Sub-health conditioning cabin provided with negative ion generating device
By designing a shielding frame, gears, hydraulic rods, and a negative ion concentration detection system within the sub-health conditioning chamber, the problem of excessively long usage time of negative ion generators is solved. This enables rapid increase in negative ion concentration and energy-saving operation, while also facilitating cleaning and quick exit from the chamber, thus enhancing the user experience.
Patent Information
- Application Number
- CN202511380850.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-25
- Publication Date
- 2025-11-18
AI Technical Summary
Existing sub-health conditioning cabins cannot adjust the internal space according to the number of users, resulting in the negative ion generator being used for too long, increasing energy consumption.
A system was designed that includes a shielding frame, gears, hydraulic rods, a negative ion concentration detector, and an electric push rod. By adjusting the space between the shielding frame and the bottom platform, combined with the control of the negative ion concentration detector and the enclosed plate, the system can achieve rapid increase in negative ion concentration and energy-saving operation.
It can increase the concentration of negative ions in a shorter time, reduce the usage time of the negative ion generator, achieve high efficiency and energy saving, and improve the user experience by facilitating quick exit and cleaning of foreign objects through the design of cleaning components and connecting plates.
Smart Images

Figure CN120960008A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of sub-health conditioning cabin technology, specifically a sub-health conditioning cabin equipped with a negative ion generator. Background Technology
[0002] The sub-health conditioning chamber is a device that combines various physical therapies and biofeedback technologies, designed to improve sub-health conditions (such as fatigue, insomnia, and weakened immunity) through non-invasive means. Its core objective is to help users restore bodily balance and alleviate health problems caused by long-term stress or unhealthy lifestyle habits.
[0003] Currently, it is difficult to adjust the internal space of the sub-health conditioning cabin according to the number of users, which results in the negative ion generator taking a long time to release negative ions, increasing the usage time of the negative ion generator and making it less energy-efficient.
[0004] Therefore, in view of this, we have studied and improved the existing structure and its shortcomings, and proposed a sub-health conditioning cabin equipped with a negative ion generator. Summary of the Invention
[0005] To address the shortcomings of existing technologies, this invention provides a sub-health conditioning cabin equipped with a negative ion generator, which solves the problems mentioned in the background section.
[0006] To achieve the above objectives, the present invention provides the following technical solution: a sub-health conditioning chamber equipped with a negative ion generator, comprising a base platform and a support shaft seat. Two sets of shielding frames are slidably installed on both sides of the base platform. Each set of shielding frames has a rack at its bottom, and gears are meshed on the outer surfaces of the racks. A connecting shaft is installed at one end of each gear. The support shaft seat is rotatably mounted on the outer surface of the connecting shaft. An adjustment auxiliary frame is installed at the end of one set of shielding frames, and an adjustment component for space adjustment is installed inside the adjustment auxiliary frame. The adjustment component includes a hydraulic rod, a connecting plate, and a vertical plate. The output end of the hydraulic rod is fitted with a connecting plate, and a vertical plate is installed at the bottom of the connecting plate. A far-infrared recliner is installed inside the base platform, and a negative ion generator is installed above the far-infrared recliner. A negative ion concentration detector is installed below one side of the far-infrared recliner.
[0007] Furthermore, the far-infrared recliner is provided in two sets, and a connecting frame is installed between the two sets of far-infrared recliners.
[0008] Furthermore, the connecting frame is vertically positioned in the middle of the bottom platform, and a support plate is installed on the top outer surface of the connecting frame.
[0009] Further, the inside of the far infrared recliner is provided with a breathable mesh pad, and the breathable mesh pad is one-to-one corresponding distribution relative to the far infrared recliner.
[0010] Further, the bottom outer surface of the shielding outer frame is provided with a side bottom plate, and a group of the side bottom plates are fixedly provided with a rack.
[0011] Further, the rack is provided with two groups, and the two groups of the rack are symmetrically distributed relative to the gear.
[0012] Further, a group of the shielding outer frame is provided with an air inlet in the middle of one side, the bottom of the bottom platform is provided with a support bottom plate on both sides, the air inlet is provided with a closing plate outside, one side of the closing plate is provided with a mounting plate, and the outer surface of the mounting plate is provided with an electric push rod.
[0013] Further, the inside of the support bottom plate is provided with a cleaning assembly and an inner frame and a connecting end plate for collecting the surface cleaning objects of the bottom platform, the inner frame is slidably installed in the inside of the support bottom plate, and the connecting end plate is arranged at one side end of the inner frame.
