Guide rail assembly and massage equipment

By setting up installation grooves on the guide rails and stably installing conductive parts with pressing parts, the problems of unstable and deformation of the conductive parts on the guide rails are solved, and the stable electrical connection between the conductive parts and the massage movement is achieved, and the operation reliability of the massage equipment is improved.

CN223208676UActive Publication Date: 2025-08-12FOSHAN MOFAYIDAO TECH CO LTD
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Patent Information

Application Number
CN202421803208.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-26
Publication Date
2025-08-12
Estimated Expiration
2034-07-26

AI Technical Summary

Technical Problem

The conductive parts of existing massagers are unstable on the guide rails and are prone to deform, which affects the stability of the electrical connection with the massage movement.

Method used

Installation grooves are provided on the guide rails, and the two ends and middle parts of the conductive member are pressed against the installation grooves by using the first and second pressing members to ensure the stable installation of the conductive member.

Benefits of technology

The electrical connection stability between conductive parts and the massage movement is improved, the conductive parts are prevented from deforming, and the normal operation of the massage equipment is ensured.

✦ Generated by Eureka AI based on patent content.

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Abstract

The guide rail assembly comprises a guide rail, a conductive part, two first pressing parts and a second pressing part, the guide rail comprises a connecting part and a conductive part connected with the connecting part, the connecting part is configured to be movably connected with a massage machine core, and the massage machine core can move in the first direction relative to the connecting part. The conductive part is provided with a mounting groove extending along a first direction; the conductive piece is positioned in the mounting groove and is configured to be in contact conduction with an electric connecting piece of the massage machine core; the two first pressing pieces are respectively connected to the mounting groove so as to press the two opposite ends of the conductive piece in the first direction into the mounting groove; and the second pressing piece is located between the two first pressing pieces and is connected to the mounting groove so as to press the middle part of the conductive piece in the mounting groove. According to the technical scheme provided by the embodiment of the utility model, the conductive piece is stably arranged on the guide rail, and the conductive piece is stably conducted with the massage machine core.
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Description

Technical Field

[0001] The utility model relates to the technical field of massage equipment, in particular to a guide rail assembly and massage equipment. Background Art

[0002] Some massagers are provided with guide rails, such as massagers for waist, back and shoulder massage. The massage mechanism of the massager can move on the guide rails to adjust the massage position and massage different parts of the body. In the related art, the position of the control module of this type of massager is often fixed. By providing a conductive part on the guide rail and a pin on the massage mechanism, when the massage mechanism moves on the guide rail, the pin on the massage mechanism contacts and conducts with the conductive part, and the conductive part conducts with the control module, thereby achieving electrical connection between the control module and the massage mechanism. Since the path required for the massage mechanism to move is relatively long, the guide rail that matches it is also relatively long. On this basis, in order not to increase the thickness of the massager, the conductive part provided on the guide rail is also relatively thin, which also makes it difficult to install the conductive part on the guide rail. In addition, improper installation of the conductive part can easily cause the conductive part to deform, affecting the stability of the conductive part and the massage mechanism. Utility Model Content

[0003] The embodiments of the present invention provide a guide rail assembly and a massage device, which are intended to ensure that a conductive member is stably mounted on the guide rail and that the conductive member is stably connected to a massage mechanism.

[0004] In a first aspect, an embodiment of the present invention provides a guide rail assembly, comprising:

[0005] The guide rail includes a connecting portion and a conductive portion connected to the connecting portion, wherein the connecting portion is configured to be movably connected to a massage mechanism, and the massage mechanism can move relative to the connecting portion along a first direction, and the conductive portion is provided with a mounting groove extending along the first direction;

[0006] A conductive member is located in the mounting slot, and is configured to be in contact with and electrically connected to the electrical connector of the massage core;

[0007] a first pressing member, wherein there are two first pressing members, and the two first pressing members are respectively connected to the mounting groove to press opposite ends of the conductive member along the first direction against the mounting groove; and

[0008] The second pressing member is located between the two first pressing members and is connected to the installation slot to press the middle portion of the conductive member against the installation slot.

[0009] Optionally, at least one of the first pressing member and the second pressing member is detachably connected to the mounting groove.

