is generated in the process of massage, which affects the experience of the user, and long-time use will easily damage the skin or cloth, therefore, the oscillation of the roller is realized by the oscillating seat, so as to reduce the radial friction force and noise.
[0040] For details, please refer to Figure 4 、 9-11, the massage device 10 structure further comprises a first shell 15, the upper cover 14, the base 11 is arranged in the first shell 15, the upper cover 14 is arranged on the first shell 15 and above the base 11, the first avoiding position 141 is opened on the upper cover 14 for the roller 13 part through. The shell comprises a bottom shell 151, a gland 152 arranged above the bottom shell 151, the base 11 is arranged in the bottom shell 151 through the gland 152, the upper cover 14 is arranged in the inner side of the gland 152; the upper cover 14 and the first shell 15 are detachably connected, when the roller 13 has a problem or needs to be cleaned, in order to replace the roller 13 or maintain the roller 13, at least two buckles 142 are arranged on the upper cover 14, the third clamping groove 1521 for cooperating with the buckle 142 is arranged in the inner side of the first shell 15, after the upper cover 14 is installed on the first shell 15, the buckle 142 is embedded in the third clamping groove 1521. The third clamping groove 1521 is arranged on the gland 152. The buckle 142 comprises a elastic arm 1421 and a clamping portion 1422 arranged on the elastic arm 1421, two third avoiding positions 143 are arranged on the upper cover 14 to form the elastic arm 1421 with elasticity, the clamping portion 1422 is arranged below the elastic arm 1421 and at the outer edge, through the arrangement of the elastic arm 1421, the detachable connection between the upper cover 14 and the first shell 15 can be realized. Further, the gland 152 and the bottom shell 151 can be fixed by welding or glue bonding.
[0041] The first annular step is arranged outside the base 11, the second annular step is arranged in the bottom shell 151, the third annular step is arranged on the gland 152, when the base 11 is in the first shell 15, the first annular step is located between the second annular step and the third annular step, so that the base 11 can be better limited between the gland 152 and the bottom shell 151.
[0042] For details, please refer to Figure 5The mounting position 111 comprises two support columns 112 which can be directly formed on the base 11, and the first clamping groove 1121 is arranged on the inner side of the two support columns 112, and the first step 121 is arranged on the two sides of the swing seat 12 and is used for being embedded into the first clamping groove 1121. The first clamping groove 1121 is in a cylindrical shape, the first step 121 is in a cylindrical shape, and a first notch 11211 is arranged above the first clamping groove 1121 to enable the first step 121 to be embedded, and the width of the first notch 11211 is smaller than the inner diameter of the first clamping groove 1121. Since the width of the first notch 11211 is smaller than the first clamping groove 1121, the swing seat 12 can be prevented from being separated from the mounting position 111, and meanwhile, the swing seat 12 can be ensured to swing in the first clamping groove 1121. Under the action of an external force, the swing seat 12 can be removed, so that the swing seat 12 can be replaced or maintained. The second avoiding position 113 is arranged on the base 11 to satisfy the swing angle of the swing seat 12. The swing seat 12 adopts a weight-reducing structure, and the unnecessary parts are hollowed out to reduce the weight of the swing seat 12. Of course, the first clamping groove 1121 of the embodiment can be directly formed on the base 11.
[0043] For details, please refer to Figure 8 The roller 13 comprises a central rotating shaft 131 and a soft massage head 132 (having a Shore hardness of 25±3) or a hard massage head which is sleeved outside the central rotating shaft 131. The soft massage head 132 can improve the comfort degree in the massage process, that is, the soft massage head 132 adopts a bionic function to improve the comfort degree of the massage. Although the soft massage head 132 can increase the friction force, that is, the soft massage head directly generates a force with the skin or fabric, and has a large friction force in the massage process, the present application can overcome the friction force by rotation. Since the radius of rotation is small, the radial friction force exists, and the present application uses the swing inclination angle to overcome the radial friction force.
