A physical and mental stress reduction chamber
By designing a dynamic physical and mental pressure relief chamber, using moving and rotating support plates, dynamic display screens and curved channels, the problem of long preparation time for decompression in the prior art and inability to satisfy emotional catharsis is solved, and the rapid entry of the decompression state and strong emotional catharsis and release effects are achieved.
Patent Information
- Application Number
- CN202310216610.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-03-03
- Publication Date
- 2025-06-24
- Estimated Expiration
- 2043-03-03
AI Technical Summary
In the static mode of the existing physical and mental stress relief chamber, the experiencer needs to create fantasy through conditions such as music and light, resulting in a long preparation time for entering the stress relief state and unable to meet the needs of emotional catharsis.
A physical and mental pressure relief chamber is designed to provide a dynamic experience through moving and rotating support plates, dynamic display screens and curved channels. The experiencer can quickly enter the pressure relief process to meet the needs of emotional catharsis.
Through dynamic experience, the experiencer can quickly enter the stress relief process, reduce the psychological burden caused by excessive preparation time for worry, and provide stronger catharsis and emotional release effects.
Smart Images

Figure CN116327520B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of emotional stress relief equipment, and particularly to a physical and mental stress relief cabin. Background Art
[0002] At present, the physical and mental stress relief cabins on the market adopt static modes such as seats and massage beds, combined with music, lighting, etc. to enable the experiencer to sleep and meditate to relieve emotions and achieve the effect of psychological stress relief.
[0003] However, in this static mode, the experiencer needs to combine conditions such as music and lighting to generate fantasies, and pictures that soothe the mood will emerge in the mind. When experiencing, first, the emotions need to be calmed down, and then the emotions can be gradually relieved in the simulation of a suitable conditioned environment. Therefore, this mode takes a relatively long time for the experiencer to enter the stress relief state, and this mode is more inclined to achieve emotional calmness and cannot meet the need for emotional catharsis. Summary of the Invention
[0004] The purpose of the present invention is to overcome the deficiencies of the above-mentioned prior art and provide a physical and mental stress relief cabin with a strong experience feeling and capable of releasing emotions through catharsis.
[0005] To achieve the above purpose, the technical solution of the present invention is:
[0006] A physical and mental stress relief cabin includes a cabin body main body. The cabin body main body includes a first cabin body and a second cabin body which are arranged in pairs up and down. One side of the first cabin body and the second cabin body is provided with an opening and the openings are arranged opposite to each other, and a cabin chamber is formed therein. A moving frame is installed outside the cabin body main body. The inner walls on both sides of the moving frame are attached to the outer walls on both sides of the cabin body main body. The moving frame can slide along the outer wall of the cabin body main body. A support plate is installed inside the cabin body main body. The support plate is fixedly connected with a rotating shaft. The rotating shaft is inserted into the support plate. The support plate can rotate along the axis of the rotating shaft. The rotating shaft is connected with the moving frame. When the moving frame moves, it drives the support plate and the rotating shaft to move together. When the support plate moves, it can rotate to any angle and be fixed. Display screens are installed on the inner walls of the first cabin body and the second cabin body. One side of the support plate faces the display screen of the display screen.
[0007] The rotating shaft is located between the upper and lower first cabin body and the second cabin body and both ends extend out of the outer walls of the first cabin body and the second cabin body. The cabin body main body further includes a passage located between the first cabin body and the second cabin body. The rotating shaft can move along the passage.
[0008] At least part of the passage is curved so that when the rotating shaft moves along the passage, it can move up or down along the curved track, thereby causing the support plate to move up or down.
[0009] The rotating shaft can be rotated to any angle and remain fixed, so that the support plate remains fixed at the same angle.
[0010] One side of the rotating shaft is connected to a gear pair, which is driven by a motor. The other side of the rotating shaft is connected to the moving frame through a bearing. The gear pair rotates a certain angle to make the rotating shaft rotate a corresponding angle and remain fixed.
[0011] The gear pair and the motor are installed on one side of the moving frame, and a counterweight is installed on the other side of the moving frame.
[0012] The upper end of the moving frame is connected with a track, and the track is provided with a driving device to enable the moving frame to move along the track.
[0013] The support plate can fix the experiencer, and the support plate is installed with a clamping component 2 and a clamping component 1. The clamping component 2 includes a clamping arm, and the clamping arm and the clamping component 1 can fix the experiencer.
[0014] A clamping block is installed in the sliding connection of the clamping arm. The clamping arm includes a slide groove and a groove. The clamping block can move along the length and depth direction of the slide groove. The clamping block includes multiple bosses. When the clamping block is located at the deepest part of the slide groove, the boss is inserted into the groove to limit the clamping block.
[0015] The clamping arm is equipped with a limit block, which passes through the limit block and can move along its length direction. The inner walls on both sides of the limit block are provided with a plurality of convex teeth, and the boss can be partially inserted between two adjacent convex teeth.
[0016] The beneficial effects of the present invention are:
[0017] The support plate can rotate simultaneously when it moves. With the image on the display screen and the curve of the channel, the experiencer can get an immersive dynamic experience. When the experiencer uses the equipment of this solution to relieve emotional stress, after being fixed to the support plate and moving with the support plate, he can quickly enter the decompression process to reduce the psychological burden caused by worrying about the long preparation time.