[0010] Optionally, the conductive portion is further provided with a first mounting hole communicating with the mounting groove, and the first pressing member is detachably connected to the first mounting hole; and / or

[0011] The conductive portion is further provided with a second mounting hole communicating with the mounting groove, and the second pressing member is detachably connected to the second mounting hole.

[0012] Optionally, the second pressing member includes a pressing portion and two clip portions connected to the pressing portion, the two clip portions are arranged at intervals, the two clips are passed through the second mounting hole and snapped together with the conductive portion, so that the pressing portion presses the conductive member against the mounting groove.

[0013] Optionally, a thinning area is formed on the pressing portion, and with the extension direction of the two buckle portions as the projection direction, the projection of the thinning area is located between the projections of the two buckle portions.

[0014] Optionally, there are multiple second pressing members, and the multiple second pressing members are evenly spaced and arranged along the first direction;

[0015] The distance between two adjacent second pressing members is L1, the distance between the two outermost second pressing members and their adjacent first pressing members is L2, and L1 is greater than or equal to L2.

[0016] Optionally, the conductive member is inserted between the first pressing member and the wall surface of the installation slot, so that the first pressing member presses one end of the conductive member against the installation slot; and / or

[0017] The conductive member is inserted between the second pressing member and the groove wall surface of the installation groove, so that the second pressing member presses the middle part of the conductive member against the installation groove.

[0018] Optionally, there are a plurality of the conductive members and the electrical connectors, respectively. The plurality of conductive members are sequentially spaced apart along a second direction perpendicular to the first direction, and the plurality of conductive members correspond one-to-one to the plurality of electrical connectors and are in contact and conductive with each other.

[0019] Optionally, a portion of the second pressing member is located between any two adjacent conductive members among the plurality of conductive members and is connected to the mounting groove, and another portion presses the two adjacent conductive members against the mounting groove.

[0020] Optionally, the mounting groove is provided with a separator, which divides the mounting groove into a plurality of groove bodies in a second direction perpendicular to the first direction, and the plurality of conductive members are respectively located in the corresponding groove bodies, and the second pressing member is connected to the separator.

[0021] Optionally, the conductive portion is further provided with a limiting member, which is located between the two first pressing members; along the direction of the notch of the installation slot toward the conductive member, the limiting member blocks part of the conductive member.

[0022] Optionally, the guide rail is further provided with a guide groove, the massage movement is provided with a guide member, the guide groove and the guide member are movably engaged, and the guide member can move relative to the guide groove along the first direction.

[0023] In a second aspect, an embodiment of the present invention provides a massage device, comprising a massage movement and a guide rail assembly as described in the first aspect, wherein the massage movement is movably connected to the connecting portion of the guide rail assembly, and the electrical connector of the massage movement is in contact and conductive with the conductive member.

[0024] Optionally, the massage device includes two guide rail assemblies arranged at intervals, and the opposite ends of the massage movement are movably connected to the two guide rail assemblies respectively, and are in contact and conducted with the conductive parts of the two guide rail assemblies respectively through the electrical connectors at the opposite ends.

[0025] The guide rail assembly and massage equipment provided by the embodiments of the present invention achieve stable installation of the conductive part by placing the conductive part in the installation groove of the guide rail, connecting two first pressing parts to the installation grooves respectively to press the opposite ends of the conductive part along the first direction to the installation groove, and the second pressing part is located between the two first pressing parts and connected to the installation groove to press the middle part of the conductive part to the installation groove. The conductive part is not easily deformed under the pressing action of the first pressing part and the second pressing part, so that the conductive part and the massage movement can be in stable contact, thereby improving the conduction stability. BRIEF DESCRIPTION OF THE DRAWINGS

[0026] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the following is a brief introduction to the drawings required for use in the description of the embodiments. Obviously, the drawings described below are some embodiments of the present application. For ordinary technicians in this field, other drawings can be obtained based on these drawings without any creative work.

[0027] Figure 1 A schematic structural diagram of the guide rail assembly and massage mechanism provided in an embodiment of the present utility model;

[0028] Figure 2 for Figure 1 A schematic cross-sectional view of the guide rail assembly and massage assembly along line AA;

[0029] Figure 3 for Figure 2 Enlarged view of point B in FIG.

