Massager
By using a floating massage module and swing arm assembly for support, the discomfort caused by the rigid connection of existing massagers is solved, resulting in a more comfortable and reliable massage effect.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHENZHEN BREO TECH CO LTD
- Filing Date
- 2025-03-26
- Publication Date
- 2026-04-17
AI Technical Summary
Existing massagers are fixed in place by rigid connections, which leads to discomfort and affects local blood circulation, reducing the comfort experience.
The massage module and swing arm assembly are designed to float, allowing the massage module to move with the user's body surface for improved comfort. Elastic elements provide support to enhance connection reliability.
It improves the comfort and effectiveness of the massage, while enhancing the reliability of the connection between the massage module and the massager body, providing a better wearing experience.
Smart Images

Figure CN224126270U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of massage instrument technology, and in particular to a massager. Background Technology
[0002] Currently available massagers typically include various massage modules such as kneading or infrared heating modules. However, these massagers are usually fixed to the device housing via rigid connections. When worn, the massager exerts continuous rigid pressure on the contact area. This rigid pressure not only causes discomfort but may also affect local blood circulation with prolonged use, severely limiting the product's comfort experience. Utility Model Content
[0003] The main purpose of this invention is to provide a massager designed to improve comfort during use.
[0004] To achieve the above objectives, this utility model proposes a massager, comprising:
[0005] The massager body has an open receiving cavity;
[0006] The massage module is floatingly positioned at the opening;
[0007] A swing arm assembly is disposed within the receiving cavity. The swing arm assembly has a connecting end and a free end. The connecting end is rotatably connected to the massager body, and the free end is drivenly connected to the massage module, so that the massage module floats in the opening.
[0008] In one embodiment, the swing arm assembly includes:
[0009] A support arm is rotatably disposed within the receiving cavity, with the connecting end and the free end formed at opposite ends of the support arm;
[0010] A first elastic element is disposed within the receiving cavity. The first elastic element is disposed on the side of the support arm away from the massage module. One end of the first elastic element is connected to the free end, and the other end is connected to the bottom wall of the receiving cavity.
[0011] In one embodiment, at least two support arms are provided, each support arm is hinged to the massager body, and the free ends of at least two support arms are connected to different positions of the massage module.
[0012] In one embodiment, the connecting end is formed in the middle of the support arm, the free end is formed at opposite ends of the support arm, each of the free ends is provided with at least one first elastic element, and each first elastic element is connected to the massager body.
[0013] In one embodiment, the massage module includes:
[0014] The bracket is connected to the free end;
[0015] The massage head is detachably connected to the bracket.
[0016] In one embodiment, the massage module further includes a snap-fit structure, the snap-fit structure comprising:
[0017] A connection port is located on the massage head;
[0018] An elastic arm is provided on the bracket on the side facing the massage head, and the elastic arm extends into the connection port and engages with the connection port.
[0019] In one embodiment, the massage module further includes a snap-fit structure, the snap-fit structure comprising:
[0020] A buckle is provided on the side of the massage head facing the bracket;
[0021] A latch is movably mounted on the bracket, and the latch has a first position that engages with the buckle and a second position that is disengaged from the buckle.
[0022] The second elastic element elastically connects the latch to the bracket to keep the latch in the first position.
[0023] In one embodiment, the latch includes:
[0024] A hook is slidably disposed on the bracket. In the first position, the hook is engaged with the buckle. In the second position, the hook is disengaged from the buckle. The second elastic element connects the hook and the bracket.
[0025] An operating component is slidably disposed on the bracket, and the operating component abuts against the hook to drive the hook to slide.
[0026] In one embodiment, the snap-fit structure further includes a third elastic member that elastically connects the operating member to the bracket, thereby causing the operating member to tend to move away from the snap hook.
[0027] In one embodiment, a guide post is provided on the bracket facing the massage head, the second elastic element is sleeved on the guide post, the hook has a strip hole, the guide post slides through the strip hole, and the hook slides along the length direction of the strip hole.
