Health care cabin

CN224735423UActive Publication Date: 2026-09-11GUANGDONG SENGU SAIMO TECH CO LTD
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Patent Information

Application Number
CN202520626373.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-03
Publication Date
2026-09-11
Estimated Expiration
2035-04-03

AI Technical Summary

Technical Problem

[0003]但是这种养生舱体积大,占用空间大,不适于家庭使用,且运输不便

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Abstract

The utility model belongs to the field of health preserving equipment, and solves the problems of large volume, large space occupation, inconvenience in transportation and unsuitability for family use of the existing health preserving cabin. The health preserving cabin comprises a cabin bottom plate and a cabin cover. The cabin bottom plate is used for generating heat and far infrared light, and the cabin cover is used for generating heat and far infrared light. The cabin cover is covered on the cabin bottom plate, and a health preserving room for users to lie flat is formed between the cabin cover and the cabin bottom plate. The cabin cover comprises a first sliding cover and a second sliding cover. The first sliding cover and the second sliding cover are placed side by side on the cabin bottom plate along the length direction of the cabin bottom plate. The size of the first sliding cover is larger than that of the second sliding cover. When the first sliding cover moves to the side of the second sliding cover, the first sliding cover can cover the second sliding cover. The utility model is mainly used for physical treatment of the body.
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Description

Technical Field

[0001] This utility model belongs to the field of health care equipment, and in particular relates to health care cabins. Background Technology

[0002] The health cabin is a health care device that uses far-infrared technology to perform physical therapy on the body. It can relieve arthritis and rheumatism, or bone and joint pain caused by high uric acid.

[0003] However, these health-preserving capsules are large in size, take up a lot of space, are not suitable for home use, and are inconvenient to transport. Utility Model Content

[0004] In view of this, the present invention provides a health cabin with a detachable structure for easy storage.

[0005] To achieve the above objectives, the present invention provides the following technical solution.

[0006] 1. Wellness capsule, including: The bottom plate is used to generate heat and far-infrared light; The canopy is used to generate heat and far-infrared light. The canopy covers the bottom plate of the cabin and forms a health room where users can lie down. The canopy includes a first sliding cover and a second sliding cover. The first sliding cover and the second sliding cover are placed side by side on the bottom plate along the length of the bottom plate. The size of the first sliding cover is larger than that of the second sliding cover, so that when the first sliding cover moves to the side of the second sliding cover, the first sliding cover can cover the second sliding cover.

[0007] The cabin floor and cover feature a detachable design, allowing the cover to be removed from the floor for easy disassembly and storage, thus reducing the cabin's overall volume. The cover consists of two separate sliding covers: a first sliding cover and a second sliding cover. When entering the cabin, the user can push the first sliding cover to increase the entrance area, facilitating lying down. Once the first sliding cover is reset, both covers completely enclose the user's body, providing multi-directional physical therapy. During disassembly and storage, the first sliding cover slides towards and completely covers the second sliding cover, further reducing the cabin's volume.

[0008] 2. Based on technical solution 1, the bottom plate includes: Health-preserving foundation; The positioning frame has a positioning groove at its bottom, into which the health-preserving base plate can be placed. The positioning frame has a sliding groove at its top, and a pulley is provided at the bottom of the first sliding cover. The pulley is fitted into the sliding groove so that the first sliding cover and the bottom plate of the cabin are detachably slidably connected.

[0009] 3. Based on technical solution 2, the positioning frame includes: There are two baffles, which are arranged side by side, one in front of the other. The slide rails are provided in two parallel arrangement between two baffles. The end of each slide rail is detachably connected to the baffle near the upper side, so that a positioning groove is formed between the two baffles and the two slide rails.

[0010] 4. Based on technical solution 2, the health-preserving base plate includes: ABS base shell; A graphene heating film is laid on the upper surface of the ABS base shell to generate heat and far-infrared light. An aluminum foil thermal conductive layer is laid on the upper surface of the graphene heating film on the base plate to accelerate heat transfer; The graphene plate controller is electrically connected to the graphene heating film on the base plate and is used to control the power and duration of heat generation by the graphene heating film on the base plate.

[0011] 5. Based on technical solution 1, the first sliding cover and the second sliding cover have the same structure, and the first sliding cover includes: Arched support frame, used to form the arched hatch cover; The inner layer of the storage compartment is made of bamboo charcoal board, which is arched and installed above the arched support frame; The graphene heating film in the chamber is laid on the upper surface of the inner bamboo charcoal board to generate heat and far-infrared light. The heat insulation layer of the chamber is laid on the upper surface of the graphene heating film of the chamber for heat insulation; The graphene chamber controller is electrically connected to the graphene heating film in the chamber and is used to control the power and duration of heat generation by the graphene heating film in the chamber.

[0012] 6. Based on technical solution 5, the first sliding cover further includes: The interior surface of the cabin is laid on the lower surface of the bamboo charcoal board of the inner cabin, and is used to decorate the inner surface of the health cabin. The exterior finish of the cabin is laid on the upper surface of the cabin's insulation layer and is used to decorate the exterior surface of the health cabin. Attached Figure Description

[0013] Figure 1 This is a schematic diagram of the overall structure of the health cabin of this utility model.