[0030] Figure 4A schematic structural diagram of a guide rail assembly provided in an embodiment of the present utility model;

[0031] Figure 5 for Figure 4 A schematic cross-sectional view of the guide rail assembly along line CC;

[0032] Figure 6 This is a schematic structural diagram of the second pressing member provided in an embodiment of the present utility model.

[0033] Description of main reference numerals:

[0034] 100, guide rail assembly; 110, guide rail; 111, connecting portion; 112, conductive portion; 1121, mounting groove; 1121a, groove body; 1122, first mounting hole; 1123, second mounting hole; 113, guide groove; 120, conductive member; 130, first pressing member; 140, second pressing member; 141, pressing portion; 1411, thinning area; 142, buckle portion; 150, separator; 160, limit member;

[0035] 200, massage mechanism; 210, electrical connector; 211, probe; 212, elastic member; 220, guide member. DETAILED DESCRIPTION

[0036] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0037] See also Figures 1 to 4 The embodiment of the present invention provides a guide rail assembly 100, which includes a guide rail 110, a conductive member 120, two first pressing members 130 and a second pressing member 140. The guide rail 110 includes a connecting portion 111 and a conductive portion 112 connected to the connecting portion 111. The connecting portion 111 is configured to be movably connected to the massage movement 200. The massage movement 200 can move along a first direction relative to the connecting portion 111. The conductive portion 112 is provided with a mounting groove 1121 extending along the first direction. The conductive member 120 is located in the mounting groove 1121. The conductive member 120 is configured to be in contact and conductive with the electrical connector 210 of the massage movement 200. The two first pressing members 130 are respectively connected to the mounting groove 1121 to press the opposite ends of the conductive member 120 along the first direction against the mounting groove 1121. The second pressing member 140 is located between the two first pressing members 130 and connected to the mounting groove 1121 to press the middle portion of the conductive member 120 against the mounting groove 1121 .

[0038] The guide rail assembly 100 of this embodiment defines a mounting groove 1121 in the conductive portion 112 of the guide rail 110, allowing the conductive member 120 to be installed within the mounting groove 1121. This facilitates installation of the conductive member 120 without increasing the overall thickness of the guide rail assembly 100. Two first pressing members 130 are respectively connected to the mounting grooves 1121 to press the opposing ends of the conductive member 120 along a first direction against the mounting grooves 1121, preventing either end of the conductive member 120 from moving out of the mounting grooves 1121. A second pressing member 140 is located between the two first pressing members 130 and is connected to the mounting groove 1121 to press the central portion of the conductive member 120 against the mounting groove 1121, preventing the central portion of the conductive member 120 from arching. The conductive member 120 is stably installed in the installation groove 1121 under the pressing action of the first pressing member 130 and the second pressing member 140, which is conducive to ensuring stable contact between the conductive member 120 and the electrical connector 210 of the massage movement 200 and improving the conduction stability.

[0039] It can be understood that a first clamping member 130 can be configured to include multiple connecting sub-components, and the multiple connecting sub-components can correspond to multiple connection methods, that is, at any end of the mounting groove 1121 along the first direction, a first clamping member 130 can be provided with at least one connecting sub-component and corresponding at least one connection method, so that the opposite ends of the conductive member 120 along the first direction can be more reliably pressed on the mounting groove 1121. If a first clamping member 130 is provided with a plurality of connecting sub-components and corresponding multiple connection methods, the first clamping member 130 can be regarded as an assembly. At this time, the installation method of the first clamping member 130 and the mounting groove 1121 can be a first clamping member 130 with only a single connecting sub-component and a first clamping member 130 in the form of an assembly, which are respectively arranged at opposite ends of the mounting groove 1121 along the first direction, or two first clamping members 130 in the form of an assembly are respectively arranged at opposite ends of the mounting groove 1121 along the first direction. The specific structure and connection method of any connecting sub-component in the assembly can be not specifically limited, and it is sufficient to meet the conditions of increasing the connection stability between the conductive member 120 and the mounting groove 1121.

[0040] It is worth noting that the second pressing member 140 presses the middle part of the conductive member 120 against the mounting groove 1121, wherein the middle part of the conductive member 120 is not limited to the center position of the conductive member 120, but also includes the area extending at opposite ends of the center position of the conductive member 120 along the first direction.