[0028] In the technical solution of this utility model, the massage module is floatingly set at the opening and supported by the swing arm assembly, so that the massage module can rotate with the free end of the swing arm assembly. When the massager is in use, the massage module can float according to the undulation of the user's body surface, which improves the comfort and effect of the massage. In addition, the swing arm assembly provides support for the massage module and also improves the reliability of the connection between the massage module and the massager body. Attached Figure Description
[0029] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on the structures shown in these drawings without creative effort.
[0030] Figure 1 A schematic diagram of the structure of the massager provided by this utility model;
[0031] Figure 2 A cross-sectional schematic diagram of the massager provided by this utility model;
[0032] Figure 3 A schematic diagram of the swing arm assembly provided by this utility model;
[0033] Figure 4 Another structural schematic diagram of the swing arm assembly provided by this utility model;
[0034] Figure 5 A cross-sectional schematic diagram of an embodiment of the massage module provided by this utility model;
[0035] Figure 6 A cross-sectional schematic diagram of another embodiment of the massage module provided by this utility model;
[0036] Figure 7 for Figure 6 A magnified view of a section at point A in the middle;
[0037] Figure 8 for Figure 6 Another cross-sectional view of the embodiment shown;
[0038] Figure 9 for Figure 6 The diagram shows the structure of the hook in the embodiment shown.
[0039] Figure 10 A cross-sectional schematic diagram of yet another embodiment of the massage module provided by this utility model;
[0040] Figure 11A cross-sectional schematic diagram of another embodiment of the massage module provided by this utility model;
[0041] Figure 12 A schematic diagram of the structure of the operating component and the hook provided by this utility model.
[0042] Explanation of icon numbers:
[0043] 100. Massager body; 110. Receiving cavity; 200. Massage module; 210. Support; 211. Guide post; 220. Massage head; 230. Connecting port; 240. Elastic arm; 250. Buckle; 260. Lock; 261. Hook; 2611. First guide slope; 2612. Strip hole; 262. Operating component; 2621. Second guide slope; 270. Second elastic element; 280. Third elastic element; 300. Swing arm assembly; 310. Support arm; 311. Free end; 312. Connecting end; 320. First elastic element; 400. First hook part; 500. Second hook part; 600. Velcro; 700. Magnet.
[0044] The realization of the purpose, functional features and advantages of this utility model will be further explained in conjunction with the embodiments and with reference to the accompanying drawings. Detailed Implementation
[0045] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of the present utility model.
[0046] It should be noted that if the embodiments of this utility model involve directional indicators (such as up, down, left, right, front, back, etc.), the directional indicators are only used to explain the relative positional relationship and movement of the components in a specific posture. If the specific posture changes, the directional indicators will also change accordingly.
[0047] Furthermore, if the embodiments of this utility model involve descriptions such as "first" or "second," these descriptions are for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of technical features indicated. Therefore, a feature defined with "first" or "second" may explicitly or implicitly include at least one of those features. Additionally, the use of "and / or" or "and / or" throughout the text includes three parallel solutions. For example, "A and / or B" includes solution A, solution B, or a solution where both A and B are satisfied simultaneously. Furthermore, the technical solutions of the various embodiments can be combined with each other, but this must be based on the ability of those skilled in the art to implement them. When the combination of technical solutions is contradictory or impossible to implement, it should be considered that such a combination of technical solutions does not exist and is not within the scope of protection claimed by this utility model.
[0048] To improve the comfort of using a massager, this technical solution proposes a massager comprising: a massager body 100, a receiving cavity 110 with an opening; a massage module 200, floatingly disposed at the opening; and a swing arm assembly 300 disposed within the receiving cavity 110, the swing arm assembly 300 having a connecting end 312 and a free end 311, the connecting end 312 being rotatably connected to the massager body 100, and the free end 311 being drively connected to the massage module 200, so that the massage module 200 floats at the opening.
