Massage assembly and massage equipment

By designing switchable isolation parts and massage head structure on the massage chair, the problem of the user's back being against the massage head when resting after massage is solved, and the user's back feels irritated when he is resting after massage, achieving better comfort in use.

CN120022165APending Publication Date: 2025-05-23GUANGDONG SKG INTELLIGENT TECH CO LTD
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Patent Information

Application Number
CN202311573346.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2023-11-22
Publication Date
2025-05-23

AI Technical Summary

Technical Problem

When the existing massage chair needs to rest after massage, the massage head will feel uncomfortable when the user has a massage chair, which will affect the comfort of use.

Method used

A massage assembly is designed, including a barrier, a massage mechanism and a switching mechanism. The massage assembly is switched between the first state and the second state by driving the spacer to move relative to the massage mechanism by the switching mechanism. When in the first state, the spacer blocks at least part of the massage head to avoid a sensation of back; when in the second state, the spacer leaves the massage head and the massage head is exposed to provide a strong massage.

Benefits of technology

It achieves reducing or eliminating the back sensation without affecting the massage effect and improving user comfort.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides a massage assembly and massage equipment. The massage assembly comprises: a separator; the massage mechanism is provided with a massage head, and the massage head is used for acting on a massage object; the massage assembly comprises a separator and a switching mechanism, the switching mechanism is connected to the separator, and the switching mechanism is used for driving the separator to move relative to the massage mechanism, so that the massage assembly is switched between a first state and a second state; when the massage assembly is in the first state, the separator at least covers part of the massage head, so that the massage head is separated from the massage object; when the massage assembly is in the second state, the isolation piece exposes the massage head, so that the massage head can act on the massage object. The massage assembly provided by the invention can bring better use comfort to a user.
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Description

Technical Field

[0001] The present application relates to the field of massage technology, and in particular to a massage component and a massage device. Background Art

[0002] With the development of technology, in daily work, study or leisure and entertainment activities, people often experience discomfort in the muscles or bones of the body due to maintaining an improper posture for a long time, and in severe cases, even diseases may occur, thus affecting people's normal life. In order to relieve the discomfort in the muscles or bones, various types of massage equipment, such as massage chairs, have appeared on the market. In the related art, massage chairs usually have a massage head at the backrest position, and the user can massage the back through the massage head when leaning on the backrest. However, when the user needs to lean on the back to rest after the massage, the back will also be pressed against the massage head, causing a feeling of back pain, which brings discomfort to the user. Summary of the invention

[0003] The present application provides a massage component and a massage device that can bring better comfort to users.

[0004] In a first aspect, the present application provides a massage component, the massage component comprising:

[0005] Isolation parts;

[0006] A massage mechanism, the massage mechanism having a massage head, the massage head being used to massage an object; and

[0007] A switching mechanism, wherein the switching mechanism is connected to the isolation member, and the switching mechanism is used to drive the isolation member to move relative to the massage mechanism so that the massage component switches between a first state and a second state; when the massage component is in the first state, the isolation member at least covers a portion of the massage head so that the massage head is separated from the massage object; when the massage component is in the second state, the isolation member exposes the massage head so that the massage head can act on the massage object.

[0008] Wherein, when the massage component is in the first state, the massage head abuts against a side of the isolation member facing the massage head to form support for the isolation member.

[0009] The massage mechanism has a first side and a second side that are opposite to each other, the massage head is located on the first side, and the switching mechanism can selectively move the isolation member to the first side so that the isolation member at least covers a portion of the massage head, or move the isolation member at least partially to the second side of the massage mechanism so that the isolation member is away from the massage head.

[0010] Among them, the switching mechanism includes a conveying component, a rotating part, and a driving part. The conveying component is arranged around the rotating part. The conveying component has a bearing surface, and the spacer is carried on the bearing surface. The driving part is used to drive the rotating part to drive the bearing surface to rotate to the first side or the second side, so as to switch the spacer to the first side or the second side.

[0011] Among them, the conveying component includes a first conveyor belt and a second conveyor belt. The rotating part includes a first rotating part and a second rotating part. The first rotating part and the second rotating part are arranged side by side on opposite sides of the massage mechanism. The first conveyor belt is tensioned between the first rotating part and the second rotating part, and the second conveyor belt is tensioned between the first rotating part and the second rotating part. The first conveyor belt and the second conveyor belt are respectively located on opposite sides of the massage mechanism, and the spacer is supported on the first conveyor belt and the second conveyor belt.

[0012] Among them, the switching mechanism further includes a base. The rotating part is carried on the base. The massage part has a first side and a second side facing away from each other. The massage head is located on the first side. In the direction of the second side facing the first side, the base has a support surface protruding from the bearing surface, and the support surface is used to separate the massage object from the bearing surface.

[0013] Among them, the switching mechanism further includes a base. The rotating part is carried on the base. The massage part has a first side and a second side facing away from each other. The massage head is located on the first side. In the direction of the second side facing the first side, the massage head of the massage mechanism protrudes from the support surface of the base.

[0014] Among them, the height by which the massage head protrudes from the support surface is greater than or equal to the thickness of the spacer and less than or equal to twice the thickness of the spacer.

[0015] Among them, a plurality of first connection positions are formed between the spacer and the first conveyor belt, and the part of the spacer between two adjacent first connection positions is spaced from the first conveyor belt;

[0016] And / or, a plurality of second connection positions are formed between the spacer and the second conveyor belt, and the part of the spacer between two adjacent second connection positions is spaced from the second conveyor belt.

[0017] Among them, a first connection position is formed between the spacer and the first conveyor belt, and a second connection position is formed between the spacer and the second conveyor belt, and the first connection position is directly opposite to the second connection position.