[0041] Exemplarily, the connecting part 111 may be a rack structure, and the massage movement 200 has a gear. The gear of the massage movement 200 is engaged with the connecting part 111. The gear can move along the first direction on the rack under the drive of the driving member, thereby realizing the movement of the massage movement 200 along the first direction relative to the connecting part 111.

[0042] It can be understood that the conductive member 120 is in contact and conductive with the electrical connector 210 of the massage movement 200, and the conductive member 120 is electrically connected to the control module, thereby realizing the electrical connection between the control module and the massage movement 200, so that the control module can control the massage movement 200 to perform corresponding operations, for example, controlling the massage movement 200 to start or stop massage, or controlling the massage movement 200 to move relative to the guide rail assembly 100 to adjust the massage position of the massage movement 200.

[0043] Exemplarily, the guide rail assembly 100 is a deformable assembly or a non-deformable assembly. When the guide rail assembly 100 is a deformable assembly, the guide rail 110 can be made of plastic or rubber, and the conductive member 120 can be made of a metal sheet or a flexible conductive film. The conductive member 120 is installed on the bottom wall of the installation groove 1121 of the guide rail 110 and can be deformed along with the guide rail 110 under force. Therefore, when a person leans against the massage device, the guide rail 110 and the conductive member 120 can deform to adapt to the curve of the human body, allowing the massage movement 200 to better fit the human body and enhance the massage effect. For example, the conductive member 120 of the guide rail 110 can adapt to the curve of the human waist and back, allowing the massage movement 200 to better fit the human waist and back.

[0044] For example, the first direction may be Figure 1 As shown in the Y direction in the figure. The electrical connector 210 of the massage movement 200 needs to move along the first direction. In order to reserve a position for the massage movement 200 to contact and conduct with the conductive member 120, the second pressing member 140 can be located on one side of the conductive member 120 along the first direction, pressing one side of the conductive member 120 into the installation groove 1121. Specifically, the second pressing member 140 extends along the first direction to form a long strip, thereby increasing the contact area between the second pressing member 140 and the conductive member 120 along the first direction, improving the installation stability of the conductive member 120, and at the same time, it can be understood that the second pressing member 140 in the second direction (such as Figure 1 The size of the second pressing member 140 in the X direction is significantly smaller than the size of the second pressing member 140 in the first direction, thereby preventing the second pressing member 140 from occupying too much of the position of the conductive member 120 in the second direction, so that the second pressing member 140 has sufficient area to contact the electrical connector 210 of the massage movement 200, thereby improving the conduction stability between the conductive member 120 and the massage movement 200.

[0045] In some embodiments, the conductive member 120 is inserted between the first pressing member 130 and the wall surface of the mounting groove 1121, so that the first pressing member 130 presses one end of the conductive member 120 against the mounting groove 1121, and / or, the conductive member 120 is inserted between the second pressing member 140 and the wall surface of the mounting groove 1121, so that the second pressing member 140 presses the middle portion of the conductive member 120 against the mounting groove 1121. It is understandable that the first pressing member 130 can be integrally formed with the mounting groove 1121, and a slot matching the thickness of the conductive member 120 is formed between the first pressing member 130 and the wall surface of the mounting groove 1121, and one end of the conductive member 120 can be inserted into the slot, such as Figure 4 As shown, the first pressing member 130 presses one end of the conductive member 120 against the mounting groove 1121. The second pressing member 140 can be integrally formed with the mounting groove 1121. A slot matching the thickness of the conductive member 120 is formed between the second pressing member 140 and the wall of the mounting groove 1121. The middle portion of the conductive member 120 can be inserted into the slot, so that the second pressing member 140 presses the middle portion of the conductive member 120 against the mounting groove 1121.

[0046] In some embodiments, the first pressing member 130 and / or the second pressing member 140 are rotatably connected to the mounting slot 1121 via a torsion spring, and press the conductive member 120 against the mounting slot 1121 under the force provided by the torsion spring.

[0047] In some embodiments, at least one of the first pressing member 130 and the second pressing member 140 is detachably connected to the mounting groove 1121 , so as to facilitate installation of the conductive member 120 in the mounting groove 1121 .