[0014] Further, the cleaning assembly further comprises an inner groove, and the inside of the bottom platform is provided with an inner groove on both sides.
[0015] Further, the inside of the shielding outer frame is fixedly provided with a connecting plate, one side of the connecting plate is provided with a collection plate, and the connecting plate and the collection plate are slidably arranged on the outer surface of the bottom platform.
[0016] The application provides a sub-health conditioning cabin equipped with a negative ion generating device, which has the following beneficial effects:
[0017] 1. The sub-health conditioning cabin equipped with the negative ion generating device can drive the connecting plate and the vertical plate to approach the far infrared recliner through the design of the hydraulic rod when only one group of the far infrared recliner is used, so that the vertical plate can be above the breathable mesh pad, the space between the two groups of the shielding outer frame and the bottom platform is reduced through the above operation, the negative ion concentration between the two groups of the shielding outer frame and the bottom platform is quickly improved in a shorter time, the use time of the negative ion generator is reduced, and energy is saved.
[0018] 2. The sub-health conditioning cabin equipped with a negative ion generating device can push the foreign matter existing on the outer surface of the bottom platform into the built-in groove on both sides of the bottom platform through the design of the cleaning assembly, and can also fall into the built-in frame. The built-in frame is connected with the connecting end plate, so that the staff can regularly pull the connecting end plate to clean the items inside the built-in frame for reuse. In addition, when the two groups of shielding outer frames are close to each other and fit together, the connecting plate and the collection plate connected with the shielding outer frame will be in the initial position, so as to clean the foreign matter during the process of leaving the warehouse.
[0019] 3. The sub-health conditioning cabin equipped with a negative ion generating device can use the design of the electric push rod to drive the closing plate to move up when the negative ion concentration detector reaches the upper limit, so that the air inlet enters the working state, facilitating the external air to enter between the two groups of shielding outer frames and the bottom platform. At the same time, the controller controls the negative ion generator to stop working. When the negative ion concentration detector reaches the lower limit, the controller connected therewith can control the negative ion generator to work, and at the same time, the design of the electric push rod drives the closing plate to move down for closing the air inlet, so as to keep the negative ion concentration between the two groups of shielding outer frames and the bottom platform in a suitable state. BRIEF DESCRIPTION OF DRAWINGS
[0020] Figure 1 It is a whole structure schematic view of the sub-health conditioning cabin equipped with a negative ion generating device of the present application.
[0021] Figure 2 It is a partial sectional view structure schematic view of the sub-health conditioning cabin equipped with a negative ion generating device of the present application.
[0022] Figure 3 It is a connecting plate and collection plate distribution structure schematic view of the sub-health conditioning cabin equipped with a negative ion generating device of the present application.
[0023] Figure 4 It is an adjustment auxiliary frame expansion structure schematic view of the sub-health conditioning cabin equipped with a negative ion generating device of the present application.
[0024] Figure 5 It is a bottom platform bottom view structure schematic view of the sub-health conditioning cabin equipped with a negative ion generating device of the present application.
[0025] Figure 6 It is a cleaning assembly structure schematic view of the sub-health conditioning cabin equipped with a negative ion generating device of the present application.
[0026] In the figure: 1, shielding outer frame; 2, side bottom plate; 3, air inlet; 4, supporting bottom plate; 5, supporting plate; 6, negative ion generator; 7, far infrared recliner; 8, connecting frame; 9, adjusting auxiliary frame; 10, connecting plate; 11, collection plate; 12, adjusting assembly; 1201, hydraulic rod; 1202, connecting plate; 1203, vertical plate; 13, bottom platform; 14, negative ion concentration detector; 15, gear; 16, rack; 17, connecting shaft; 18, supporting shaft seat; 19, cleaning assembly; 1901, built-in groove; 1902, built-in frame; 1903, connecting end plate; 20, breathable mesh pad; 21, closing plate; 22, electric push rod; 23, mounting plate. DETAILED DESCRIPTION
[0027] The embodiments of the present application will be further described below in conjunction with the accompanying drawings and examples. The following examples are used to illustrate the present application, but cannot be used to limit the scope of the present application.
