Heating structure for sauna room
By installing a combination structure of grooves, aluminum foil, and shielding components on the side of the sauna, the problem of poor heat conduction in the sauna is solved, achieving rapid and uniform heating and efficient energy utilization, avoiding burns, and ensuring good temperature stability.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-27
- Publication Date
- 2026-03-27
AI Technical Summary
The existing side heating structure of sauna rooms has poor heat conduction, resulting in low heat exchange efficiency, failure to fully utilize the thermal effect of infrared rays, and low energy utilization efficiency.
It adopts a combination structure of tank, aluminum foil and shielding component, and uses the heat of heating element to exchange heat with air to accelerate the air temperature rise. The heat is evenly distributed by reflecting infrared rays through aluminum foil, and the power of infrared heating tube is adjusted by temperature sensor.
It achieves rapid and uniform heating in the sauna, improves energy efficiency, avoids the risk of burns, and ensures stable temperature.
Smart Images

Figure CN224050456U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a sauna room technical field especially a sauna room heating structure. BACKGROUND
[0002] For the heating structure of the side of sauna room, the existing design is mostly simple, and the efficient conduction and emission of heat are not fully considered.
[0003] For example, some structures simply install heating elements on the side, and the air flow is not smooth, resulting in low heat exchange efficiency, which cannot quickly and evenly raise the temperature in the sauna room, and some heating structures have deficiencies in the use of infrared rays, which cannot effectively play the heat effect of infrared rays, resulting in low energy utilization efficiency.
[0004] Therefore, it has important practical significance to develop a sauna room side infrared heating structure that can realize uniform heat distribution, efficient heat exchange and full use of infrared rays. SUMMARY
[0005] In view of the deficiencies in the prior art, the utility model provides a sauna room heating structure, which utilizes the heat of the original heating element to realize air heat exchange, accelerate the temperature rise in the sauna room and improve the energy utilization rate. The technical scheme adopted by the utility model is:
[0006] A sauna room heating structure is installed on the wall of the side of the sauna room and comprises a heating element, an aluminum foil and a shielding element.
[0007] The wall is provided with a groove extending vertically.
[0008] The aluminum foil is attached to the wall and fits the inner wall of the groove, and air exchanges heat with the aluminum foil arranged near the groove to heat the air, and the hot air flows upward along the groove.
[0009] The heating element is fixed to the wall, and the infrared rays emitted by the heating element are reflected by the aluminum foil and dispersed into the sauna room.
[0010] The shielding element is used to partially shield the reflected infrared rays.
[0011] Further, the heating element comprises:
[0012] Two positioning plates are arranged vertically and fixed to the wall.
[0013] An infrared heating pipe is fixed between the two positioning plates.
[0014] Further, the positioning plates are fixed to the wall by expansion bolts or adhesives.
[0015] Further, the shielding piece comprises:
[0016] Two vertical columns are horizontally and equidistantly arranged and fixedly connected with the two positioning plates respectively.
[0017] A plurality of baffle plates are arranged equidistantly in up and down directions, and two ends of any baffle plate are fixedly connected with the two vertical columns respectively.
[0018] Further, the positioning plate is provided with a step, and the end of the vertical column is arranged at the step.
[0019] Further, the vertical column and the step are arranged in an interference fit or a buckle connection.
[0020] Further, a temperature sensor is arranged in the groove body and used for detecting air temperature.
[0021] The utility model discloses the advantages are:
[0022] Through the cooperation of the groove body, the aluminum foil and the heating element, the heat of the heating element exchanges with the air near the groove body, the air is heated, the hot air flows upward into the sauna room to accelerate the temperature rise, and the energy utilization rate is improved.
[0023] Through the cooperation of the step and the vertical column, the mutual positioning between the heating element and the shielding piece is facilitated. DRAWINGS
[0024] Figure 1 The utility model discloses the structure composition schematic diagram.