[0048] Exemplarily, the two first pressing members 130 are detachably connected to the mounting groove 1121, and after the middle portion of the conductive member 120 is pressed against the mounting groove 1121 via the second pressing member 140, the two first connecting members are connected to the mounting groove 1121, so that the opposite ends of the conductive member 120 are pressed against the mounting groove 1121. Alternatively, the second pressing member 140 is detachably connected to the mounting groove 1121, and after the opposite ends of the conductive member 120 are pressed against the mounting groove 1121 via the two first pressing members 130, the second pressing member 140 is connected to the mounting groove 1121, so that the second pressing member 140 presses the middle portion of the conductive member 120 against the mounting groove 1121. Alternatively, both the first pressing member 130 and the second pressing member 140 are detachably connected to the mounting groove 1121.

[0049] Combine Figure 5As shown, further, the conductive portion 112 is further provided with a first mounting hole 1122 communicating with the mounting groove 1121, and the first pressing member 130 is detachably connected to the first mounting hole 1122, and / or the conductive portion 112 is further provided with a second mounting hole 1123 communicating with the mounting groove 1121, and the second pressing member 140 is detachably connected to the second mounting hole 1123. It is understandable that the first pressing member 130 can be connected to the first mounting hole 1122 by means of a snap connection or a thread, thereby realizing the detachable connection of the first pressing member 130, and the second pressing member 140 can be connected to the second mounting hole 1123 by means of a snap connection or a thread, thereby realizing the detachable connection of the second pressing member 140.

[0050] For example, Figure 4 As shown, the first clamping member 130 can be a screw, and the first mounting hole 1122 is a threaded hole. After the conductive member 120 is placed in the mounting groove 1121, the first clamping member 130 is threadedly connected to the first mounting hole 1122 to press the conductive member 120 against the mounting groove 1121.

[0051] Optionally, the first pressing member 130 may be passed through one end of the conductive member 120 and then be threadedly connected to the first mounting hole 1122 .

[0052] Optionally, a gasket may be provided between the first pressing member 130 and the conductive member 120 .

[0053] Combine Figure 6 As shown, in some embodiments, the second pressing member 140 includes a pressing portion 141 and two snap-fit portions 142 connected to the pressing portion 141. The two snap-fit portions 142 are spaced apart and pass through the second mounting hole 1123 and snap-fit with the conductive portion 112, so that the pressing portion 141 presses the conductive member 120 against the mounting groove 1121. The snap-fitting of the second pressing member 140 and the conductive portion 112 helps to improve the connection strength between the second pressing member 140 and the conductive portion 112, thereby ensuring the installation stability of the conductive member 120.

[0054] It can be understood that the second mounting hole 1123 passes through the conductive portion 112 , so that the two locking portions 142 can pass from one side where the second mounting hole 1123 communicates with the mounting groove 1121 to the other side and be locked with the conductive portion 112 .

[0055] The pressing portion 141 may extend along the first direction to increase the contact area between the pressing portion 141 and the conductive member 120 .

[0056] For example, Figure 5 As shown, the diameter of the second mounting hole 1123 gradually decreases from one side connected to the mounting groove 1121 to the other side, so that the two locking portions 142 can be locked with the conductive portion 112 after passing through the second mounting hole 1123.

[0057] Furthermore, the pressing portion 141 is formed with a thinned area 1411. With the extension direction of the two latching portions 142 as the projection direction, the projection of the thinned area 1411 is located between the projections of the two latching portions 142. Forming the thinned area 1411 on the pressing portion 141 enhances the deformation capability of the pressing portion 141, allowing the two latching portions 142 to approach each other during installation, thereby passing through the second mounting hole 1123 and engaging with the conductive portion 112.

[0058] For example, the two buckle portions 142 are located on the same side of the pressing portion 141, and the thickness of the thinned area 1411 along the direction from the pressing portion 141 to the buckle portion 142 is smaller than the thickness of the non-thinned areas 1411 on both sides thereof along the direction from the pressing portion 141 to the buckle portion 142. Figure 6 As shown, the minimum thickness of the thinning area 1411 along the direction from the pressing portion 141 to the buckle portion 142 is H1, and the thickness of the non-thinning area 1411 along the direction from the pressing portion 141 to the buckle portion 142 is H2, and H1 is smaller than H2.

[0059] Exemplarily, the thickness of the thinning zone 1411 along the direction from the pressing portion 141 to the snap portion 142 may be uniform, or the thickness of the thinning zone 1411 along the direction from the pressing portion 141 to the snap portion 142 may gradually decrease from both sides to the middle.