[0018] Wherein, the massage component also includes a support plate, a first sleeve and a second sleeve, the first sleeve is sleeved on the outer periphery of the first rotating part, the second sleeve is sleeved on the outer periphery of the second rotating part, the opposite ends of the support plate are respectively fixed on the first sleeve and the second sleeve, and the massage mechanism is fixed on the support plate.

[0019] Wherein, when the massage component is in the second state, the isolation member is wound by the switching mechanism.

[0020] The switching mechanism includes a driver and a reel, wherein the driver is connected to the reel and is used to drive the reel to rotate, and the reel is connected to the isolating member, and the reel is used to wind up or release the isolating member when rotating.

[0021] The isolating member has a traction end and a fixed end that are separated from each other, and the switching mechanism also includes a traction member, which is connected to the traction end of the isolating member, and the reel is connected to the fixed end of the isolating member. The traction member is used to act on the isolating member along the direction from the fixed end toward the traction end to keep the isolating member always taut.

[0022] Wherein, the isolation element is an airbag structure.

[0023] The isolating member includes a first layer and a second layer, the edge of the second layer is sealed and connected to the first layer to form a closed air cavity, and the isolating member also includes a plurality of connecting parts located in the air cavity, the connecting parts are connected between the first layer and the second layer, and the plurality of connecting parts pull the first layer so that at least part of the first layer forms a supporting plane.

[0024] Wherein, the isolation member has a plurality of thickened portions, the massage mechanism includes a plurality of massage members, the massage members have the massage heads, and when the massage assembly is in the first state, each thickened portion covers at least one massage head of the massage member.

[0025] In a second aspect, the present application also provides a massage device, which includes the above-mentioned massage component.

[0026] In the massage assembly provided by the present application, by providing a flexible member and a switching mechanism that can drive the flexible member to move, the massage head can be selectively blocked or exposed. Specifically, when the user does not need massage, the switching mechanism can be controlled to drive the isolation member to move relative to the massage mechanism, so that the isolation member blocks at least part of the massage head, and the massage assembly is in the first state at this time. In the first state, since at least part of the massage head is blocked by the isolation member, the user's body and the blocked massage head are separated by the isolation member, thereby eliminating or reducing the back-irritation feeling, thereby ensuring the comfort of use. When the user needs massage, the switching mechanism can be controlled to drive the isolation member to move relative to the massage mechanism, so that the isolation member leaves the massage head, and all the massage heads are exposed outside the isolation member, and the massage assembly is in the second state at this time. In the second state, since all the massage heads are not covered by the isolation member, the uncovered massage heads can apply a stronger massage to the user's body. Therefore, the massage assembly provided by the present application can bring better comfort to the user. BRIEF DESCRIPTION OF THE DRAWINGS

[0027] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the drawings required for use in the implementation will be briefly introduced below. Obviously, the drawings described below are some implementation methods of the present application. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying creative work.

[0028] Figure 1 A schematic diagram of a massage device provided in an embodiment of the present application.

[0029] Figure 2 This is an exploded view of the first massage component provided in an embodiment of the present application.

[0030] Figure 3 for Figure 2 The massage assembly is shown in an assembled view in a first state.

[0031] Figure 4 for Figure 3 A schematic diagram of the massage component shown is in a second state.

[0032] Figure 5 for Figure 4 A schematic diagram of the massage component shown in another perspective.

[0033] Figure 6 for Figure 4 A schematic diagram of the switching mechanism in the massage assembly is shown.

[0034] Figure 7 for Figure 6 An exploded view of the switching mechanism is shown.

[0035] Figure 8 for Figure 4 Schematic diagram of some parts of the massage component shown.

[0036] Fig. 9 for Figure 8 The structure shown is a cross-sectional view along line AA.

[0037] Fig.10 A schematic diagram of a second massage component in a first state provided in an embodiment of the present application.

[0038] Fig.11 for Fig.10 A schematic diagram of the massage assembly is shown in a second state.

[0039] Fig.12 for Fig.11 The massage assembly shown is a simplified cross-sectional view along line BB.

[0040] Fig.13 A simplified cross-sectional view of an isolation member provided in an embodiment of the present application.

[0041] Fig.14 for Figure 2 A schematic diagram of the isolation member shown in another perspective.

[0042] Description of Figure Numbers:

[0043] Massage device 100; massage assembly 10; device body 20; outer cover layer 30; isolation member 110; massage mechanism 120; switching mechanism 130; support plate 140; first sleeve 150; second sleeve 160; first roller 170; second roller 180; first layer 111; second layer 112; connecting portion 113; thickening portion 114; massage member 121; transmission assembly 131; rotating portion 132; driving portion 133; base 134; driver 135; reel 136; traction member 1 37; support base 210; seat portion 220; back portion 230; leg support portion 240; first conveyor belt 1311; second conveyor belt 1312; first rotating portion 1321; second rotating portion 1322; first side C1; second side C2; ​​first end D1; second end D2; third end D3; fourth end D4; traction end D5; fixed end D6; first direction F1; second direction F2; massage head M1; bearing surface M2; supporting surface M3; air cavity Q; first connecting position X1; second connecting position X2. DETAILED DESCRIPTION

[0044] The following will be combined with the drawings in the embodiments of the present application to clearly and completely describe the technical solutions in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, not all of the embodiments. Based on the embodiments in the present application, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of this application.

[0045] Reference to "embodiment" or "implementation" herein means that a particular feature, structure, or characteristic described in conjunction with the embodiment or implementation may be included in at least one embodiment of the present application. The appearance of the phrase in various locations in the specification does not necessarily refer to the same embodiment, nor is it an independent or alternative embodiment that is mutually exclusive with other embodiments. It is explicitly and implicitly understood by those skilled in the art that the embodiments described herein may be combined with other embodiments.

