Sauna infrared physiotherapy structure

By installing lamp housings and positioning slots on the sauna ceiling, and combining near-infrared and mid-infrared lamp beads for physiotherapy, the problems of poor physiotherapy effect and corrosion of the fixing method in sauna rooms are solved, achieving efficient physiotherapy and an aesthetically pleasing sauna room design.

CN224573109UActive Publication Date: 2026-07-31WUXI LANGTE ELECTRONICS SCI & TECH
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
WUXI LANGTE ELECTRONICS SCI & TECH
Filing Date
2025-02-27
Publication Date
2026-07-31

AI Technical Summary

Technical Problem

In existing saunas, the far-infrared heat source is installed on the top of the head, which is inconvenient for head and facial treatments. In addition, the way the lighting is fixed is prone to corrosion, affecting the aesthetics and effectiveness.

Method used

The lamp housing is installed on the ceiling of the sauna room, and the lamp is positioned by using the outer convex ribs and positioning grooves. It combines near-infrared and mid-infrared lamp beads for physiotherapy. The lamp housing and the ceiling do not need to be fixed with screws. The inner convex ribs support the physiotherapy board to ensure the light diffusion. The ear area is matched with the ceiling to increase the fixation effect.

Benefits of technology

It achieves highly effective physiotherapy for the head and face, avoids corrosion problems caused by screw fixation, and maintains the aesthetics and cleanliness of the sauna room.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN224573109U_ABST
    Figure CN224573109U_ABST
Patent Text Reader

Abstract

This utility model provides an infrared therapy structure for a sauna room, installed on the top plate of the sauna room. It includes: a lamp housing with an outwardly protruding rib extending downwards from the top surface of the lamp housing, the length of which is less than the thickness of the lamp housing; and a therapy plate placed inside the lamp housing, with near-infrared and mid-infrared LEDs at the bottom. Near-infrared and mid-infrared rays are used interchangeably to meet the needs of head therapy. The top plate has a positioning frame adapted to the external dimensions of the lamp housing. On the inner wall of the positioning frame, extending downwards from the top surface of the top plate, is a positioning groove adapted to the outwardly protruding rib, the length of which is less than the thickness of the top plate. This application eliminates the need for screws or other fasteners and protruding structures between the lamp housing and the top plate, resulting in a neat and aesthetically pleasing sauna room design and avoiding the problem of corrosion at the connection point between the lamp housing and the top plate inside the sauna room.
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Description

Technical Field

[0001] This utility model relates to the field of sauna technology, and in particular to an infrared therapy structure for sauna rooms. Background Technology

[0002] Currently, sauna rooms generally use far-infrared light as a heat source, which is inconvenient to install on the head, thus reducing the therapeutic effect on the user's head and face. Sauna rooms typically have overhead lighting installed. The lamp housings are installed inside the sauna room and fixed with screws, which are prone to rusting after prolonged use. Summary of the Invention

[0003] To address the shortcomings of existing technologies, this utility model provides an infrared therapy structure for sauna rooms, improving the head therapy structure. The lampshade is placed on the top of the sauna room and does not need to be fixed inside the sauna room. Near-infrared and mid-infrared light are combined to enhance the head therapy effect. The technical solution adopted by this utility model is as follows: An infrared therapy structure for a sauna room, installed on the ceiling panel of the sauna room, includes: The lamp housing has an outer protruding rib extending downward from the top surface of the lamp housing, the length of which is less than the thickness of the lamp housing. A physiotherapy plate is placed inside the lamp housing, and near-infrared lamp beads and mid-infrared lamp beads are provided at the bottom of the physiotherapy plate; The top plate is provided with a positioning frame that matches the outer dimensions of the lamp housing. On the inner wall of the positioning frame, extending downward from the top surface of the top plate, there is a positioning groove that matches the outward protrusion. The length of the positioning groove is less than the thickness of the top plate.

[0004] Furthermore, several light strips are arranged at intervals on the bottom of the physiotherapy plate; Several near-infrared LEDs and mid-infrared LEDs are alternately arranged on any of the aforementioned LED strips.

[0005] Furthermore, the inner wall of the lamp housing is provided with an inner protrusion, and the physiotherapy plate is mounted on the inner protrusion.

[0006] Furthermore, an ear is provided extending outward from the outer edge of the lamp housing; When the lamp housing is embedded in the positioning frame and the ear rests on the top surface of the top plate; The ear part is provided with a through hole, and the top plate is provided with a positioning hole corresponding to the through hole.