[0028] As Figures 1-6As shown, the present invention provides a technical solution: a sub-health conditioning chamber equipped with a negative ion generator, comprising a shielding frame 1, a side base plate 2, an air inlet 3, a supporting base plate 4, a supporting plate 5, a negative ion generator 6, a far-infrared recliner 7, a connecting frame 8, an adjusting auxiliary frame 9, a connecting plate 10, a collection plate 11, an adjusting component 12, a hydraulic rod 1201, a connecting plate 1202, a vertical plate 1203, a bottom platform 13, a negative ion concentration detector 14, a gear 15, a rack 16, a connecting shaft 17, a supporting shaft seat 18, a cleaning component 19, an internal groove 1901, an internal frame 1902, a connecting end plate 1903, a breathable mesh pad 20, a sealing plate 21, an electric push rod 22, and a mounting plate 23. Shielding frames are slidably installed on both sides of the bottom platform 13. 1. The shielding frame 1 is provided in two sets. One set of shielding frame 1 has an air inlet 3 in the middle of one side. The bottom of the platform 13 is equipped with support plates 4 on both sides. The air inlet 3 is surrounded by a sealing plate 21. A mounting plate 23 is installed on one side of the sealing plate 21. An electric push rod 22 is provided on the outer surface of the mounting plate 23. The bottom of both sets of shielding frames 1 is equipped with racks 16. Gears 15 are meshed on the outer surface of the racks 16. A connecting shaft 17 is installed at one end of the gear 15. A support shaft seat 18 is rotatably mounted on the outer surface of the connecting shaft 17. An adjustment auxiliary frame 9 is installed at the end of one set of shielding frames 1. An adjustment component 12 for space adjustment is provided inside the adjustment auxiliary frame 9. The adjustment component 12 includes a hydraulic rod 1201 and a connecting plate 120. 2. A vertical plate 1203 is installed on the bottom of the platform 13, and a connecting plate 1202 is installed on the output end of the hydraulic rod 1201. The bottom of the connecting plate 1202 is equipped with a vertical plate 1203. An infrared recliner 7 is installed inside the platform 13, and a negative ion generator 6 is installed above the infrared recliner 7. A breathable mesh pad 20 is installed inside the infrared recliner 7, and the breathable mesh pad 20 is distributed one-to-one with the infrared recliner 7. The design of the breathable mesh pad 20 can provide space for people with discomfort in their buttocks, avoid the infrared recliner 7 from compressing their buttocks, and increase the comfort of use. There are two sets of infrared recliner 7, and a connecting frame 8 is installed between the two sets of infrared recliner 7. The connecting frame 8 is vertically set in the middle of the platform 13, and the top outer surface of the connecting frame 8 is equipped with a connecting frame 8. A support plate 5 is installed, and a negative ion concentration detector 14 is installed below one side of the far-infrared recliner 7. The negative ion generator 6 is designed to release negative ions between the two sets of shielding frames 1 and the base platform 13. Simultaneously, the negative ion concentration detector 14 is designed to detect the negative ion concentration in the space formed by these three elements. The negative ion concentration detector 14 is connected to a controller, so that when the concentration detected by the negative ion concentration detector 14 reaches its upper limit, the electric push rod 22 can be used to move the sealing plate 21 upwards, causing the air inlet 3 to activate, facilitating the entry of external air between the two sets of shielding frames 1 and the base platform 13. At the same time, the controller controls the negative ion generator 6 to stop working. When the negative ion concentration detector 14 reaches its lower limit...The controller connected to it can control the operation of the negative ion generator 6, and simultaneously control the electric push rod 22 to move the sealing plate 21 downwards to seal the air inlet 3. This ensures that the negative ion concentration between the two sets of shielding frames 1 and the bottom platform 13 remains at a suitable level, allowing the user to sit on the far-infrared recliner 7 for infrared therapy. Two sets of far-infrared recliners 7 are provided for simultaneous use. When only one set of far-infrared recliners 7 is in use, the hydraulic rod 1201 can move the connecting plate 1202 and the upright plate 1203 closer to the far-infrared recliner 7, positioning the upright plate 1203 above the breathable mesh mat 20. This reduces the space between the two sets of shielding frames 1 and the bottom platform 13, allowing the negative ion generator 6 to rapidly increase the negative ion concentration in this space within a shorter time, reducing the usage time of the negative ion generator 6 and achieving high efficiency and energy saving.