[0046] Please refer to Figure 1 The present application provides a massage device 100, which includes a device body 20 and a massage component 10, and the massage component 10 is installed on the device body 20. The massage device 100 can be, but is not limited to, a massage chair, a massage sofa, a massage bed, a massage cushion, etc. Correspondingly, the device body 20 can be, but is not limited to, a seat body, a sofa body, a bed body, a cushion body. The massage component 10 and the device body 20 can be non-detachably connected, that is, the massage component 10 and the device body 20 are fixedly connected as a whole, and the connection method can be, but is not limited to, welding, etc. The massage component 10 can also be connected to the device body 20 as a detachable whole, that is, the massage component 10 and the device body 20 are detachably connected, and the connection method can be snap-on, connected by bolts, etc.

[0047] In some embodiments, the massage component 10 can also be a whole that can be used independently without relying on the device body 20. For example, the massage component 10 can be placed on a sofa, a mattress, or a seat to massage the user. When massage is not needed, the massage component 10 can also be used as an ordinary backrest or seat cushion.

[0048] This application uses the massage device 100 as a massage chair for exemplary description. Figure 1 As shown. Figure 1In the embodiment, the device body 20 includes a support seat 210, a seat part 220, a backrest 230, and a leg support part 240. The support seat 210 is connected to the seat part 220, the seat part 220 is connected to the backrest 230 and the leg support part 240, and the support seat 210 is used to support the weight of the seat part 220, the backrest 230, and the leg support part 240. When the user uses the massage chair, the back of the human body can lean on the backrest 230, which can also be called a backrest, the buttocks and thighs of the human body are supported on the seat part 220, and the calves of the human body are supported on the leg support part 240. As for the massage component 10, it can be installed on the backrest 230, and when the user leans on the backrest 230, the massage component 10 massages the user's back. In some embodiments, the massage device 100 can also include an outer cover layer 30, which can be but not limited to a leather cover. The outer cover layer 30 is sleeved outside the chair back 230 and the massage component 10 is covered in the outer cover layer 30 to prevent the massage component 10 from being exposed, thereby improving the aesthetics of the massage device 100. In some embodiments, the massage component 10 can also be installed on the leg support part 240. When the user's calf is placed on the leg support part 240, the massage component 10 massages the user's calf.

[0049] In the related art, a massage head is provided on the backrest of the massage chair, and the user can massage the back through the massage head when leaning on the backrest. However, when the user needs to lean back to rest after the massage, the back will also be pressed by the massage head, causing a back-irritation feeling, causing discomfort to the user.

[0050] Based on this, the present application hopes to provide a solution that can solve but is not limited to the above-mentioned technical problems, the details of which will be explained in the subsequent embodiments.

[0051] Please refer to Figures 2 to 4 The present application provides a massage component 10, which can output one or more of electrical energy (electrotherapy), light energy (phototherapy), thermal energy (thermotherapy), mechanical energy (mechanical vibration / mechanical pressing / mechanical kneading), etc. to the human body to massage the human body, thereby achieving the effects of promoting blood circulation, relieving fatigue, and relaxing meridians.

[0052] The massage assembly 10 includes an isolation element 110 , a massage mechanism 120 , and a switching mechanism 130 .

[0053] Among them, the isolation member 110 is used to isolate the massage mechanism 120 from the user's body when the user does not need massage, so that the user cannot feel the massage mechanism 120, or the user's sensitivity to the massage mechanism 120 is weakened. The isolation member 110 can be a hard part, such as hard leather. The use of a hard part can make the isolation member 110 thinner and can also play a better isolation role. The isolation member 110 can also be a flexible member. A flexible member refers to an object with soft or bendable properties, such as a sponge, an airbag, etc. The use of a flexible member can make the user more comfortable. The subsequent embodiments of this application will exemplify the isolation member 110 as an airbag, but it should not be regarded as a limitation to this application.

[0054] The massage mechanism 120 has a massage head M1 (see Figure 4 ), the massage head M1 is used to act on the massage object to massage the massage object. For the user, the massage object is the part of the user's body to be massaged, and the massage object can be the user's back, waist, legs, etc. The massage mechanism 120 has a first side C1 and a second side C2 (see FIG. 1 ) that are separated from each other. Figure 2 ), the first side C1 is the side where the massage head M1 is provided on the massage mechanism 120. When the user uses the massage assembly 10 for massage, the massaged part of the user's body is located on the first side C1.

[0055] The switching mechanism 130 is connected to the isolation member 110, and the switching mechanism 130 is used to drive the isolation member 110 to move relative to the massage mechanism 120, so that the massage assembly 10 is in the first state (see Figure 3 ) and the second state (see Figure 4 ) When the massage component 10 is in the first state, the isolation member 110 at least covers (also referred to as shielding) a portion of the massage head M1, so that the massage head M1 is separated from the massage object. When the massage component 10 is in the second state, the isolation member 110 is away from the massage head M1, so that the massage head M1 can act on the massage object.

[0056] From another perspective, when the massage component 10 is in the first state, the orthographic projection of the massage head M1 on the isolation member 110 along the direction from the second side C2 to the first side C1 at least partially falls within the range of the isolation member 110. When the massage component 10 is in the second state, the orthographic projection of the massage head M1 on the isolation member 110 along the direction from the second side C2 to the first side C1 is entirely located outside the isolation member 110.

[0057] In this embodiment, when the user does not need massage, the isolation member 110 can be driven to move relative to the massage mechanism 120 by controlling the switching mechanism 130, so that the isolation member 110 blocks at least part of the massage head M1, and the massage assembly 10 is in the first state at this time. In the first state, since at least part of the massage head M1 is blocked by the isolation member 110, the user's body and the blocked massage head M1 are separated by the isolation member 110, thereby eliminating or reducing the above-mentioned back-irritation feeling, thereby ensuring the comfort of use. When the user needs massage, the isolation member 110 can be driven to move relative to the massage mechanism 120 by controlling the switching mechanism 130, so that the isolation member 110 leaves the massage head M1, and all the massage heads M1 are exposed outside the isolation member 110, and the massage assembly 10 is in the second state at this time. In the second state, since all the massage heads M1 are not covered by the isolation member 110, the uncovered massage heads M1 can apply a stronger massage to the user's body. In addition, the massage assembly 10 provided in the present application realizes state switching by driving the isolation member 110 instead of driving the massage head M1 , which reduces the complexity of the switching mechanism 130 and allows the massage head M1 to be directly exposed without being affected by the isolation member 110 .