[0060] It can be understood that there can be one or more second pressing members 140 .

[0061] In an optional embodiment, there is one second pressing member 140, and the second pressing member 140 can be located at a symmetrical point of the two first pressing members 130, or the second pressing member 140 can be located at a symmetrical point of the conductive member 120 along the first direction, so that the distribution of the first pressing member 130 and the second pressing member 140 is more uniform, and the fixed node arrangement of the conductive member 120 and the installation groove 1121 is more uniform, which is conducive to ensuring the installation stability of the conductive member 120.

[0062] In some embodiments, such as Figure 4 As shown, there are multiple second pressing members 140, evenly spaced along the first direction. The distance between two adjacent second pressing members 140 is L1, and the distance between the two outermost second pressing members 140 and their adjacent first pressing members 130 is L2, with L1 being greater than or equal to L2. This helps ensure the number of fixed nodes between the conductive member 120 and the mounting slot 1121, and the fixed nodes are arranged more evenly, which helps ensure the installation stability of the conductive member 120.

[0063] For example, Figure 4As shown, the distance between the topmost second pressing member 140 among the multiple second pressing members 140 and its adjacent first pressing member 130 is smaller than the distance between two adjacent second pressing members 140, and the distance between the bottommost second pressing member 140 among the multiple second pressing members 140 and its adjacent first pressing member 130 is also smaller than the distance between two adjacent second pressing members 140.

[0064] It is understandable that the distances between the two outermost second pressing members 140 and their adjacent first pressing members 130 may be the same or different, as long as both are less than or equal to the distance between the two adjacent second pressing members 140 , and no specific limitation is given here.

[0065] In some embodiments, such as Figure 4 As shown, there are multiple conductive members 120 and multiple electrical connectors 210. The multiple conductive members 120 are sequentially spaced apart along a second direction perpendicular to the first direction. The multiple conductive members 120 correspond to and are in contact with the multiple electrical connectors 210. It can be understood that the multiple conductive members 120 are spaced apart to prevent contact between the conductive members 120 and cause a short circuit.

[0066] For example, Figure 4 As shown, a guide rail assembly 100 includes two conductive members 120 , and two electrical connectors 210 at one end of the massage mechanism 200 are in contact and conduction with the two conductive members 120 in a one-to-one correspondence.

[0067] Furthermore, a portion of the second pressing member 140 is located between two adjacent conductive members 120 and connected to the mounting groove 1121, while the other portion presses the two adjacent conductive members 120 against the mounting groove 1121. In this way, two adjacent conductive members 120 can be pressed against the mounting groove 1121 by a single second pressing member 140, which can reduce the number of second pressing members 140 and the number of mounting nodes on the conductive portion 112, thereby facilitating manufacturing and assembly.

[0068] For example, the second pressing member 140 may be made of insulating materials such as plastic or rubber.

[0069] Furthermore, if Figure 4 As shown, the mounting groove 1121 is provided with a separator 150, which divides the mounting groove 1121 into a plurality of grooves 1121a in a second direction perpendicular to the first direction. The plurality of conductive members 120 are respectively located in corresponding grooves 1121a, and the second pressing member 140 is connected to the separator 150. The separator 150 separates different conductive members 120, thereby preventing short circuits caused by conduction between the conductive members 120.

[0070] Exemplarily, the separator 150 and the conductive part 112 can be integrally formed, and the second mounting hole 1123 passes through the separator 150, so that the snap-fit portion 142 can pass through the separator 150 and the conductive part 112 from the mounting groove 1121 and then snap into engagement with the conductive part 112, and the clamping portion 141 clamps the two conductive parts 120 on opposite sides along the second direction.

[0071] In some embodiments, such as Figure 4 and Figure 5 As shown, the conductive portion 112 is further provided with a limiting member 160, which is located between the two first pressing members 130. Along the notch of the mounting groove 1121 toward the conductive member 120, the limiting member 160 blocks part of the conductive member 120. In this way, after the conductive member 120 is placed in the mounting groove 1121, the limiting member 160 can be used to limit the conductive member 120, so as to facilitate connecting the first pressing member 130 or the second pressing member 140 to the mounting groove 1121 and pressing the conductive member 120 to the mounting groove 1121. For example, after the opposite ends of the conductive member 120 are pressed against the mounting groove 1121 by the first pressing member 130, the conductive member 120 is easily arched and deformed, and the limiting member 160 can block the conductive member 120, thereby limiting the conductive member 120 and facilitating the installation of the second pressing member 140.