[0049] In the technical solution of this utility model, the massage module 200 is floatingly disposed at the opening and supported by the swing arm assembly 300, so that the massage module 200 can rotate with the free end 311 of the swing arm assembly 300. When the massager is in use, the massage module 200 can float according to the undulation of the user's body surface, which improves the comfort and effect of the massage. In addition, the swing arm assembly 300 provides support for the massage module 200 and also improves the reliability of the connection between the massage module 200 and the massager body 100.
[0050] like Figures 1 to 11Specifically, the massager in this embodiment is suitable for massaging areas such as the waist, neck, or back. The massager body 100 is elongated, with one side curved to conform to the shape of the human body. A strap can be provided on the massager body 100 for easy fastening. A receiving cavity 110 with an opening is provided on one side of the massager, and a massage module 200 is located at the opening. The massage module 200 can be a heat therapy module emitting infrared light, or a module with kneading or tapping functions; there are no restrictions. The shape of the opening is adapted to the shape of the massage module 200 and its size is larger than the outer perimeter of the massage module 200, allowing the massage module 200 to float freely at the opening. Furthermore, a swing arm assembly 300 is provided within the receiving cavity 110. The arm assembly 300 has a free end 311 and a connecting end 312. The connecting end 312 is rotatably connected to the massager body 100, and the free end 311 can swing within the receiving cavity 110. Specifically, the arm assembly 300 may include a rotatable rod-shaped structure. One end of the rod-shaped structure is rotatably connected to the massager body 100 via a hinge or similar structure. Additionally, an elastic structure such as a torsion spring may be provided at the end of the rod-shaped structure connected to the massager body 100. This elastic structure connects the massager body 100 and the rod-shaped structure so that the rod-shaped structure can return to its original position after rotation. Furthermore, the massage module 200 is located at the free end 311 of the arm assembly 300 and floats with the rotation of the arm assembly 300. When the massage module 200 is under pressure, the arm assembly 300 rotates and automatically adjusts the height of the massage module 200, allowing it to better conform to the user's body curves and provide a more comfortable massage experience. After the pressure disappears, the arm assembly 300 rotates to its initial position, causing the massage module 200 to return to its initial position as well. In the above solution, the arm swing assembly 300 enables the massage module 200 to automatically adjust its position according to the user's body curve, improving the comfort and effectiveness of the massage. Furthermore, the arm swing assembly 300 and the massage module 200 are rigidly connected, providing sufficient support and enhancing the connection strength between the massage module 200 and the massager body 100, thus improving the reliability of the massager.
[0051] like Figure 2 and Figure 3 In one embodiment of the present invention, the swing arm assembly 300 includes: a support arm 310, which is rotatably disposed in the receiving cavity 110, with a connecting end 312 and a free end 311 formed at opposite ends of the support arm 310; and a first elastic member 320, which is disposed in the receiving cavity 110, with the free end 311 elastically connected to the massager body 100 through the first elastic member 320.
[0052] Specifically, the support arm 310 can be a rigid elongated structure with a certain strength and toughness, capable of withstanding the weight and vibration force of the massage module 200. The connecting end 312 and the free end 311 are respectively formed at opposite ends of the support arm 310. The connecting end 312 of the support arm 310 is rotatably connected to the inner wall of the receiving cavity 110 via a pivot, while the free end 311 is inclined towards the opening of the receiving cavity 110. The free end 311 of the support arm 310 is fixed to the massage module 200 by screwing or welding. The first elastic element 320 can be... The first elastic element 320, made of elastic silicone strips or springs, has one end fixedly connected to the free end 311 and the other end connected to the inner wall of the receiving cavity 110. When the massage module 200 is under pressure, the first elastic element 320 is compressed or stretched, causing elastic deformation. The support arm 310 rotates around the pivot, moving the massage module 200 up and down to automatically adjust its height. When the massage module 200 is no longer under pressure, the first elastic element 320 recovers its deformation, driving the support arm 310 to rotate back to its initial position. In this design, the swing arm assembly 300 uses a structure of the first elastic element 320 and the support arm 310, which has the advantages of simple structure and low cost. Both the support arm 310 and the first elastic element 320 provide support for the massage module 200, improving the stability of the massage module 200 when it floats.