[0058] It should be noted that the above “at least part of the massage head M1 is blocked by the isolation member 110” means that when the massage component 10 is in the first state, the massage head M1 may be completely blocked by the isolation member 110, or only part of the massage head M1 may be blocked by the isolation member 110. The above “when the massage component 10 is in the second state, the isolation member 110 is away from the massage head M1” means that, in one embodiment, the isolation member 110 is located at a preset position on the first side C1, and the isolation member 110 does not block the massage head M1 at the preset position; in another embodiment, the isolation member 110 is located on the second side C2.

[0059] Please refer to Figure 2 The massage mechanism 120 may include one or more massage elements 121, and one massage element 121 may include one or more massage heads M1. Figure 4 In the structure shown, the massage assembly 10 has a first end D1 and a second end D2 that are separated from each other, and a plurality of massage members 121 are arranged at intervals along the relative direction between the first end D1 and the second end D2. The isolation member 110 can move along the relative direction between the first end D1 and the second end D2 under the drive of the switching mechanism 130 to cover at least part of the massage head M1 or to expose all the massage heads M1.

[0060] In one embodiment, when the massage assembly 10 is in the first state, the massage head M1 blocked by the isolation member 110 is spaced from the isolation member 110. Such a design can avoid friction between the isolation member 110 and the massage head M1 during movement, thereby making the isolation member 110 move more smoothly and reducing the driving force required for the movement of the isolation member 110 to save power.

[0061] In another embodiment, when the massage assembly 10 is in the first state, the massage head M1 abuts against the side of the isolation member 110 facing the massage head M1, that is, the massage head M1 blocked by the isolation member 110 contacts the isolation member 110 to support the isolation member 110. With such a design, the isolation member 110 can form an effective support, and when the user lies, the isolation member 110 is not easy to sag, making the user more comfortable.

[0062] Please refer to Figures 2 to 5 The massage mechanism 120 has a first side C1 and a second side C2 that are opposite to each other, and the massage head M1 is located on the first side C1. The switching mechanism 130 can selectively move the isolation member 110 to the first side C1 so that the isolation member 110 at least covers a portion of the massage head M1 (see Figure 3 ), or, at least partially move the isolation member 110 to the second side C2 of the massage mechanism 120 to keep the isolation member 110 away from the massage head M1 (see Figure 4 and Figure 5 That is, when the massage assembly 10 is in the first state, the isolation member 110 is at least partially located on the first side C1 to shield at least a portion of the massage head M1 (eg, Figure 3 When the massage assembly 10 is in the second state, the isolation member 110 is located on the second side C2 so that the massage head M1 is exposed (as shown in FIG. Figure 4 and Figure 5 In this embodiment, in the second state, the isolation member 110 is disposed on the second side C2, so that the isolation member 110 can be prevented from interfering with the massage head M1 located on the first side C1, ensuring that the massage head M1 can perform effective massage.

[0063] Optionally, when the massage assembly 10 is in the first state, the isolation member 110 is laid flat on the first side C1. Figure 3 When the massage assembly 10 is in the second state, the isolation member 110 is laid flat on the second side C2, as shown Figure 5 It is understandable that the spacer 110 is in a flat state so that it can be better hidden in the outer cover layer 30, and avoids the spacer 110 being stored in one position and bulging, which leads to an unsightly appearance.

[0064] There are many feasible forms of the switching mechanism 130 that can realize the conversion of the massage component 10 between the first state and the second state. The present application exemplifies two forms of the switching mechanism 130.

[0065] The first switching mechanism 130 - crawler mechanism is introduced below with reference to the accompanying drawings.

[0066] Please refer to Figure 6 The switching mechanism 130 includes a transmission component 131, a rotating part 132, and a driving part 133. The transmission component 131 is arranged around the rotating part 132. The transmission component 131 has a bearing surface M2, and the isolation member 110 is carried on the bearing surface M2. The driving part 133 is used to drive the rotating part 132 to drive the bearing surface M2 to rotate to the first side C1 or the second side C2, so as to realize the isolation member 110 switching to the first side C1 or the second side C2.

[0067] Please refer to Figure 6 and Figure 7 The conveying assembly 131 includes a first conveying belt 1311 and a second conveying belt 1312. The rotating part 132 includes a first rotating part 1321 and a second rotating part 1322. The first rotating part 1321 and the second rotating part 1322 are arranged side by side on opposite sides of the massage mechanism 120. The first conveying belt 1311 is stretched between the first rotating part 1321 and the second rotating part 1322. The second conveying belt 1312 is stretched between the first rotating part 1321 and the second rotating part 1322. The first conveying belt 1311 and the second conveying belt 1312 are respectively located on opposite sides of the massage mechanism 120. The isolating member 110 is supported on the first conveying belt 1311 and the second conveying belt 1312.