[0025] In the drawing: 100 - cavity, 110 - groove body, 200 - heating element, 210 - positioning plate, 211 - step, 220 - infrared heating pipe, 300 - aluminum foil, 400 - shielding piece, 410 - vertical column, 420 - baffle plate. DETAILED DESCRIPTION
[0026] In order to make the purpose, technical scheme and advantages of the utility model more clear and obvious, the utility model is further described in detail below by combining with the drawings and examples. It should be understood that the specific examples described here are only used to explain the utility model, and are not used to limit the utility model.
[0027] Please refer to the attached Figure 1The application provides a heating structure for a sauna room, which is installed on a wall 100 of a side of the sauna room and comprises a heating element 200, an aluminum foil 300 and a shielding element 400. The wall 100 is provided with a groove 110 extending in the vertical direction. The aluminum foil 300 is attached to the wall 100 and adheres to the inner wall of the groove 110. Air exchanges heat with the aluminum foil 300 arranged near the groove 110 to heat the air, and the hot air flows upwards along the groove 110. The heating element 200 is fixed on the wall 100. The infrared rays emitted by the heating element 200 are reflected by the aluminum foil 300 and then spread into the sauna room. The shielding element 400 is used for partially shielding the reflected infrared rays.
[0028] In the application, the upper and lower ends of the groove 110 respectively extend to the area covered by the heating element 200, so as to guide the space on the two sides of the heating element 200. The groove 110 plays a key role in the whole heating structure and provides a channel for the flow of air, so that the air can exchange heat with the related components in the groove 110, and the hot air can flow upwards out of the range covered by the heating element 200 and spread into the sauna room.
[0029] The aluminum foil 300 is laid on the wall 100 by pasting and is laid into the groove 110 by the ductility of aluminum. When the air flows near the groove 110, on one hand, the air exchanges heat with the aluminum foil 300, so as to heat the air. On the other hand, the heating element 200 can directly contact the air and directly heat the air, so that the air is heated faster. The heated hot air flows upwards along the groove 110 and uniformly spreads heat into the sauna room. In addition to participating in heat exchange, the aluminum foil 300 also has the function of reflecting infrared rays and can reflect the infrared rays emitted by the heating element 200 into the sauna room.
[0030] The shielding element 400 avoids the heating element 200 from directly contacting the skin and plays a role of isolation, so as to avoid scalding accidents.
[0031] In the application, the heating element 200 comprises two positioning plates 210 arranged in the vertical direction and fixed on the wall 100 respectively, and an infrared heating pipe 220 fixed between the two positioning plates 210. The positioning plates 210 provide support for the infrared heating pipe 220. The wiring of the infrared heating pipe 220 passes through the lower positioning plate 210 and then passes through the wall 100 to be wired outside the wall. When the infrared heating pipe 220 is powered on, infrared rays are emitted. The infrared rays are reflected by the aluminum foil 300 and then spread into the sauna room, so as to provide heat for the sauna room.
[0032] It should be noted that the number of infrared heating pipes 220 is not limited in the present application. For example, when the sauna room space is large, more infrared heating pipes 220 are needed. Usually, multiple infrared heating pipes 220 are arranged horizontally and equidistantly to meet different heating requirements.
[0033] In specific embodiments, the positioning plate 210 is fixed on the wall 100 by expansion bolts or adhesives. This fixing method can ensure that the positioning plate 210 is stably installed on the wall 100.
[0034] In the present application, the shielding piece 400 includes two vertical columns 410 arranged horizontally and equidistantly and fixedly connected with two positioning plates 210, respectively, and a plurality of baffles 420 arranged vertically and equidistantly, and the two ends of any baffle 420 are fixedly connected with two vertical columns 410, respectively. By directly connecting the vertical column 410 with the positioning plate 210, the number of holes in the wall 100 can be reduced. In addition, the number of baffles 420, the width and the interval of the baffles 420 directly reflect the light transmission degree of infrared light. According to the size of the sauna room or the size of the heating piece 200, the size of the shielding piece 400 is configured, and the number or width of the baffles 420 is increased or reduced correspondingly, so as to meet different infrared light transmission requirements.