[0053] Figure 3 The image shows one configuration of the first elastic element 320. In this embodiment, the first elastic element 320 is configured as a compression spring, located on the side of the support arm 310 away from the massage module 200. One end of the compression spring is connected to the free end 311, and the other end is connected to the bottom wall of the receiving cavity 110. In this design, the compression spring is located on the side of the support arm 310 away from the massage head 220, ensuring that the compression spring can effectively absorb and buffer force when the massage module 200 is compressed. The connection of one end of the compression spring to the free end 311 and the other end to the bottom wall of the receiving cavity 110 allows the compression spring to be compressed when the massage module 200 is subjected to pressure from the user's body, generating an upward elastic force that provides an upward force to the support arm 310, allowing the massage module 200 to better conform to the body and provide a comfortable massage effect. When the pressure disappears, the compression spring returns to its original state, pushing the support arm 310 to rotate in the opposite direction, returning the massage module 200 to its initial position.
[0054] For ease of assembly, in one embodiment of this invention, at least one of the support arm 310 and the massager body 100 is detachably connected to the first elastic member 320. Specifically, the first elastic member 320 can be connected to the support arm 310 or the massager body 100 via a snap-fit 250, or it can be tightened onto the support arm 310 or the massager body 100 via screws. The first elastic member 320 can be connected to the support arm 310 and the massager body 100 via any of these detachable connection methods, facilitating assembly during production or disassembly during subsequent maintenance, and also simplifying simple maintenance operations that users may perform themselves.
[0055] Figure 2 and Figure 3 The image illustrates one implementation of a detachable connection. In this embodiment, the massager further includes: a first hook portion 400 disposed on at least one of the free end 311 and the bottom wall of the receiving cavity 110; and a second hook portion 500 disposed on the end of the first elastic member 320 and positioned opposite to the first hook portion 400, with the first hook portion 400 and the second hook portion 500 hooking together. The first hook portion 400 can be integrally formed on the massager body 100 or the support arm 310. The first hook portion 400 is generally C-shaped and has an opening on one side. The second hook portion 500 is formed at opposite ends of the first elastic member 320. The second hook portion 500 can be formed by bending the two ends of the first elastic member 320, and is also generally C-shaped with an opening on one side. During assembly, the first hook portion 400 is simply inserted into the opening of the second hook portion 500 and formed as shown in the image. Figure 2 The design of the connection is such that, since the first elastic element 320 is subjected to pressure during use, the first hook portion 400 and the second hook portion 500 will not disengage during use. This not only simplifies the detachable connection structure but also makes the installation and removal of the first elastic element 320 more convenient and quick.
[0056] In order to further improve the support for the massage module 200 and improve its stability when floating, in one embodiment of the present invention, at least two support arms 310 are provided, each support arm 310 is hinged to the massager body 100, and the free ends 311 of at least two support arms 310 are connected to different positions of the massage module 200.
[0057] Specifically, this embodiment provides two support arms 310. The free ends 311 of the two support arms 310 can be connected to the two ends of the massage module 200 along its length, respectively. The connecting ends 312 of the two support arms 310 can share a common pivot or can be rotatably connected to the inner wall of the receiving cavity 110, respectively. The rotation centers of the two support arms 310 can be coaxial. When the massage module 200 is pressed, the two support arms 310 can swing synchronously. At this time, the two support arms 310 can limit each other, which can reduce unnecessary shaking of the massage module 200. In addition, since the massage module 200 is supported by the two support arms 310, the pressure on the massage module 200 can be distributed to the two support arms 310, reducing local stress concentration and increasing the reliability of the connection between the massage component and the massager body 100.
[0058] like Figure 4 In one embodiment of the present invention, the connecting end 312 is formed in the middle of the support arm 310, and the free end 311 is formed at the opposite ends of the support arm 310. Each free end 311 is provided with at least one first elastic element 320, and each first elastic element 320 is connected to the massager body 100.