[0068] Specifically, the massage component 10 has a first end D1 and a second end D2 that are separated from each other, and a third end D3 and a fourth end D4 that are separated from each other. The first rotating part 1321 constitutes the first end D1, and the second rotating part 1322 constitutes the second end D2. The first conveyor belt 1311 is arranged at the third end D3, and the second conveyor belt 1312 is arranged at the fourth end D4. The distance between the first rotating part 1321 and the second rotating part 1322 can be kept constant so that the first conveyor belt 1311 and the second conveyor belt 1312 are tightened; in addition, the distance between the first rotating part 1321 and the second rotating part 1322 can be adjusted to adjust the tension of the first conveyor belt 1311 and the second conveyor belt 1312. The massage mechanism 120 is arranged between the first conveyor belt 1311 and the second conveyor belt 1312, and between the first rotating part 1321 and the second rotating part 1322. The opposite ends of the isolation member 110 are respectively connected to the first conveyor belt 1311 and the second conveyor belt 1312. Under the driving action of the driving part 133, the first conveyor belt 1311 and the second conveyor belt 1312 move in the relative directions of the first rotating part 1321 and the second rotating part 1322, thereby driving the isolation member 110 to move in this direction, so that the isolation member 110 switches to the first side C1 to cover the massage head M1 of the massage mechanism 120, or switches to the second side C2 to make the massage head M1 of the massage mechanism 120 appear outside the isolation room.

[0069] In this embodiment, the first conveyor belt 1311 and the second conveyor belt 1312 are similar to crawler belts, and the switching mechanism 130 is equivalent to a crawler-type mechanism. It can be understood that the crawler-type transmission is stable, which is conducive to the isolation member 110 being stretched to better cover the massage head M1 of the massage mechanism 120. The massage mechanism 120 uses the space between the first conveyor belt 1311 and the second conveyor belt 1312 to reduce space occupation. The two conveyor belts can stably support the isolation member 110, ensure the overall support of the isolation member 110, and avoid collapse.

[0070] Please combine Figure 4 Reference Figure 6 and Figure 7 The switching mechanism 130 further includes a base 134, and the rotating part 132 is supported on the base 134. The massage member 121 has a first side C1 and a second side C2 that are separated from each other, and the massage head M1 is located on the first side C1. In the direction from the second side C2 to the first side C1, the base 134 has a support surface M3 protruding from the support surface M2, and the support surface M3 is used to separate the massage object from the support surface M2.

[0071] In this embodiment, since the support surface M3 protrudes from the bearing surface M2, when the user lies on the massage assembly 10, the base 134 will provide a certain support to the user's body, so that the user's pressure on the bearing surface M2 can be avoided or weakened. The bearing surface M2 is subordinate to the transmission assembly 131. It can be understood that if the transmission assembly 131 is too much pressed by the user, the movement of the transmission assembly 131 will be hindered, thereby having a certain impact on the smooth movement of the transmission assembly 131. Therefore, in this embodiment, the support surface M3 is designed to protrude from the bearing surface M2, which can avoid the impact of the human body on the transmission assembly 131 as much as possible.

[0072] Please refer to Figure 4 and Figure 7 The switching mechanism 130 further includes a base 134, and the rotating part 132 is supported on the base 134. The massage member 121 has a first side C1 and a second side C2 that are separated from each other, and the massage head M1 is located on the first side C1. In the direction from the second side C2 to the first side C1, the massage head M1 of the massage mechanism 120 protrudes from the support surface M3 of the base 134.

[0073] In this embodiment, since the massage head M1 protrudes from the support surface M3, it can be ensured that when the user lies on the massage assembly 10, the massage head M1 abuts against the user's body, thereby ensuring that the massage mechanism 120 can apply sufficient massage force to the user to ensure the massage effect.

[0074] Optionally, the height of the massage head M1 protruding from the support surface M3 is greater than or equal to the thickness of the isolation member 110, and less than or equal to twice the thickness of the isolation member 110. In other words, the height of the massage head M1 protruding from the support surface M3 is limited to the range of one and two times the thickness of the isolation member 110, which is conducive to the massage head M1 protruding to a certain height to effectively massage the human body, and not protruding too much, so as to avoid the massage head M1 protruding too high and affecting the movement of the isolation member 110. In other words, if the height of the massage head M1 protruding from the support surface M3 is too large, the positive pressure of the massage head M1 on the isolation member 110 will be greater, and the isolation member 110 will be less likely to move onto the massage head M1, and will not be easily separated from the massage head M1. Therefore, the parameter range designed in this embodiment can ensure the smooth movement of the isolation member 110.

[0075] Optionally, see Figure 6 and Figure 7The massage component 10 further includes two first rollers 170, which are located at the third end D3 and are respectively disposed on the first rotating part 1321 and the second rotating part 1322, and the first transmission surrounds the outer circumference of the two first rollers 170 and is tightened on the two first rollers 170. Under the driving action of the driving part 133, the first rollers 170 rotate, and the first rollers 170 drive the first conveyor belt 1311 to move by friction. Further, the massage component 10 further includes two second rollers 180, which are located at the fourth end D4 and are respectively disposed on the first rotating part 1321 and the second rotating part 1322, and the second transmission surrounds the outer circumference of the two second rollers 180 and is tightened on the two second rollers 180. Under the driving action of the driving part 133, the second rollers 180 rotate, and the second rollers 180 drive the second conveyor belt 1312 to move by friction.

[0076] In one embodiment, the first roller 170 and the second roller 180 carried on the first rotating portion 1321 are respectively fixedly connected to opposite ends of the first rotating portion 1321, and the first rotating portion 1321, the first roller 170, and the second roller 180 rotate synchronously. Similarly, the first roller 170 and the second roller 180 carried on the second rotating portion 1322 are respectively fixedly connected to opposite ends of the second rotating portion 1322, and the second rotating portion 1322, the first roller 170, and the second roller 180 rotate synchronously.

[0077] In another embodiment, the first shaft section and the second shaft section are both fixedly arranged, and both can be directly or indirectly fixedly connected to the base 134. The first roller 170 and the second roller 180 carried on the first rotating part 1321 are respectively rotatably connected to the opposite ends of the first rotating part 1321, for example, by bearings. Similarly, the first roller 170 and the second roller 180 carried on the second rotating part 1322 are respectively rotatably connected to the opposite ends of the second rotating part 1322, for example, by bearings.