[0014] Figure 2 This is a breakdown diagram of the hatch cover, positioning frame, and curing base plate.

[0015] Figure 3 This is an exploded view of the health pod.

[0016] The attached figures are labeled as follows: 1. Bottom plate, 11. Health-preserving bottom plate, 111. ABS bottom shell, 112. Graphene heating film on bottom plate, 113. Aluminum foil heat-conducting layer, 114. Graphene plate controller, 12. Positioning frame, 121. Positioning groove, 122. Baffle, 123. 2. Cabin cover, 21. First sliding cover, 211. Arched support frame, 212. Inner cabin bamboo charcoal board, 213. Cabin graphene heating film, 214. Cabin insulation layer, 215. Cabin interior surface, 216. Cabin exterior surface, 217. Graphene cabin controller, 22. Second sliding cover, 23. Pulleys. Health and Wellness Room 3. Detailed Implementation

[0017] The present invention will be described in detail below with reference to specific embodiments.

[0018] See Figure 1 The health cabin in this embodiment includes a bottom plate 1 and a cover 2. Both the bottom plate 1 and the cover 2 can generate heat and far-infrared light. The cover 2 covers the bottom plate 1 and forms a health room 3 with openings at both ends between the cover 2 and the bottom plate 1, which allows the user to lie down. The user lies down in the health room 3 and turns on the power of the health cabin. When in use, the heat and far-infrared light generated by the health cabin can be used to achieve physical therapy of the body.

[0019] like Figure 2 As shown, in this embodiment, the bottom plate 1 and the cover 2 are designed separately for easy storage of the health-preserving cabin. The bottom plate 1 includes a health-preserving bottom plate 11 and a positioning frame 12. The health-preserving bottom plate 11 and the positioning frame 12 are also designed separately, allowing the health-preserving bottom plate 11 to be used independently or in conjunction with the cover 2. The reason for this separate design is that when the health-preserving bottom plate 11 is used alone, it avoids the sliding rails 123 on the positioning frame 12 from affecting the user's experience. For example, when the health-preserving bottom plate 11 is placed on a bed as a heated bed board, the user lying directly on it could cause the positioning frame 12 to be pressed against the bottom of the user's body, causing discomfort. Because the health-preserving bottom plate 11 and the cover 2 are separate, the health-preserving bottom plate 11 needs to be positioned by the positioning frame 12 when used with the cover 2, thus preventing misalignment between them. Specifically, in conjunction with... Figure 2 In this embodiment, a positioning groove 121 is provided below the positioning frame 12, and the health care base plate 11 is placed in the positioning groove 121 for positioning. Figure 2The cabin cover 2 includes a first sliding cover 21 and a second sliding cover 22. The bottom of the first sliding cover 21 is equipped with a pulley 23. The first sliding cover 21 is larger than the second sliding cover 22. A sliding groove is provided above the positioning frame 12. The first sliding cover 21 and the positioning frame 12 are detachably slidably connected and positioned via the cooperation of the pulley 23 and the sliding groove. The second sliding cover 22 is placed on the health-preserving base 11 and is partially covered by the first sliding cover 21, thus achieving the positioning of the second sliding cover 22. Therefore, in addition to being positioned by the positioning frame 12 and the health-preserving base 11, the cabin cover 2 also adopts a split design and can slide within the positioning frame 12. This allows the user to increase the entrance area of ​​the health-preserving room 3 by pushing the first sliding cover 21 when entering, facilitating the user's ability to lie flat. After assembly, the first sliding cover 21 slides towards the second sliding cover 22 and completely covers it. The user lies down in the health chamber 3, and then pulls the first sliding cover 21 away from the second sliding cover 22 so that the first and second sliding covers 21 and 22 completely cover the user's body, achieving multi-directional physical therapy. When disassembling and storing the health chamber, the first sliding cover 21 slides towards the second sliding cover 22 and completely covers it. Then, the first and second sliding covers 21 and 22 are removed from the positioning frame 12, and the health base plate 11 separates from the positioning frame 12, thereby reducing the storage volume of the health chamber.

[0020] like Figure 2 As shown, the positioning frame 12 in this embodiment includes baffles 122 and slide rails 123. Two baffles 122 are arranged side-by-side, one in front of the other. Two slide rails 123 are arranged side-by-side between the two baffles 122. The end of each slide rail 123 is detachably connected to the upper part of the baffle 122, forming a positioning groove 121 between the two baffles 122 and the two slide rails 123. Because the baffles 122 and slide rails 123 are detachably connected, the health-preserving capsule can be disassembled during storage, further reducing its storage volume. The detachable connection between the baffles 122 and slide rails 123 uses snap-fit ​​or mortise-and-tenon structures.