[0059] Specifically, the connecting end 312 is located in the middle of the support arm 310. The connecting end 312 is rotatably connected to the massager body 100 through a pivot. The free ends 311 are formed at opposite ends of the support arm 310, that is, there are two free ends 311. Each free end 311 is provided with a first elastic element 320. The first elastic element 320 is a spring. One end of the first elastic element 320 is fixed to the connecting end 312, and the other end is fixed to the inner wall of the massager body 100. In this way, when the support arm 310 is subjected to external force, the first elastic elements 320 at both ends can provide elasticity and cushioning at the same time, thereby enhancing the stability and adjustability of the support arm 310 and the massage module 200 when floating.
[0060] like Figures 5 to 11 In one embodiment of this utility model, the massage module 200 includes: a support 210 connected to a free end 311; and a massage head 220 detachably connected to the support 210. In this design, the massage module 200 is divided into two main parts: the support 210 and the massage head 220. The support 210 and the massage head 220 can be connected by various detachable connection methods, such as screws. Figure 10 The connection method shown involves a magnet 700 on the end of the bracket 210 near the massage head 220, and a similar magnet 700 on the end of the massage head 220 near the bracket 210. The bracket 210 and the massage head 220 are connected by magnetic attraction. Alternatively, a different method can be used. Figure 11The connection shown involves using Velcro 600 for bonding the bracket 210 and massage head 220 together on their end faces. However, this is merely an example of a detachable connection, and the connection between the bracket 210 and massage head 220 is not limited to this. In this solution, the bracket 210 and massage head 220 are detachably connected, allowing users to easily replace different types of massage heads 220 according to their needs, thus achieving diverse product functions and meeting the personalized needs of different users.
[0061] In one embodiment of this utility model, the massage module 200 further includes a snap-fit structure, through which the bracket 210 and the massage head 220 are snapped together. The snap-fit structure may consist of a latch 250 and a latch head that cooperate with each other, which are respectively disposed on the bracket 210 and the massage head 220. During assembly, the user only needs to align the latch head with the latch 250 and apply a certain pressure to make the latch head enter the latch 250 to achieve fixation. During disassembly, opposite forces are applied to the bracket 210 and the massage head 220.
[0062] Figure 5 The above-described snap-fit structure is shown in one embodiment. In this embodiment, the snap-fit structure includes: a connection port 230, which is disposed on the massage head 220; and an elastic arm 240, which is disposed on the bracket 210 facing the massage head 220. The elastic arm 240 extends into the connection port 230 and snaps into the connection port 230.
[0063] Specifically, the elastic arm 240 is positioned perpendicular to the end face of the support 210. The elastic arm 240 can elastically deform under lateral force. The elastic arms 240 are arranged in pairs, with protrusions on their opposite sides. A connecting port 230 extending through the massage head 220 along its thickness direction is provided. Protrusions corresponding to the positions of the elastic arm 240 protrusions are provided on the inner wall of the connecting port 230. During assembly, the elastic arm 240 can extend into the connecting port 230, and the protrusions on the elastic arm 240 engage with the protrusions in the connecting port 230, preventing the massage head 220 from separating from the support 210. During disassembly, the massage head 220 can be removed by pinching the two elastic arms 240 to separate the protrusions on the elastic arm 240 from the protrusions in the connecting port 230. This design achieves detachability of the massage head 220 with a simple structure, reducing the difficulty of disassembling the massage head 220.
[0064] Figures 6 to 9 Another structural style of the snap-fit structure is shown. In this embodiment, the snap-fit structure includes: a snap 250, disposed on the massage head 220 facing the bracket 210; a latch 260, movably disposed on the bracket 210, the latch 260 having a first position engaged with the snap 250 and a second position separated from the snap 250; and a second elastic member 270, elastically connecting the latch 260 and the bracket 210 to keep the latch 260 in the first position.