[0072] Exemplarily, the limiting member 160 is connected to the side wall of the mounting groove 1121 and is spaced relative to the bottom wall of the mounting groove 1121. When observing from the groove opening of the mounting groove 1121 to the bottom wall of the mounting groove 1121, the limiting member 160 blocks part of the conductive member 120.

[0073] Exemplarily, a plurality of limiting members 160 are provided on the sidewall surfaces of the installation groove 1121 on opposite sides along the second direction, and the plurality of limiting members 160 are spaced apart along the first direction.

[0074] In some embodiments, such as Figure 3 As shown, the guide rail 110 is further provided with a guide groove 113, and the massage mechanism 200 is provided with a guide member 220. The guide groove 113 and the guide member 220 are movably engaged, and the guide member 220 can move in a first direction relative to the guide groove 113. It can be understood that the guide groove 113 extends in the first direction, and the guide member 220 can move in the first direction within the guide groove 113, thereby limiting the movement direction of the massage mechanism 200 and achieving a guiding function, which is conducive to maintaining a stable connection between the connecting portion 111 of the guide rail 110 and the massage mechanism 200, and between the massage mechanism 200 and the conductive portion 112 of the guide rail 110.

[0075] Exemplarily, the guide member 220 may be a cylinder, one end of which is connected to the massage movement 200 , and the other end extends into the guide groove 113 , abutting against both sides of the guide groove 113 along the second direction, and moves along the first direction under the guidance of the guide groove 113 .

[0076] like Figures 1 to 3 As shown, an embodiment of the present invention further provides a massage device, comprising a massage movement 200 and the guide rail assembly 100 as described above. The massage movement 200 is movably connected to the connecting portion 111 of the guide rail assembly 100, and the electrical connector 210 of the massage movement 200 is in contact and conductive with the conductive member 120. In a massage device having the guide rail assembly 100, the conductive member 120 can be stably installed in the installation groove 1121 under the pressure of the first pressing member 130 and the second pressing member 140, which facilitates stable contact between the conductive member 120 and the electrical connector 210 of the massage movement 200, improves conductive stability, and ensures normal operation of the massage device.

[0077] Furthermore, the massage device includes two spaced-apart guide rail assemblies 100. The massage mechanism 200 is movably connected to the two guide rail assemblies 100 at opposite ends. Electrical connectors 210 at the opposite ends are in contact with the conductive members 120 of the two guide rail assemblies 100, respectively. As will be appreciated, the movably connected two opposite ends of the massage mechanism 200 to the two guide rail assemblies 100 provide more stable movement of the massage mechanism 200. The control module can be electrically connected to the massage mechanism 200 via the two guide rail assemblies 100.

[0078] Exemplarily, any guide rail assembly 100 may include a plurality of conductive members 120 , and opposite sides of the massage mechanism 200 are provided with a plurality of electrical connectors 210 , and the plurality of electrical connectors 210 can be in contact and conduction with the plurality of conductive members 120 .

[0079] For example, Figure 2 and Figure 3 As shown, the electrical connector 210 includes a probe 211 and an elastic member 212. The probe 211 is in contact and conductive with the conductive member 120. The probe 211 can be extended and retracted through the elastic member 212. This not only provides a buffer for the probe 211 to prevent the probe 211 from being subjected to excessive force, but also helps the guide rail assembly 100 to adapt to the deformation of the human body curve. When the massage movement 200 moves relative to the guide rail assembly 100, the probe 211 maintains contact and conductivity with the conductive member 120 under the force provided by the elastic member 212, thereby improving the electrical connection stability between the massage movement 200 and the conductive member 120.

[0080] For example, two guide rail assemblies 100 may be connected via a connector.

[0081] The above description is merely a specific embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any person skilled in the art can easily conceive of various equivalent modifications or substitutions within the technical scope disclosed in the present invention, and such modifications or substitutions are intended to be within the scope of protection of the present invention. Therefore, the scope of protection of the present invention shall be subject to the scope of protection of the claims.