[0078] Optionally, see Figure 7, a plurality of first connection positions X1 are formed between the spacer 110 and the first conveyor belt 1311, that is, the spacer 110 and the first conveyor belt 1311 are connected through the first connection positions X1. The portion of the spacer 110 between two adjacent first connection positions X1 is spaced from the first conveyor belt 1311, that is, the spacer 110 between two adjacent first connection positions X1 is not connected to the first conveyor belt 1311. It can be understood that when the spacer 110 moves from the first side C1 to the second side C2, or from the second side C2 to the first side C1, it will pass through the outer periphery of the first roller 170 and bend into an arc shape following the outer periphery of the first roller 170. Since the spacer 110 between two adjacent first connection positions X1 is not connected to the first conveyor belt 1311, this portion of the spacer 110 can be deformed to a certain extent on the outer periphery of the first roller 170, so that the spacer 110 can smoothly pass through the first roller 170.

[0079] Optionally, please refer to Figure 7 , a plurality of second connection positions X2 are formed between the spacer 110 and the second conveyor belt 1312, that is, the spacer 110 and the second conveyor belt 1312 are connected through the second connection positions X2. The portion of the spacer 110 between two adjacent second connection positions X2 is spaced from the second conveyor belt 1312, that is, the spacer 110 between two adjacent second connection positions X2 is not connected to the second conveyor belt 1312. Similarly to the foregoing process, since the spacer 110 between two adjacent second connection positions X2 is not connected to the second conveyor belt 1312, this portion of the spacer 110 can be deformed to a certain extent on the outer periphery of the second roller 180, so that the spacer 110 can smoothly pass through the second roller 180.

[0080] It should be noted that the above first connection positions X1 and second connection positions X2 can be set simultaneously, or only one of them can be set, which is not limited herein.

[0081] Optionally, please refer to Figure 7 , a first connection position X1 is formed between the spacer 110 and the first conveyor belt 1311, and a second connection position X2 is formed between the spacer 110 and the second conveyor belt 1312. The first connection position X1 is directly opposite to the second connection position X2, that is, the first connection position X1 and the second connection position X2 are directly opposite in the relative direction of the first conveyor belt 1311 and the second conveyor belt 1312. The so-called direct opposite means that the projection of the first connection position X1 formed along the relative direction of the first conveyor belt 1311 and the second conveyor belt 1312 overlaps with the second connection position X2.

[0082] Specifically, it can be seen from the introduction of the previous embodiment that the isolating member 110 will be deformed to a certain extent when passing through the periphery of the first roller 170. Similarly, the isolating member 110 will be deformed to a certain extent when passing through the periphery of the first roller 170. If the first connection position X1 and the second connection position X2 are tilted relative to each other, it is easy to cause the deformation of the isolating member 110 at the third end D3 and the fourth end D4 to be asynchronous, thereby causing the isolating member 110 to be twisted in the width direction (the relative direction of the third end D3 and the fourth end D4). In this way, on the one hand, it may cause the isolating member 110 to be damaged, and on the other hand, it will cause the movement of the isolating member 110 to be unsmooth. In this embodiment, the first connection position X1 and the second connection position X2 are arranged opposite to each other, so as to ensure that the deformation of the isolating member 110 at the third end D3 and the fourth end D4 is synchronous, thereby avoiding the distortion of the isolating member 110, which can also overcome the above-mentioned problems.

[0083] Please refer to Figure 2 , Figure 8 and Fig. 9 The massage assembly 10 further includes a support plate 140, a first sleeve 150, and a second sleeve 160. The first sleeve 150 is sleeved on the outer periphery of the first rotating portion 1321, and the second sleeve 160 is sleeved on the outer periphery of the second rotating portion 1322. The opposite ends of the support plate 140 are respectively fixed to the first sleeve 150 and the second sleeve 160, and the massage mechanism 120 is fixed to the support plate 140.

[0084] In this embodiment, the first sleeve 150 is arranged at the first end D1, and the second sleeve 160 is arranged at the second end D2. The first sleeve 150 and the second sleeve 160 are both non-moving parts and remain stationary. The first sleeve 150 and the second sleeve 160 can be directly or indirectly connected to the base 134 to achieve a fixed setting. The support plate 140 can be a long plate, and its length extends in the direction from the first end D1 to the second end D2. The support plate 140 can be a flat plate, which can avoid the ups and downs of multiple massage parts 121. The support plate 140 is fixed on the first sleeve 150 and the second sleeve 160, so there is no need to set up an additional fixing seat to fix the support plate 140, which is conducive to the modularization and miniaturization of the whole machine.

[0085] The second switching mechanism 130 - winding mechanism is introduced below with reference to the accompanying drawings.

[0086] Please refer to Figure 10 to Figure 11 When the massage assembly 10 is in the first state (see Fig.10 ), the isolation member 110 is released by the switching mechanism 130 to cover at least a portion of the massage head M1. When the massage assembly 10 is in the second state (see Fig.11), the isolation member 110 is wound by the switching mechanism 130. That is, the switching mechanism 130 switches the massage assembly 10 between the first state and the second state by winding or releasing the isolation member 110. In this embodiment, the isolation members 110 are gathered together by winding the isolation members 110, so that they can be uniformly stored in the preset space, and the winding structure is simple and easy to implement.