[0044] For details, please refer to Figure 7 The second clamping groove 122 is arranged on the two sides in the swing seat 12 and is used for embedding the two ends of the central rotating shaft 131, the second clamping groove 122 is in a cylindrical shape, the two ends of the central rotating shaft 131 are in a cylindrical shape, and a second notch 1221 is arranged above the second clamping groove 122 to enable the two ends of the central rotating shaft 131 to be embedded, and the width of the second notch 1221 is smaller than the inner diameter of the second clamping groove 122. The second clamping groove 122 and the second notch 1221 are arranged to realize the detachable connection between the roller 13 and the swing seat 12. Under the action of an external force, the second notch 1221 is arranged to facilitate the installation of the roller 13 into the second clamping groove 122 or the disassembly of the roller 13 from the second clamping groove 122. Without the external force, the roller 13 can be rotationally connected in the second clamping groove 122.
[0045] The swing seat 12 swings along a first center line, and the roller 13 rotates along a second center line, the first center line is perpendicular to the second center line. The first center line is the connecting line of the center axes of the two first clamping grooves 1121, and the second center line is the connecting line of the center axes of the two second clamping grooves 122, so as to realize the swing direction and the rotation of the roller 13 at the same time. The swing angle of the swing seat 12 is ±30°, that is, it can swing left and right along the center line of the center axis. Preferably, the swing angle is 15°. Embodiment 2
[0046] Please refer to Figures 1 to 19 It is a massager as an embodiment 2 of the present application, comprising a massage device, the massage device is constructed as a massage structure of embodiment 1. The massager further comprises a center body 30, the center body 30 is internally provided with a cavity 301 for mounting the driving device 20, and at least one massage position 303 is arranged above the center body 30, and a first through hole 304 in communication with the cavity 301 is arranged at the bottom of the massage position 303; the number of the massage devices 10 corresponds to the number of the massage positions 303, and at least two protruding portions 302 are arranged on the center body 30, and a massage position 303 is formed between every two adjacent protruding portions 302. The heating structure 40 is embedded between every two protruding portions 302 and on the surface of the center body 30, and one or two heating structures are arranged corresponding to any massage device 10. Preferably, three protruding portions 302 are arranged on the center body 30 to form two massage positions 303, and two massage devices 10 are arranged corresponding to the massage positions 303, which adopt ergonomic structure. The center body 30 adopts a first PU piece 31 and a second PU piece 32, the cavity 301 is formed between the first PU piece 31 and the second PU piece 32, and the protruding portions 302, the first through hole 304 and the massage positions 303 are arranged on the second PU piece 32.
[0047] Please refer to Figures 12-19The massager further comprises a heating structure 40, and a mounting groove 305 for embedding the heating structure 40 is arranged in the massage position 303 of the central body 30, and a third through hole for passing a wire is further arranged at the bottom of the mounting groove 305; the heating structure 40 is arranged on the mounting position 111 of the massage device 10; since the existing part of the massager has the heating structure, a heating sheet (for example, a graphene heating sheet) is adopted, and an aluminum foil and other media are added, the appearance is not beautiful, and a shell or a cloth cover needs to be additionally used for shielding, therefore, the heating structure 40 of the massager comprises a second shell body 41, a heating device 42 and a light-emitting device 43, the second shell body 41 is internally provided with a mounting cavity 411; the heating device 42 is arranged in the mounting cavity 411 and is used for generating heat; the light-emitting device 43 is arranged in the mounting cavity 411 and is used for emitting light; the heating device 42 is closer to the opening of the mounting cavity 411 than the light-emitting device 43, and a plurality of light-transmitting holes 413 in communication with the mounting cavity 411 are further arranged on the outer surface of the second shell body 41, so that the light of the light-emitting device 43 can be transmitted, and the appearance is more beautiful. The graphene heating structure 40 of the massager protects the heating device 42 by arranging the second shell body 41, and the heating device 42 arranged can generate heat and transmit the heat to the massage position during the massage process, the skin surface temperature is improved, the blood circulation is improved, the massage effect is better, and the light-emitting device 43 is further arranged, so that the overall graphene heating structure 40 is more beautiful during use, and the graphene heating structure 40 is modularized as a whole and can be applied to different massagers, has high adaptability and only needs to be adapted in appearance.