[0021] like Figure 3 As shown, the health-preserving base plate 11 in this embodiment includes an ABS base shell 111, a base plate graphene heating film 112, an aluminum foil heat-conducting layer 113, and a graphene plate controller 114. The base plate graphene heating film 112 is laid on the upper surface of the ABS base shell 111 to generate heat and far-infrared light. The aluminum foil heat-conducting layer 113 is laid on the upper surface of the base plate graphene heating film 112 to accelerate heat conduction. The graphene plate controller 114 is electrically connected to the base plate graphene heating film 112 to control the power and time of heat generation of the base plate graphene heating film 112.

[0022] like Figure 3 As shown, the first sliding cover 21 and the second sliding cover 22 in this embodiment have the same structure. The first sliding cover 21 will be used as an example for explanation. The first sliding cover 21 in this embodiment includes an arched support frame 211, an inner hull bamboo charcoal board 212, a hull graphene heating film 213, a hull insulation layer 214, a hull interior surface 215, a hull exterior surface 216, and a graphene hull controller 217. The arched support frame 211 supports the inner hull bamboo charcoal board 212, the hull graphene heating film 213, and the hull insulation layer 214, thus forming an arched cover 2. A pulley 23 is installed at the bottom edge of the arched support frame 211 of the first sliding cover 21. The inner hull bamboo charcoal board 212 is also arched and is installed above the arched support frame 211. It supports the hull interior surface 215, the hull exterior surface 216, the hull graphene heating film 213, and the hull insulation layer 214. A graphene heating film 213 is laid on the upper surface of the inner bamboo charcoal board 212 of the chamber to generate heat and far-infrared light. A heat insulation layer 214 is laid on the upper surface of the graphene heating film 213 of the chamber for heat insulation. An interior surface 215 is laid on the lower surface of the inner bamboo charcoal board 212 of the chamber to decorate the inner surface of the health chamber; an exterior surface 216 is laid on the upper surface of the heat insulation layer 214 of the chamber to decorate the outer surface of the health chamber. A graphene chamber controller 217 is electrically connected to the graphene heating film 213 of the first sliding cover 21 and the graphene heating film 213 of the second sliding cover 22, respectively, to control the power and duration of heat generation by the two graphene heating films 213.

[0023] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this utility model, and are not intended to limit the scope of protection of this utility model. Although this utility model has been described in detail with reference to preferred embodiments, those skilled in the art should understand that modifications or equivalent substitutions can be made to the technical solutions of this utility model without departing from the essence and scope of the technical solutions of this utility model.

Claims

1. Wellness capsule, including: The bottom plate is used to generate heat and far-infrared light; The canopy is used to generate heat and far-infrared light. The canopy covers the bottom plate of the cabin and forms a health room where users can lie down between the canopy and the bottom plate. The hatch is characterized in that it includes a first sliding cover and a second sliding cover, which are placed side by side on the hatch floor plate along its length. The first sliding cover is larger than the second sliding cover so that when the first sliding cover moves toward the second sliding cover, it can cover the second sliding cover. The hatch floor plate includes: Health-preserving foundation; The positioning frame has a positioning groove at its bottom, into which the health care base plate can be placed. The positioning frame has a sliding groove at its top, and a pulley is provided at the bottom of the first sliding cover. The pulley is fitted into the sliding groove so that the first sliding cover and the bottom plate of the cabin are detachably slidably connected. The positioning frame includes: There are two baffles, which are arranged side by side, one in front of the other. The slide rails are provided in two parallel arrangement between two baffles. The end of each slide rail is detachably connected to the baffle near the upper side, so that a positioning groove is formed between the two baffles and the two slide rails.

2. The health preserving cabin according to claim 1, characterized in that, The foundation of health preservation includes: ABS base shell; A graphene heating film is laid on the upper surface of the ABS base shell to generate heat and far-infrared light. An aluminum foil thermal conductive layer is laid on the upper surface of the graphene heating film on the base plate to accelerate heat transfer; The graphene plate controller is electrically connected to the graphene heating film on the base plate and is used to control the power and duration of heat generation by the graphene heating film on the base plate.

3. The health-preserving cabin according to claim 1, characterized in that, The first sliding cover and the second sliding cover have the same structure. The first sliding cover includes: Arched support frame, used to form the arched hatch cover; The inner layer of the storage compartment is made of bamboo charcoal board, which is arched and installed above the arched support frame; The graphene heating film in the chamber is laid on the upper surface of the inner bamboo charcoal board to generate heat and far-infrared light. The heat insulation layer of the chamber is laid on the upper surface of the graphene heating film of the chamber for heat insulation; The graphene chamber controller is electrically connected to the graphene heating film in the chamber and is used to control the power and duration of heat generation by the graphene heating film in the chamber.

4. The health preserving cabin according to claim 3, characterized in that, The first sliding cover also includes: The interior surface of the cabin is laid on the lower surface of the bamboo charcoal board of the inner cabin, and is used to decorate the inner surface of the health cabin. The exterior finish of the cabin is laid on the upper surface of the cabin's insulation layer and is used to decorate the exterior surface of the health cabin.