[0007] Advantages of this utility model: The near-infrared lamps on the physiotherapy board emit near-infrared rays, while the mid-infrared lamps emit mid-infrared rays. The needs of head physiotherapy are met by using near-infrared and mid-infrared rays together or alternately. The lamp housing and the top plate are positioned using an outward-protruding rib and a positioning groove. During assembly, the lamp housing is inserted downwards from the top of the positioning frame until the bottom of the outward-protruding rib abuts against the bottom of the positioning groove. Viewed from inside the sauna, there are no screws or other fasteners between the lamp housing and the top plate. The sauna has a neat and aesthetically pleasing design. Looking upwards from inside the sauna, the therapeutic structure has no protruding structures or rusted parts. The inner convex ribs support the physiotherapy plate, creating a gap between the physiotherapy plate and the bottom surface of the lamp housing, ensuring the dispersion effect of near-infrared and mid-infrared rays. Attached Figure Description

[0008] Figure 1 This is a schematic diagram of the structural composition of this utility model.

[0009] Figure 2 This is a plan view of the physiotherapy panel.

[0010] Figure 3 This is a schematic diagram of the assembly of the lamp housing and the top plate.

[0011] In the diagram: 100-lamp housing, 110-outer convex rib, 120-inner convex rib, 130-ear, 140-through hole, 200-physiotherapy plate, 210-lamp strip, 211-near-infrared lamp bead, 212-mid-infrared lamp bead, 300-top plate, 310-positioning frame, 320-positioning groove, 330-positioning hole. Detailed Implementation

[0012] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain this utility model and are not intended to limit this utility model.

[0013] Please see the appendix Figure 1 - Appendix Figure 3 This application proposes an infrared therapy structure for a sauna room, installed on a top plate 300 of the sauna room roof, comprising: a lamp housing 100, the outer surface of which has an outwardly protruding rib 110 extending downward from the top surface of the lamp housing 100, the length of which is less than the thickness of the lamp housing 100; a therapy plate 200 placed inside the lamp housing 100, the bottom of which is provided with near-infrared lamp beads 211 and mid-infrared lamp beads 212; wherein, a positioning frame 310 adapted to the outer dimensions of the lamp housing 100 is provided on the top plate 300, and a positioning groove 320 adapted to the outwardly protruding rib 110 is provided on the inner wall of the positioning frame 310 extending downward from the top surface of the top plate 300, the length of which is less than the thickness of the top plate 300.

[0014] This application does not limit the shape of the lamp housing 100. For example, common lamp housing 100 shapes are circular or rectangular, which can maintain an aesthetically pleasing appearance and reduce the number of dimensional fits between the lamp housing 100 and the mounting surface.

[0015] In one specific embodiment, the outer protruding ribs 110 are strip-shaped and arranged vertically. Two pairs of outer protruding ribs 110 are provided on each of the left and right sides of the lamp housing 100 to improve the positioning effect of the lamp housing 100. During assembly, the lamp housing 100 is inserted downward from the top of the positioning frame 310 until the bottom end of the outer protruding ribs 110 abuts against the bottom end of the positioning groove 320. Therefore, when viewed from inside the sauna room, there are no screws or other fasteners or protruding structures between the lamp housing 100 and the top plate 300. The sauna room has a neat and beautiful shape, and it also avoids the drawback of corrosion at the connection between the lamp housing 100 and the top plate 300 inside the sauna room.

[0016] Preferably, when the bottom end of the protruding rib 110 abuts against the bottom end of the positioning groove 320, the bottom surface of the lamp housing 100 and the bottom surface of the top plate 300 coincide on the same plane.

[0017] The physiotherapy panel 200 of this application is electrically connected to the control system in the sauna room. The control system controls the near-infrared lamp bead 211 to emit near-infrared rays and the mid-infrared lamp bead 212 to emit mid-infrared rays, so as to meet the different physiotherapy needs of the head and face in the sauna room.

[0018] In one embodiment, a plurality of light strips 210 are arranged at intervals on the bottom of the physiotherapy plate 200; a plurality of near-infrared lamp beads 211 and mid-infrared lamp beads 212 are alternately arranged on any one of the light strips 210.

[0019] In the above embodiment, a near-infrared lamp bead 211 and a mid-infrared lamp bead 212 form a pair of lamp beads, and several pairs of lamp beads are arranged at intervals on each lamp strip 210. The number of near-infrared lamp beads 211 and mid-infrared lamp beads 212 is not specifically limited, and the spacing between each pair of lamp beads or the number of lamp beads can be changed according to the size of the sauna room, the light coverage angle, and the intensity requirements.