[0087] Please refer to Figures 10 to 12 The switching mechanism 130 includes a driver 135 and a reel 136. The driver 135 is connected to the reel 136 and is used to drive the reel 136 to rotate. The reel 136 is connected to the isolation member 110 and is used to wind up or release the isolation member 110 when rotating. Specifically, the driver 135 can be a motor, and the output shaft of the motor can output a rotational motion, and the rotation directions are a first direction F1 and a second direction F2 that are opposite to each other (see Fig.12 ), that is, the output shaft can rotate forward and reverse. The output shaft can be directly or indirectly connected to the reel 136 to drive the reel 136 to rotate. The reel 136 is fixedly connected to one end of the isolation member 110 to wind or release the isolation member 110 when rotating. In the process of the massage component 10 being converted from the first state to the second state, the reel 136 rotates in the first direction F1, and the isolation member 110 is continuously wound on the reel 136, so that the isolation member 110 is away from the massage head M1; in the process of the massage component 10 being converted from the second state to the first state, the reel 136 rotates in the second direction F2, and the isolation member 110 is continuously released from the reel 136, so that the isolation member 110 covers the massage head M1. In this embodiment, the winding of the isolation member 110 can be achieved by the driver 135 and the reel 136, which has a simple structure, low cost, and is convenient for mass production.

[0088] Please refer to Figures 10 to 12 The isolating member 110 has a traction end D5 and a fixed end D6 that are separated from each other (see Fig.10 The switching mechanism 130 further includes a traction member 137, and the traction member 137 is connected to the traction end D5 of the isolation member 110. The reel 136 is connected to the fixed end D6 of the isolation member 110. The traction member 137 is used to act on the isolation member 110 along the direction from the fixed end D6 toward the traction end D5, so as to tighten the isolation member 110.

[0089] In this embodiment, the traction member 137 can be an elastic object such as a coil spring, a spiral spring, an elastic rope, etc. One end of the traction member 137 is fixed, and the other end is connected to the traction end D5 of the isolation member 110. The traction member 137 is used to provide elastic force to always tighten the isolation member 110. In the process of the massage component 10 being converted from the first state to the second state, the driver 135 drives the reel 136 to rotate, and the isolation member 110 is continuously wound on the reel 136. The traction end D5 of the isolation member 110 gradually approaches the second end D2, and the traction member 137 connected to the traction end D5 is stretched accordingly, and the elastic potential energy of the stretched traction member 137 increases, thereby tightening the isolation member 110. In the process of the massage component 10 being converted from the second state to the first state, the traction member 137 releases the elastic potential energy and shortens, thereby autonomously pulling the isolation member 110, so that the traction end D5 of the isolation member 110 gradually approaches the first end D1.

[0090] Of course, in some embodiments, the traction member 137 can also be an ordinary pull rope without elasticity, one end of which is connected to the traction end D5, and the other end is wound on a rotating shaft, which is connected to the output shaft of the motor. The output shaft of the motor can output rotational motion to achieve tightening of the isolation member 110.

[0091] The above are two feasible structural forms of the switching mechanism 130. The isolation member 110 in the massage component 10 is introduced below in conjunction with the accompanying drawings (the isolation member 110 is taken as an airbag as an example). The following embodiments can be applied to the above switching mechanism 130 under the premise that there is no combination contradiction.

[0092] Optionally, the isolation member 110 is an airbag structure. The so-called airbag structure refers to an inflatable and deflated object. When inflated, the airbag structure swells, and when deflated, the airbag structure deflates. For the massage component 10, when the massage component 10 is in the first state, the airbag structure is in an inflated state, so that the massage mechanism 120 and the user's body can be effectively separated, and the user is not easily affected by the massage mechanism 120 when lying down to rest. When the massage component 10 is in the second state, the airbag structure can be in an inflated state or a deflated state.

[0093] In some embodiments, no matter whether the massage component 10 is in the first state or the second state, the airbag structure always remains inflated, that is, a certain amount of air is maintained in the air cavity for a long time, so there is no need to set up an additional air pump or air circuit to increase the volume of the massage component 10.

[0094] In other embodiments, the massage component 10 is in a deflated state during the switching process between the first state and the second state, which is conducive to the switching mechanism 130 driving the isolation member 110 to move.

[0095] Please refer to Fig.13The isolation member 110 includes a first layer 111 facing the user's body and a second layer 112 facing away from the user's body, and the edge of the second layer 112 is sealed and connected to the first layer 111 to form a closed air cavity Q. The isolation member 110 also includes a plurality of connecting portions 113 located in the air cavity Q, and the connecting portions 113 are connected between the first layer 111 and the second layer 112. The plurality of connecting portions 113 pull the first layer 111 so that at least part of the first layer 111 forms a support plane. It should be noted that the support plane is not a plane in the true sense, but refers to a plane in theory, and the support plane may also present a certain curvature.

[0096] Specifically, for a general airbag structure, when the inside is inflated, the bulging height is the largest at the middle position away from the sealing edge, and the bulging height gradually decreases from the middle position to the sealing edge, that is, the surface of the airbag structure with internal inflation is uneven. When the user lies on the isolation member 110, the contact area between the human body and the isolation member 110 is small, and the parts of the human body that are not in contact with the isolation member 110 cannot be supported. In this embodiment, a connecting portion 113 is provided in the air cavity Q, and the opposite ends of the connecting portion 113 pull the first layer 111 and the second layer 112 respectively. Through the traction of the connecting portion 113, the first layer 111 can be supported as flat as possible to avoid the problem of excessive difference in bulging height. In this way, when the user lies on the isolation member 110, the contact area between the first layer 111 and the human body is large, thereby forming a roughly uniform degree of support for the human body.

[0097] Please refer to Fig.14 , the isolation member 110 has a plurality of thickened portions 114, the massage mechanism 120 includes a plurality of massage members 121, and the massage members 121 have the massage heads M1. When the massage assembly 10 is in the first state, each thickened portion 114 covers at least one massage head M1 of the massage member 121, that is, in the direction from the second side C2 to the first side C1, the orthographic projection of the massage head M1 on the thickened portion 114 at least partially falls within the range of the thickened portion 114. In this embodiment, by providing the thickened portion 114, the massage member 121 can be more effectively isolated from the user, so as to avoid the massage member 121 from causing a hard object sensation to the user when the user lies down to rest.