Claims

1. A guide rail assembly, characterized in that: include: The guide rail includes a connecting portion and a conductive portion connected to the connecting portion, wherein the connecting portion is configured to be movably connected to a massage mechanism, and the massage mechanism can move relative to the connecting portion along a first direction, and the conductive portion is provided with a mounting groove extending along the first direction; A conductive member is located in the mounting slot, and is configured to be in contact with and electrically connected to the electrical connector of the massage core; a first pressing member, wherein the number of the first pressing members is two, and the two first pressing members are respectively connected to the mounting groove to press opposite ends of the conductive member along the first direction against the mounting groove; as well as The second pressing member is located between the two first pressing members and is connected to the installation slot to press the middle portion of the conductive member against the installation slot.

2. The guide rail assembly according to claim 1, wherein: At least one of the first pressing member and the second pressing member is detachably connected to the mounting groove.

3. The guide rail assembly according to claim 2, wherein: The conductive portion is further provided with a first mounting hole communicating with the mounting groove, and the first pressing member is detachably connected to the first mounting hole; and / or The conductive portion is further provided with a second mounting hole communicating with the mounting groove, and the second pressing member is detachably connected to the second mounting hole.

4. The guide rail assembly according to claim 3, wherein: The second pressing member includes a pressing portion and two buckle portions connected to the pressing portion, the two buckle portions are arranged at intervals, the two buckles are passed through the second mounting hole and buckled with the conductive portion, so that the pressing portion presses the conductive member against the mounting groove.

5. The guide rail assembly according to claim 4, characterized in that The pressing portion is formed with a thinning area, and with the extension direction of the two buckle portions as the projection direction, the projection of the thinning area is located between the projections of the two buckle portions.

6. The guide rail assembly according to claim 1, wherein: There are multiple second pressing members, and the multiple second pressing members are evenly spaced and arranged along the first direction; The distance between two adjacent second pressing members is L1, the distance between the two outermost second pressing members and their adjacent first pressing members is L2, and L1 is greater than or equal to L2.

7. The guide rail assembly according to claim 1, wherein: The conductive member is inserted between the first pressing member and the wall of the installation slot, so that the first pressing member presses one end of the conductive member against the installation slot; and / or The conductive member is inserted between the second pressing member and the groove wall surface of the installation groove, so that the second pressing member presses the middle part of the conductive member against the installation groove.

8. The guide rail assembly according to claim 1, wherein: There are multiple conductive members and multiple electrical connectors, and the multiple conductive members are sequentially spaced apart along a second direction perpendicular to the first direction. The multiple conductive members correspond to the multiple electrical connectors one by one and are in contact and conductive.

9. The guide rail assembly according to claim 8, wherein: A portion of the second pressing member is located between any two adjacent conductive members among the plurality of conductive members and is connected to the mounting groove, and another portion presses the two adjacent conductive members against the mounting groove.

10. The guide rail assembly according to claim 9, wherein: The installation slot is provided with a separator, which divides the installation slot into a plurality of slot bodies in a second direction perpendicular to the first direction. The plurality of conductive members are respectively located in the corresponding slot bodies, and the second pressing member is connected to the separator.

11. The guide rail assembly according to any one of claims 1 to 10, characterized in that: The conductive portion is further provided with a limiting member, which is located between the two first pressing members; along the direction of the notch of the installation slot toward the conductive member, the limiting member blocks a portion of the conductive member.

12. The guide rail assembly according to any one of claims 1 to 10, characterized in that: The guide rail is further provided with a guide groove, and the massage mechanism is provided with a guide member. The guide groove and the guide member are movably engaged with each other, and the guide member can move relative to the guide groove along the first direction.

13. A massage device, characterized in that: It comprises a massage core and a guide rail assembly as described in any one of claims 1 to 12, wherein the massage core is movably connected to the connecting portion of the guide rail assembly, and the electrical connector of the massage core is in contact with and conductive to the conductive member.

14. The massage device according to claim 13, characterized in that The massage device includes two guide rail assemblies arranged at intervals, and the opposite ends of the massage movement are movably connected to the two guide rail assemblies respectively, and are in contact and conducted with the conductive parts of the two guide rail assemblies respectively through the electrical connectors at the opposite ends.