[0065] The buckle 250 is located on the side of the massage head 220 facing the support 210, and the side of the buckle 250 has a protrusion for locking and fixing, forming a hook-shaped structure; the latch 260 is movably mounted on the support 210, is in the shape of a cuboid block, and can be made of high-strength plastic material, and the latch 260 can be moved along... Figure 7 The latch 260 moves left and right, and has a protrusion on it that engages with the buckle 250. The latch 260 has a first position that engages with the buckle 250 and a second position that disengages from the buckle 250. Additionally, the latching structure includes a second elastic element 270, which can be a common coil spring. The second elastic element 270 elastically connects the latch 260 and the bracket 210. The principle of this latching structure will be explained below. Figure 7 The image shows the first position. In this position, the latch 260 and the snap fastener 250 are engaged. When the latch 260 is pressed, it will cause the latch 260 to engage with the snap fastener 250. Figure 7 When the device moves to the left from its initial position, the latch 260 gradually separates from the buckle 250, reaching the second position. During this process, the second elastic element 270 undergoes elastic deformation. In the second position, the massage head 220 can be detached or mounted on the bracket 210. When the external force is removed, the second elastic element 270 returns to its original deformation, driving the latch 260 to move to the right, returning to its initial position. If the massage head 220 is on the bracket 210 at this time, the latch 260 will engage with the buckle 250. In this structure, the user only needs to press the latch 260 with an action similar to pressing a button to detach and assemble the massage head 220, which is convenient for the user and improves the user experience. Of course, Figure 7 The diagram shows only one set of snap-fit structures. In this solution, the snap-fit structures can be configured as follows: Figure 6 The two sets shown are respectively set at both ends of the massage module 200, which can further improve the stability and firmness of the connection between the massage head 220 and the bracket 210.
[0066] like Figure 7In one embodiment of this utility model, the latch 260 includes: a hook 261, slidably disposed on the bracket 210; in a first position, the hook 261 engages with the latch 250; in a second position, the hook 261 separates from the latch 250; and a second elastic member 270 connects the hook 261 and the bracket 210. An operating member 262 is slidably disposed on the bracket 210, and abuts against the hook 261 to drive the hook 261 to slide. In this design, the latch 260 is divided into two parts: the hook 261 and the operating member 262. The hook 261 performs the function of engaging or disengaging with the latch 250. One end of the operating member 262 abuts against the side wall of the hook 261, and the other end extends to the outside of the bracket 210, facilitating user pressing operation. This split structure simplifies the structure of individual parts and facilitates processing.
[0067] like Figure 7 and Figure 8 In one embodiment of this utility model, the snap-fit structure further includes a third elastic member 280, which elastically connects the operating member 262 and the bracket 210, so that the operating member 262 tends to move away from the hook 261. The third elastic member 280... Figure 8 The third elastic element 280 is horizontally positioned in the left-right direction. It can be a compression spring. When the operating element 262 drives the hook 261 to move, it will simultaneously squeeze the third elastic element 280. After the external force is released, the third elastic element 280 can drive the operating element 262 to move in the direction away from the hook 261. This makes it easy for the operating element 262 to return to the initial position before pressing, so as to facilitate the next operation. In addition, the elastic force applied by the third elastic element 280 to the operating element 262 also improves the feel when pressing the operating element 262 and enhances the user experience.