[0035] The positioning plate 210 is provided with a step 211, and the end of the vertical column 410 is arranged at the step 211. Such a connection method can ensure the positioning accuracy and connection stability between the vertical column 410 and the positioning plate 210. In use, the vertical column 410 directly approaches the step 211 from the side without other auxiliary accessories.
[0036] In specific embodiments, the vertical column 410 and the step 211 are arranged in an interference fit or a buckle connection.
[0037] In order to more accurately control the temperature in the sauna room, as other embodiments of the present application, the present application further includes a temperature sensor arranged in the groove 110 for detecting the air temperature.
[0038] Working principle: when the sauna room is opened, the infrared heating pipe 220 in the heating element 200 is powered to heat and emit infrared rays, the infrared rays irradiate on the aluminum foil 300 attached on the wall body 100, the aluminum foil 300 reflects the infrared rays to the inside of the sauna room, at the same time, the air enters the groove body 110 under the action of natural convection, and the heat exchange is generated with the aluminum foil 300, the hot air after being heated flows upward along the groove body 110, so that the temperature in the sauna room gradually increases; the shielding element 400 partially shields the reflected infrared rays, adjusts the distribution of the infrared rays; the temperature sensor detects the air temperature in the groove body 110 in real time, and feeds back the temperature information to the control system, the control system adjusts the power of the infrared heating pipe 220 according to the feedback information, so as to maintain the stability of the temperature in the sauna room.
[0039] Finally, it should be explained that the above specific embodiments are only used to illustrate the technical solutions of the utility model and not to limit, although the utility model is described in detail with reference to examples, those skilled in the art should understand that the technical solutions of the utility model can be modified or replaced equivalently without departing from the spirit and scope of the technical solutions of the utility model, which should be covered in the scope of claims of the utility model.
Claims
1. A sauna heating structure installed on a wall (100) of a side surface of a sauna room, characterized in that: The heating element (200), the aluminum foil (300) and the shielding element (400) are included. The wall (100) is provided with a groove (110) extending vertically. The aluminum foil (300) is attached to the wall (100) and fits the inner wall of the groove (110), air exchanges heat with the aluminum foil (300) near the groove (110) to heat the air, and the hot air flows upward along the groove (110). The heating element (200) is fixed on the wall (100), and the infrared rays emitted by the heating element (200) are reflected by the aluminum foil (300) and then dispersed into the sauna room. The shielding element (400) is used to partially shield the reflected infrared rays.
2. The heating structure for a sauna room according to claim 1, characterized in that The heating element (200) includes: Two positioning plates (210) are arranged vertically and fixed on the wall (100) respectively. An infrared heating pipe (220) is fixed between the two positioning plates (210).
3. The heating structure for a sauna room according to claim 2, characterized in that: The positioning plates (210) are fixed on the wall (100) by expansion bolts or adhesives.
4. The heating structure for a sauna room according to claim 2, wherein The shielding element (400) includes: Two vertical columns (410) are arranged horizontally and fixedly connected with the two positioning plates (210) respectively. A plurality of baffles (420) are arranged vertically and equidistantly, and the two ends of any baffle (420) are fixedly connected with the two vertical columns (410) respectively.
5. The heating structure for a sauna room according to claim 4, characterized in that: The positioning plate (210) is provided with a step (211), and the end of the vertical column (410) is arranged at the step (211).
6. The heating structure for a sauna room according to claim 5, characterized in that: The vertical column (410) and the step (211) are arranged in an interference fit or a buckle connection.
7. A sauna heating structure according to any one of claims 1 - 6, characterized in that A temperature sensor is further included, which is arranged in the groove (110) and used to detect the air temperature.