[0098] Although the embodiments of the present application have been shown and described above, it can be understood that the above embodiments are exemplary and cannot be understood as limitations on the present application. Ordinary technicians in the field can change, modify, replace and modify the above embodiments within the scope of the present application, and these improvements and modifications are also regarded as the scope of protection of the present application.

Claims

1. A massage component, It is characterized in that The massage component comprises: Isolation parts; A massage mechanism, the massage mechanism having a massage head, the massage head being used to massage an object; and A switching mechanism, wherein the switching mechanism is connected to the isolation member, and the switching mechanism is used to drive the isolation member to move relative to the massage mechanism so that the massage component switches between a first state and a second state; when the massage component is in the first state, the isolation member at least covers a portion of the massage head so that the massage head is separated from the massage object; when the massage component is in the second state, the isolation member exposes the massage head so that the massage head can act on the massage object.

2. The massage assembly according to claim 1, It is characterized in that When the massage component is in the first state, the massage head abuts against a side of the isolation member facing the massage head to support the isolation member.

3. The massage assembly according to claim 1, It is characterized in that The massage mechanism has a first side and a second side that are opposite to each other, the massage head is located on the first side, and the switching mechanism can selectively move the isolation member to the first side so that the isolation member at least covers a portion of the massage head, or at least partially move the isolation member to the second side of the massage mechanism so that the isolation member is away from the massage head.

4. The massage assembly according to claim 3, It is characterized in that The switching mechanism includes a transmission component, a rotating part and a driving part. The transmission component is arranged around the rotating part. The transmission component has a bearing surface. The isolation member is carried on the bearing surface. The driving part is used to drive the rotating part to drive the bearing surface to rotate to the first side or the second side, thereby realizing the switching of the isolation member to the first side or the second side.

5. The massage assembly according to claim 4, It is characterized in that The conveying assembly includes a first conveyor belt and a second conveyor belt, the rotating part includes a first rotating part and a second rotating part, the first rotating part and the second rotating part are arranged side by side on opposite sides of the massage mechanism, the first conveyor belt is tensioned between the first rotating part and the second rotating part, the second conveyor belt is tensioned between the first rotating part and the second rotating part, the first conveyor belt and the second conveyor belt are respectively located on opposite sides of the massage mechanism, and the isolation member is supported on the first conveyor belt and the second conveyor belt.

6. The massage assembly according to claim 4, It is characterized in that The switching mechanism also includes a base, the rotating part is supported by the base, the massage element has a first side and a second side that are opposite to each other, the massage head is located on the first side, and in the direction from the second side to the first side, the base has a supporting surface protruding from the supporting surface, and the supporting surface is used to separate the massage object from the supporting surface.

7. The massage assembly according to claim 4, It is characterized in that The switching mechanism also includes a base, the rotating part is supported by the base, the massage element has a first side and a second side that are opposite to each other, the massage head is located on the first side, and in the direction from the second side to the first side, the massage head of the massage mechanism protrudes from the supporting surface of the base.

8. The massage assembly according to claim 7, It is characterized in that The height of the massage head protruding from the support surface is greater than or equal to the thickness of the isolation member, and less than or equal to twice the thickness of the isolation member.

9. The massage assembly according to claim 5, It is characterized in that A plurality of first connection positions are formed between the isolating element and the first conveyor belt, and a portion of the isolating element located between two adjacent first connection positions is spaced from the first conveyor belt; And / or, a plurality of second connection positions are formed between the isolating element and the second conveyor belt, and a portion of the isolating element located between two adjacent second connection positions is spaced apart from the second conveyor belt.

10. The massage assembly of claim 9, It is characterized in that A first connection position is formed between the isolation member and the first conveyor belt, and a second connection position is formed between the isolation member and the second conveyor belt, and the first connection position is opposite to the second connection position.

11. The massage assembly according to claim 5, It is characterized in that The massage component also includes a support plate, a first sleeve and a second sleeve. The first sleeve is sleeved on the outer periphery of the first rotating part, and the second sleeve is sleeved on the outer periphery of the second rotating part. The opposite ends of the support plate are respectively fixed on the first sleeve and the second sleeve, and the massage mechanism is fixed on the support plate.

12. The massage assembly of claim 1, It is characterized in that When the massage component is in the second state, the isolation member is wound by the switching mechanism.

13. The massage assembly of claim 12, It is characterized in that The switching mechanism comprises a driver and a reel, wherein the driver is connected to the reel and used for driving the reel to rotate, and the reel is connected to the isolating member and used for winding or releasing the isolating member when rotating.

14. The massage assembly of claim 13, It is characterized in that The isolating member has a traction end and a fixed end which are separated from each other. The switching mechanism also includes a traction member, which is connected to the traction end of the isolating member. The reel is connected to the fixed end of the isolating member. The traction member is used to act on the isolating member along the direction from the fixed end toward the traction end to tension the isolating member.

15. The massage assembly according to any one of claims 1 to 14, It is characterized in that The isolation piece is an airbag structure.

16. The massage assembly of claim 15, It is characterized in that The isolation member includes a first layer and a second layer, wherein the edge of the second layer is sealed and connected to the first layer to form an enclosed air cavity, and the isolation member also includes a plurality of connecting parts located in the air cavity, wherein the connecting parts are connected between the first layer and the second layer, and the plurality of connecting parts pull the first layer so that at least a portion of the first layer forms a supporting plane.

17. The massage assembly according to any one of claims 1 to 14, It is characterized in that The isolation member has a plurality of thickened portions, the massage mechanism includes a plurality of massage members, and the massage members have the massage heads. When the massage assembly is in the first state, each thickened portion covers at least one massage head of the massage member.

18. A massage device, It is characterized in that The massage device comprises a massage component as claimed in any one of claims 1 to 17.