[0068] like Figure 7 and Figure 9 In one embodiment of this utility model, a guide post 211 is provided on the bracket 210 facing the massage head 220, a second elastic member 270 is sleeved on the guide post 211, and a hook 261 is provided with a strip-shaped hole 2612. The guide post 211 slides through the strip-shaped hole 2612, and the hook 261 slides along the length direction of the strip-shaped hole 2612. In this solution, the hook 261 can not only slide along the length direction of the strip-shaped hole 2612, but also... Figure 7 It can move left and right in the middle, and can also move along the axial direction of the guide post 211 ( Figure 7 The movement (up and down) allows the support 210 to move with the massage head 220. During assembly, the latch 250 on the massage head 220 abuts against the hook 261, allowing the hook 261 to float vertically. This reduces the rigid contact between the hook 261 and the latch 250, helping to prevent damage to both. Furthermore, the contact points between the hook 261 and the latch 250 can be designed with... Figure 7The guide slope allows the hook 261 to move to the left and the buckle 250 to bend and deform to the right when the buckle 250 presses down on the hook 261, until the buckle 250 and the hook 261 engage. This facilitates the assembly of the massage head 220 and the bracket 210. Additionally, as... Figure 12 In another embodiment, the hook 261 has a first guide slope 2611 on the side facing the operating member 262, and the operating member 262 has a second guide slope 2621 on the side facing the hook 261. The first guide slope 2611 and the second guide slope 2621 cooperate with each other. When the operating member 262 is pressed, the second guide slope 2621 slides relative to the first guide slope 2611. At this time, the hook 261 will be subjected to a downward squeezing force. Figure 7 In the middle, hook 261 not only moves to the left, but also moves downwards, so hook 261 not only in Figure 7 It separates from the buckle 250 in the left and right directions, and is still... Figure 7 The hook 261 is offset from the buckle 250 in the vertical direction, so that the hook 261 separates from the buckle 250 more completely and makes it easier to remove the massage head 220.
[0069] The above are merely exemplary embodiments of this utility model and do not limit the patent scope of this utility model. Any equivalent structural transformations made based on the technical concept of this utility model and the contents of the specification and drawings of this utility model, or direct / indirect applications in other related technical fields, are included within the patent protection scope of this utility model.
Claims
1. A massager characterized by comprising: include: The massager body has an open receiving cavity; The massage module is floatingly positioned at the opening; A swing arm assembly is disposed within the receiving cavity. The swing arm assembly has a connecting end and a free end. The connecting end is rotatably connected to the massager body, and the free end is drivenly connected to the massage module, so that the massage module floats in the opening.
2. The massaging device according to claim 1, wherein The swing arm assembly includes: A support arm is rotatably disposed within the receiving cavity, with the connecting end and the free end formed at opposite ends of the support arm; A first elastic element is disposed within the receiving cavity. The first elastic element is disposed on the side of the support arm away from the massage module. One end of the first elastic element is connected to the free end, and the other end is connected to the bottom wall of the receiving cavity.
3. The massaging device according to claim 2, wherein The support arm is provided with at least two, each of the support arms is hinged to the massager body, and the free ends of at least two of the support arms are connected to different positions of the massage module.
4. The massaging device according to claim 2, wherein The connecting end is formed in the middle of the support arm, and the free end is formed at the opposite ends of the support arm. Each free end is provided with at least one first elastic element, and each first elastic element is connected to the massager body.
5. The massaging device as claimed in claim 1, wherein The massage module includes: The bracket is connected to the free end; The massage head is detachably connected to the bracket.
6. The massaging device as claimed in claim 5, characterized in that The massage module further includes a snap-fit structure, which includes: A connection port is located on the massage head; An elastic arm is provided on the bracket on the side facing the massage head, and the elastic arm extends into the connection port and engages with the connection port.
7. The massaging device as claimed in claim 5, wherein The massage module further includes a snap-fit structure, which includes: A buckle is provided on the side of the massage head facing the bracket; A latch is movably mounted on the bracket, and the latch has a first position that engages with the buckle and a second position that is disengaged from the buckle. The second elastic element elastically connects the latch to the bracket to keep the latch in the first position.
8. The massaging device as claimed in claim 7, characterized in that The latch includes: A hook is slidably disposed on the bracket. In the first position, the hook is engaged with the buckle. In the second position, the hook is disengaged from the buckle. The second elastic element connects the hook and the bracket. An operating component is slidably disposed on the bracket, and the operating component abuts against the hook to drive the hook to slide.
9. The massaging device as claimed in claim 8, characterized in that The snap-fit structure also includes a third elastic element, which elastically connects the operating element to the bracket, so that the operating element tends to move away from the snap hook.
10. The massaging device as claimed in claim 9, characterized in that A guide post is provided on the bracket facing the massage head. The second elastic element is sleeved on the guide post. The hook has a strip hole. The guide post slides through the strip hole, and the hook slides along the length of the strip hole.