[0029] like Figure 1 and Figure 6As shown, a side base plate 2 is installed on the bottom outer surface of the shielding frame 1. A set of side base plates 2 are fixedly equipped with racks 16. Two sets of racks 16 are provided, and the two sets of racks 16 are symmetrically distributed about the gear 15. The interior of the supporting base plate 4 is equipped with a cleaning component 19 for collecting cleaning materials from the surface of the bottom platform 13, an inner frame 1902, and a connecting end plate 1903. The inner frame 1902 is slidably installed inside the supporting base plate 4, and one end of the inner frame 1902 is provided with a... The connecting end plate 1903 and the cleaning assembly 19 also include an internal groove 1901. Internal grooves 1901 are provided on both sides of the bottom platform 13. A connecting plate 10 is fixedly installed on the inner side of the shielding frame 1, and a collection plate 11 is installed on one side of the connecting plate 10. The connecting plate 10 and the collection plate 11 are slidably disposed on the outer surface of the bottom platform 13. When it is necessary to exit the cabin, any set of shielding frames 1 can be pushed to one side, so that the rack 16 at the bottom of the shielding frame 1 will mesh with the gear 15. Thus, the two sets of shielding frames 1 will move in opposite directions due to the meshing connection between the rack 16 and the gear 15, facilitating the rapid exit of personnel from the cabin. At the same time, when the shielding frames 1 move away from each other, the connecting plate 10 and the collection plate 11 connected to the shielding frames 1 will move relative to the surface of the bottom platform 13. Through the positional movement of the connecting plate 10 and the collection plate 11, foreign objects on the outer surface of the bottom platform 13 can be pushed into the built-in grooves 1901 on both sides of the bottom platform 13, and can also fall into the built-in frame 1902. The built-in frame 1902 is connected to the connecting end plate 1903, so that the staff can periodically pull the connecting end plate 1903 to clean the items inside the built-in frame 1902 for reuse. In addition, when the two sets of shielding frames 1 approach and fit together in the cabin, the connecting plate 10 and the collection plate 11 connected to the shielding frames 1 will be in the initial position to clean up foreign objects during the exit process.
[0030] In summary, as Figures 1-6As shown, this sub-health conditioning cabin equipped with a negative ion generator can be used by first pushing either set of shielding frames 1 to one side. This causes the rack 16 at the bottom of the shielding frame 1 to mesh with the gear 15, resulting in the two sets of shielding frames 1 moving in opposite directions due to the meshing of the rack 16 and gear 15. This facilitates quick entry and exit for the user. Then, the user can sit on the far-infrared reclining chair 7 for infrared therapy. Two far-infrared reclining chairs 7 are provided for simultaneous use. The breathable mesh pad 20 provides space for those with hip discomfort, preventing pressure on the hips and increasing comfort. The negative ion generator 6 then releases negative ions to the two sets of shielding frames 1 and the flat bottom. Between platform 13, a negative ion concentration detector 14 is designed to detect the negative ion concentration in the space composed of the above three elements. The negative ion concentration detector 14 is connected to a controller, so that when the concentration detected by the negative ion concentration detector 14 reaches the upper limit, the electric push rod 22 can be used to move the sealing plate 21 upward, so that the air inlet 3 can enter the working state, facilitating the entry of external air into the space between the two sets of shielding frames 1 and the bottom platform 13. At the same time, the controller controls the negative ion generator 6 to stop working. When the negative ion concentration detector 14 reaches the lower limit, the controller connected to it can control the negative ion generator 6 to work, and at the same time control the electric push rod 22 to move the sealing plate 21 downward, so as to seal the air inlet 3. To ensure that the negative ion concentration between the two sets of shielding frames 1 and the base platform 13 remains at a suitable level, users can sit on the far-infrared recliner 7 for infrared therapy. Two sets of far-infrared recliner 7 are provided for simultaneous use. When only one set of far-infrared recliner 7 is in use, the hydraulic rod 1201 moves the connecting plate 1202 and the upright plate 1203 closer to the far-infrared recliner 7, positioning the upright plate 1203 above the breathable mesh mat 20. This reduces the space between the two sets of shielding frames 1 and the base platform 13, allowing the negative ion generator 6 to rapidly increase the negative ion concentration in this space within a shorter time, thus reducing the need for the negative ion generator 6. After a certain period of use, either set of shielding frames 1 can be pushed to one side, causing the rack 16 at the bottom of the shielding frame 1 to mesh with the gear 15. This causes the two sets of shielding frames 1 to move in opposite directions due to the meshing of the rack 16 and gear 15, facilitating rapid exit of the cabin for personnel. Simultaneously, as the shielding frames 1 move away from each other, the connecting plate 10 and the collecting plate 11 connected to the shielding frames 1 will move relative to the surface of the base platform 13. This movement of the connecting plate 10 and the collecting plate 11 can push foreign objects on the outer surface of the base platform 13 into the built-in grooves 1901 on both sides of the base platform 13, and allow them to fall into the built-in frame 1902, which is connected to the connecting end plate 1903.This allows staff to periodically pull the connecting end plate 1903 to clean the contents inside the inner frame 1902 for reuse. Additionally, when the two sets of outer shielding frames 1 approach and fit together inside the personnel compartment, the connecting plate 10 and the assembly plate 11 connected to the outer shielding frames 1 will be in their initial positions, facilitating the removal of foreign objects during the exit process.