[0048] Specifically, refer to Figure 13 、 14 , 17, the second shell body 41 is a heat-conducting member, which can be a metal material such as stainless steel, aluminum, copper or iron, or a plastic member with a metal plating layer on the outer surface, preferably a stainless steel material, which has better heat conduction effect and can be used as an appearance part, and the whole is more beautiful and does not need to be covered with a cloth cover. The heat generated by the heating device 42 is transmitted to the outer surface of the second shell body 41 through the side wall of the second shell body 41, so that the outer surface of the second shell body 41 has heat, and a plurality of light-transmitting holes 413 in communication with the mounting cavity 411 are further arranged on the outer surface of the second shell body 41, the shape of the light-transmitting holes 413 can be any one or any combination of a circular shape, a strip shape and an arc shape, and is selected and arranged according to actual needs. The second shell body 41 is similar to a metal mesh cover structure and has the following functions: first, it has a protection or shielding effect; second, the light-transmitting holes 413 are arranged, that is, they are hollow, which not only allows the far-infrared light of the graphene heating layer 422 to penetrate, but also allows the light of the light-emitting device 43 (that is, the light-emitting member 432 similar to a lamp strip) to penetrate; third, it is used for conducting the heat generated by the graphene heating layer 422.
[0049] Please refer to Figure 16 , 19 , the heating device 42 comprises a substrate 421, a heating layer 422 arranged on the substrate 421, and the heating layer 422 is located between the heating layer 422 and the heating device 42. The substrate 421 is a metal plate, for example, a stainless steel plate, which is matched with the second shell 41 to form a protection and protection effect, and can also conduct the heat generated by the heating layer 422 to the second shell 41 through the substrate 421, that is, the second shell 41 and the substrate 421 of the present application can be made of stainless steel material, after the heating layer 422 generates heat, the heat is conducted to the side wall of the second shell 41 through the substrate 421, and then conducted to the outer surface of the second shell 41 through the side wall of the second shell 41, realizing the function of rapid heat conduction, and finally the heat acts on the required part, such as the sole, calf or arm. Further provided is that the heating layer 422 is made of any one of graphene layer, electric heating wire, electric heating sheet, mica sheet, silica gel heating sheet, carbon fiber heating sheet and ceramic heating sheet. Preferably, the graphene layer is used, which can not only generate heat, but also generate certain infrared radiation, which then penetrates the light emitting device 43 and the second shell 41 to act on the required part, such as the sole, calf or arm. In the present application, the substrate 421 is completely separated from the second shell 41, or one side of the substrate 421 is connected with the second shell 41, that is, the substrate 421 and the second shell 41 are integrated structure, which is directly formed by stamping process, if the integrated structure is used, the material of the substrate 421 and the second shell 41 is stainless steel material, when the substrate 421 is connected with one side of the second shell 41, the heat conduction efficiency can be improved, after the light emitting device 43 is placed, the substrate 421 with the heating layer 422 is rotated with the second shell 41, and then buckled through the fixing buckles.
[0050] Please refer to Figure 16 , 18The light emitting device 43 adopts the following two ways: one, the light emitting device 43 includes a light guide plate 431 and a light emitting piece 432 arranged on the light guide plate 431; and two, the light emitting device 43 adopts a lamp plate, for example, an LED lamp plate, which can be at least one lamp bead, for example, an LED lamp bead, arranged on a circuit board. Preferably, the light guide plate 431 is combined with the light emitting piece 432 structure, and the light guide plate 431 can avoid direct light from shining into the eyes. The light guide plate 431 can be a transparent piece, which can be a plastic transparent plate or a transparent glass plate, for example, an acrylic plate or a PC plate. The shape of the upper surface can be adapted to the structure of the surface of the second outer shell 41. The light emitted by the light emitting piece 432 is transmitted through the light guide plate 431 and then transmitted from the light transmission hole 413. The color of the light can be set to any one of red, green or blue, or any switching of several colors. The light emitting piece 432 adopts a lamp strip (i.e., an LED lamp strip) and surrounds the outside of the light guide plate 431 and emits light through the light guide plate, avoiding the naked eye from seeing the lamp bead and being dazzling. When the light emitting device 30 is installed in place, the light emitting piece is located inside the outer shell. The light emitting device 43 provided by the present application allows the user to better understand the graphene far-infrared light wave and the temperature perceived by the naked eye. A gap (i.e., a light transmission hole) is provided in the middle of the second outer shell, and a transparent light guide plate 4431 is arranged between the graphene and the light emitting device 43. An LED lamp strip (preferably red light, for example, red light with a wavelength of 625-630 nm, which has the purpose of whitening) is installed around the light guide plate 31, and the red light emitted by the LED lamp strip during the use of the heating layer of the graphene.