[0020] To meet the assembly and disassembly requirements of the physiotherapy plate 200, an inner protrusion 120 is provided on the inner wall of the lamp housing 100, and the physiotherapy plate 200 is mounted on the inner protrusion 120. The inner protrusion 120 supports the physiotherapy plate 200, creating a gap between the physiotherapy plate 200 and the bottom of the lamp housing 100, ensuring the dispersion effect of near-infrared and mid-infrared rays.

[0021] In fact, there are at least two inner protruding ribs 120, symmetrically arranged on the inner wall of the lamp housing 100. When the lamp housing 100 is rectangular, the two inner protruding ribs 120 are located on the left and right inner side walls of the lamp housing 100, or the two inner protruding ribs 120 are located on the front and rear inner side walls of the lamp housing 100, respectively; when the lamp housing 100 is circular, the two inner protruding ribs 120 are located on the inner circular surfaces at both ends of the diameter of the lamp housing 100.

[0022] Preferably, there are four inner protruding ribs 120, which are centrally symmetrically arranged on the inner wall of the lamp housing 100. When the lamp housing 100 is rectangular, the four inner protruding ribs 120 are located on the front, back, left, and right inner side walls of the lamp housing 100 respectively; when the lamp housing 100 is circular, the line connecting the four inner protruding ribs 120 forms a cross shape, and they are located in pairs on the inner circular surfaces at both ends of the diameter of the lamp housing 100.

[0023] In one specific embodiment, the physiotherapy plate 200 has triangular notches at each of its four corners. A finger can be inserted through these triangular notches to lift one corner of the physiotherapy plate 200, facilitating its removal from the lamp housing 100 and simultaneously increasing heat dissipation channels.

[0024] In this application, in order to further fix the lamp housing 100, an ear portion 130 is provided extending outward from the outer edge of the lamp housing 100; when the lamp housing 100 is embedded in the positioning frame 310, the ear portion 130 rests on the top surface of the top plate 300; a through hole 140 is provided on the ear portion 130, and a positioning hole 330 is provided on the top plate 300 corresponding to the through hole 140.

[0025] Understandably, since the mating surface between the ear 130 and the top plate 300 is on the upper side of the top plate 300, the ear 130 cannot be seen inside the sauna. Therefore, by using screws, pins and other fasteners to assemble with the through hole 140 and the positioning hole 330 respectively, the fixing effect of the lamp housing 100 can be increased.

[0026] After the physiotherapy structure is assembled, a cover plate or other dustproof and waterproof material is added to the roof of the sauna room, that is, above the top plate 300, to achieve the encapsulation of the top of the physiotherapy structure, without the need for additional covering components.

[0027] Finally, it should be noted that the above specific embodiments are only used to illustrate the technical solution of this utility model and not to limit it. Although this utility model has been described in detail with reference to examples, those skilled in the art should understand that modifications or equivalent substitutions can be made to the technical solution of this utility model without departing from the spirit and scope of the technical solution of this utility model, and all such modifications and substitutions should be covered within the scope of the claims of this utility model.

Claims

1. A sauna infrared physiotherapy structure, which is installed on a ceiling (300) of a sauna roof, characterized in that, include: The lamp housing (100) has an outer protruding rib (110) extending downward from the top surface of the lamp housing (100), the length of which is less than the thickness of the lamp housing (100). A physiotherapy plate (200) is placed inside the lamp housing (100), and a near-infrared lamp bead (211) and a mid-infrared lamp bead (212) are provided at the bottom of the physiotherapy plate (200). The top plate (300) is provided with a positioning frame (310) that is adapted to the outer dimensions of the lamp housing (100). The inner wall of the positioning frame (310) extends downward from the top surface of the top plate (300) and is provided with a positioning groove (320) that is adapted to the outer protrusion (110). The length of the positioning groove (320) is less than the thickness of the top plate (300).

2. The sauna room infrared therapy structure as described in claim 1, characterized in that: The bottom of the physiotherapy board (200) is provided with several light strips (210) at intervals. Several near-infrared lamp beads (211) and mid-infrared lamp beads (212) are alternately arranged on any of the lamp strips (210).

3. The sauna room infrared therapy structure as described in claim 1 or 2, characterized in that: The lamp housing (100) has an inner convex rib (120) on its inner wall, and the physiotherapy plate (200) is mounted on the inner convex rib (120).

4. The sauna room infrared physiotherapy structure according to claim 1, characterized in that: The lamp housing (100) has an ear (130) extending outward from its outer edge. When the lamp housing (100) is embedded in the positioning frame (310) and the ear (130) rests on the top surface of the top plate (300); The ear part (130) is provided with a through hole (140), and the top plate (300) is provided with a positioning hole (330) corresponding to the through hole (140).