[0031] The embodiments of the present invention are given for illustrative and descriptive purposes only, and are not intended to be exhaustive or to limit the invention to the forms disclosed. Many modifications and variations will be apparent to those skilled in the art. The embodiments were chosen and described in order to better illustrate the principles and practical application of the invention, and to enable those skilled in the art to understand the invention and to design various embodiments with various modifications suitable for a particular purpose.
Claims
1. A sub-health conditioning chamber equipped with a negative ion generator, comprising a base platform (13) and a support shaft seat (18), characterized in that: Both sides of the base platform (13) are slidably fitted with shielding frames (1), and there are two sets of shielding frames (1). The bottom of each set of shielding frames (1) is fitted with a rack (16), and the outer surface of the rack (16) is fitted with a gear (15). One end of the gear (15) is fitted with a connecting shaft (17), and the support shaft seat (18) is rotatably mounted on the outer surface of the connecting shaft (17). An adjustment auxiliary frame (9) is fitted at the end of one set of shielding frames (1), and the interior of the adjustment auxiliary frame (9) is provided with a space adjustment mechanism. The adjustment component (12) includes a hydraulic rod (1201), a connecting plate (1202) and a vertical plate (1203). The output end of the hydraulic rod (1201) is equipped with the connecting plate (1202). The bottom of the connecting plate (1202) is provided with the vertical plate (1203). The interior of the bottom platform (13) is equipped with a far-infrared recliner (7). A negative ion generator (6) is installed above the far-infrared recliner (7). A negative ion concentration detector (14) is provided below one side of the far-infrared recliner (7).
2. A sub-health conditioning chamber equipped with a negative ion generator according to claim 1, characterized in that: Two sets of far-infrared recliners (7) are provided, and a connecting frame (8) is installed between the two sets of far-infrared recliners (7).
3. A sub-health conditioning chamber equipped with a negative ion generator according to claim 2, characterized in that: The connecting frame (8) is vertically arranged in the middle of the bottom platform (13), and a support plate (5) is installed on the top outer surface of the connecting frame (8).
4. A sub-health conditioning chamber equipped with a negative ion generator according to claim 1, characterized in that: The far-infrared recliner (7) is provided with a breathable mesh mat (20) inside, and the breathable mesh mat (20) is distributed in a one-to-one correspondence with the far-infrared recliner (7).
5. A sub-health conditioning chamber equipped with a negative ion generator according to claim 1, characterized in that: The bottom outer surface of the shielding frame (1) is fitted with a side base plate (2), and a set of the side base plates (2) are fixedly provided with racks (16).
6. A sub-health conditioning chamber equipped with a negative ion generator according to claim 5, characterized in that: The rack (16) is provided in two sets, and the two sets of racks (16) are symmetrically distributed about the gear (15).
7. A sub-health conditioning chamber equipped with a negative ion generator according to claim 6, characterized in that: An air inlet (3) is provided in the middle of one side of the shielding frame (1), and a support base plate (4) is installed on both sides of the bottom of the bottom platform (13). A sealing plate (21) is provided outside the air inlet (3), and an installation plate (23) is installed on one side of the sealing plate (21). An electric push rod (22) is provided on the outer surface of the installation plate (23).
8. A sub-health conditioning chamber equipped with a negative ion generator according to claim 7, characterized in that: The support base plate (4) is provided with a cleaning component (19) for collecting cleaning materials on the surface of the bottom platform (13), an internal frame (1902), and a connecting end plate (1903). The internal frame (1902) is slidably installed inside the support base plate (4), and a connecting end plate (1903) is provided on one side end of the internal frame (1902).
9. A sub-health conditioning chamber equipped with a negative ion generator according to claim 8, characterized in that: The cleaning component (19) also includes a built-in groove (1901), and the built-in groove (1901) is provided on both sides of the bottom platform (13).
10. A sub-health conditioning chamber equipped with a negative ion generator according to claim 9, characterized in that: A connecting plate (10) is fixedly provided on the inner side of the shielding frame (1), and a collection plate (11) is installed on one side of the connecting plate (10). The connecting plate (10) and the collection plate (11) are slidably disposed on the outer surface of the bottom platform (13).