[0051] The second through hole 4211 is arranged on the substrate 421, or an avoiding position is arranged on the side wall of the second outer shell 41, so that the first wire of the heating layer 422 and the second battery of the light emitting piece 432 can pass through, and the first wire and the second wire are used to supply power to the heating layer 422 and the light emitting piece 432, respectively.
[0052] For details, please refer to Figure 15 , 17The second shell body 41 is further provided with a plurality of fixing buckles 412 for limiting the light emitting device 43 and the heat generating device 42 in the mounting cavity 411. When the second shell body 41 is completely separated from the base plate 421, a plurality of fixing buckles 412 are arranged at the opening of the mounting cavity 411, and when one side of the base plate 421 is connected (which can be understood as rotary connection) with the second shell body 41, the fixing buckles 412 can be arranged at the three edges of the opening of the mounting cavity 411 which are not connected with the base plate 421. The fixing buckle 412 is in a T-shaped shape, so as to better limit the light emitting device 43 and the heat generating device 42 in the mounting cavity 411, so that the heat generating structure 40 is modularized as a whole. Before buckling, the fixing buckle 412 is an extension of the second shell body 41, and after the light emitting device 43 and the heat generating device 42 are installed in place, the fixing buckle 412 is folded inward, and after buckling, compared with before buckling, the inward folding is 90 degrees or tends to 90 degrees. In the embodiment, six fixing buckles 412 are arranged, two on each side of the long side, and one on each side of the short side. The heat generating device 42 and the light emitting device 43 can be well limited in the mounting cavity 411 of the second shell body 41 by the six fixing buckles 412; the fixing buckle 412 can also play a role in transferring heat, and the heat generated by the heat generating device 43 is quickly transferred to the second shell body 41 through the plurality of fixing buckles 412, improving the heat transfer efficiency. The fixing buckle 412 can be provided in plurality, further improving the heat transfer efficiency, and the fixing buckle 412 can be provided with heat-conducting glue when buckling, and the heat-conducting glue is located between the fixing buckle 412 and the base plate 421 after the fixing buckle 412 is buckled, further improving the heat transfer efficiency.
[0053] For details, please refer to Figure 17 The second shell body 41 includes a main body 4101 part for heat generation and a ring-shaped part 4102 arranged at the outer edge of the main body 4101 part. The main body 4101 part and the ring-shaped part 4102 form a mounting cavity 411 for placing the heat generating device 42 and the light emitting device 43. Specifically, the heat generating device 42 and the light emitting device 43 are located inside the ring-shaped part 4102, and the main body 4101 part, the light emitting device 43 and the heat generating device 42 are arranged in sequence. A plurality of light transmission holes 413 are arranged on the main body 4101 part, and the fixing buckle 412 is arranged below the ring-shaped part 4102. The heat generated by the heat generating device 42 is conducted to the outer surface of the main body 4101 part through the ring-shaped part 4102. The fixing buckle 412 and the ring-shaped part 4102 and the main body 4101 part are not an integral structure and can be punched from a plate material.
[0054] For details, please refer to Figure 13The center body 30 is provided with a mounting groove 305, the heating device 42 is embedded in the mounting groove 305, and the number of the graphene heating structure 40 is set according to actual needs; and further provided is that a back glue is arranged on the back of the graphene heating structure 40 (i.e. the back of the substrate 421), and is pasted on the mounting groove 305; meanwhile, a third through hole is arranged at the bottom of the mounting groove 305 for the first wire and the second wire to pass through, and then is electrically connected with the control mainboard of the massager, the connection mode is not shown in the prior art, and will not be described in detail.
[0055] In summary, the massage device of the present application uses soft massage heads to replace human hands for massage, i.e. uses bionic function, so that the massage touch points are similar to the flexibility of fingers, improving comfort; since soft massage heads are used, if they do not roll during the rotation of the massage device, a relatively large friction force may be generated when they contact the skin or cloth, therefore the rollers are supported to reduce contact with the swing seat, thereby reducing the friction force, i.e. the soft massage heads are raised by a central shaft to generate a distance between the outer surface of the soft massage heads and the swing frame; further, if only the rollers are raised, radial friction force may be generated on the surface of the rollers during the rotation of the massage device and the rolling of the rollers, or noise is generated during the massage process, affecting the experience of users, and long-term use may easily damage the skin or cloth, therefore the swing seat is used to swing the rollers to reduce the radial friction force and noise; further, the graphene heating structure of the present application protects the heating device by arranging a second housing, and the heating device arranged can generate heat to heat the massage position during the massage process, so that the massage effect is better, and the graphene heating structure is further provided with a light emitting device, so that the overall graphene heating structure is more beautiful during use, the graphene heating structure of the present application is modularized as a whole, can be applied to different massagers, has high adaptability, and only needs to be adapted in appearance, the graphene heating structure of the present application is beautiful and elegant as a whole, and can be directly used as an appearance part.
[0056] The above describes the present application in conjunction with the drawings, and obviously the specific implementation of the present application is not limited by the above mode, as long as various non-essential improvements are made by using the method concept and technical scheme of the present application, or the concept and technical scheme of the present application is directly applied to other occasions without improvement, all of which are within the protection scope of the present application.
Claims
1. A massage structure, characterized in that: include: Drive device; a massage device, the massage device being arranged at the output end of the driving device and being driven to rotate by the driving device; The massage device comprises: A base, wherein at least one mounting position is provided on the base, and the base is provided at the output end of the driving device; a swing seat, the swing seat being arranged on the mounting position and being swingably connected to the base; The roller is arranged on the swing seat and is rotatably connected to the swing seat.
2. A massage structure according to claim 1, characterized in that: The massage device further comprises a first outer shell and an upper cover. The base is arranged in the first outer shell. The upper cover is arranged on the first outer shell and located above the base. A first avoidance position for the roller part to pass through is defined on the upper cover.
3. A massage structure according to claim 1, characterized in that: The swing seat swings along a first center line, and the roller rotates along a second center line. The first center line is perpendicular to the second center line.
4. A massage structure according to claim 1, characterized in that: The mounting position includes two supporting columns, a first card slot is provided on the inner side of the two supporting columns, and a first step for embedding into the first card slot is provided on both sides of the swing seat; the first card slot is cylindrical, corresponding to the first step being cylindrical, and a first notch is provided above the first card slot to allow the first step to be embedded, and the width of the first notch is smaller than the inner diameter of the first card slot.
5. The massage structure according to claim 1, characterized in that: The roller includes a central rotating shaft and a soft massage head or a hard massage head sleeved on the outside of the central rotating shaft; second slots for embedding the two ends of the central rotating shaft are provided on both sides of the swing seat, the second slots are cylindrical, corresponding to the cylindrical ends of the central rotating shaft, and a second notch is provided above the second slot to allow the two ends of the central rotating shaft to be embedded, and the width of the second notch is smaller than the inner diameter of the second slot.
6. A massager, characterized in that: A massage structure according to any one of claims 1 to 5 is adopted.
7. A massager according to claim 6, characterized in that: The massager also includes: A central body, wherein a cavity for mounting a driving device is provided inside the central body, at least one massage position is provided above the central body, and a bottom of the massage position is provided with a first through hole communicating with the cavity; The number of the massage devices is set corresponding to the number of massage positions.
8. The massager according to claim 6, characterized in that: The massager also includes: A heating structure, the heating structure being arranged at a mounting position corresponding to the massage device; The heating structure comprises: a second outer shell, wherein a mounting cavity is provided inside the second outer shell; a heating device, the heating device being disposed in the mounting cavity and being used to generate heat; a light emitting device, the light emitting device being disposed in the mounting cavity and configured to emit light; The heating device is closer to the opening of the installation cavity than the light emitting device, and a plurality of light-transmitting holes communicating with the installation cavity are further provided on the outer surface of the second housing.
9. The massager according to claim 6, characterized in that: The heating device includes a substrate and a heating layer provided on the substrate, wherein the heating layer is located between the heating layer and the heating device.
10. The massager according to claim 8, characterized in that: The light emitting device comprises a light guide plate and a light emitting component arranged on the light guide plate.