[0018] Since the support plate needs to drive the experiencer to rotate, it needs to be firmly pressed on the experiencer. However, excessive pressing force may cause discomfort to the pressed parts of the body. By adjusting the pressing position of the pressing block, the pressing part can be adjusted during pressing, so that the experiencer can maintain a relatively comfortable state when fixed on the support plate, creating a comfortable psychological environment. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 is a cross-sectional view of an embodiment;
[0020] Figure 2 This is a schematic cross-sectional distribution diagram of the cabin body in the embodiment;
[0021] Figure 3 A lateral partial cross-sectional view of the channel and the rotating shaft in the embodiment;
[0022] Figure 4 It is a top view schematic diagram of a person experiencing the support plate fixation in the embodiment;
[0023] Figure 5 Installation cross-sectional view of the second pressing component in the embodiment;
[0024] Figure 6 Cross-section of the boss inserted into the convex teeth in the embodiment Figure 1 ;
[0025] Figure 7 Cross-section of the boss inserted into the convex teeth in the embodiment Figure 2 ;
[0026] Figure 8 Cross-section of the boss inserted into the groove in the embodiment Figure 1 ;
[0027] Figure 9 Cross-section of the boss inserted into the groove in the embodiment Figure 2 ;
[0028] Figure 10 For Figure 8 Enlarged view of part A in
[0029] In the figure: cabin body main body 1, first cabin 11, second cabin 12, partition layer 13, passage 14, moving frame 2, track 21, counterweight 22, support plate 3, fixed block 31, first pressing component 32, motor 4, gear pair 41, rotating shaft 5, display screen 6, second pressing component 7, pressing arm 71, sliding groove 711, groove 712, pressing block 8, embedding part 81, boss 811, boss protruding part 8111, limiting block 9, convex teeth 91, experiencer 100. Detailed implementation manners
[0030] The technical solution of the present invention will be further described below through embodiments in conjunction with the accompanying drawings.
[0031] As Figures 1 - 10 shown, a physical and mental decompression cabin includes a cabin body main body 1. As Figure 1 , 2 shown, Figure 1 For Figure 2 Cross-sectional view in the M-M direction of , the outer shape of the cabin body main body 1 is U-shaped. There is a cabin in the cabin body main body 1. The cross-section of the cabin is rectangular. The cabins are axially distributed along the cabin body main body 1 to form a U-shaped passage. A moving frame 2 is inserted and installed on the outside of the cabin body main body 1. The bottom of the moving frame 2 is open. The inner walls on both sides of the moving frame 2 are inserted and attached to the outer walls on both sides of the cabin body main body 1.
[0032] The upper end of the moving frame 2 is connected to a track 21. The track 21 is provided with a driving device to enable the moving frame 2 to move along the track 21. This technology is an existing technology. The track 21 is located above the cabin body 1. When the moving frame 2 moves, the inner walls on both sides slide along the outer wall of the cabin body 1. Moreover, the moving direction of the moving frame 2 can not only move along the U-shaped direction of the cabin body 1 but also move up and down along the cabin body 1. Therefore, when the moving frame 2 moves in the main direction of the U-shaped trajectory line, it can move up and down at the same time, forming a curved trajectory.
[0033] As Figure 1 shown, a rotating shaft 5 is installed between the two sides of the moving frame 2. One side of the rotating shaft 5 is connected to a gear pair 41. The gear pair 41 is driven by a motor 4. The other side of the rotating shaft 5 is connected to the side wall of the moving frame 2 through a bearing. The motor 4 drives the gear pair 41 to rotate the rotating shaft 5. The gear pair 41 rotates through a certain angle to make the rotating shaft 5 rotate by a corresponding angle and remain fixed.
[0034] The gear pair 41 and the motor 4 are installed on one side of the moving frame 2. A counterweight 22 is installed on the other side of the moving frame 2, so that the weights on both sides of the moving frame 2 are balanced, thus making the moving frame 2 operate stably.
[0035] The cabin body 1 includes a first cabin 11 and a second cabin 12 which are arranged in pairs up and down. Both the first cabin 11 and the second cabin 12 are fixedly arranged. The upper end of the first cabin 11 is fixed by a bracket, and the second cabin 12 is fixed to the ground. The interiors of the first cabin 11 and the second cabin 12 are hollow. Both the first cabin 11 and the second cabin 12 are provided with openings and the openings are arranged up and down relatively. A cabin is formed inside. The rotating shaft 5 is located at the relative position of the openings of the first cabin 11 and the second cabin 12. The rotating shaft 5 is perpendicular to the side walls of the first cabin 11 and the second cabin 12. Both ends of the rotating shaft 5 extend out of the outer walls of the first cabin 11 and the second cabin 12, and the extended parts are the parts connected to the side walls of the moving frame 2.
[0036] As Figure 1 shown, the rotating shaft 5 is fixedly connected with a support plate 3. The support plate 3 is located inside the cabin body 1. The rotating shaft 5 is inserted into the support plate 3. The support plate 3 can rotate with the rotating shaft 5. The length and width of the support plate 3 are respectively smaller than the height and width of the cabin body 1.
[0037] As Figure 4 shown, a fixing block 31, a pressing component one 32, and a pressing component two 7 are installed on one side of the support plate 3. The fixing block 31, the pressing component one 32, and the pressing component two 7 are used to fix the experiencer 100. The fixing block 31 is a stepped heightening block. The fixing block 31 protrudes along the end face of the support plate 3 to form a rectangular block. When the support plate 3 is vertically arranged, the experiencer 100 can stand on the fixing block 31, so that when the support plate 3 is flattened, the center of gravity of the experiencer 100 is close to the rotation center of the support plate 3, so as to avoid generating too large a centrifugal force during rotation and causing discomfort to the experiencer 100.
[0038] One end of the first pressing component 32 is fixed to the support plate 3, and the other end can be fastened and fixed to the support plate 3. There are two first pressing components 32, which are respectively located at the abdomen and ankle positions of the experiencer 100. After the experiencer 100 presses close to the support plate 3, both ends of the first pressing component 32 are respectively located on both sides of the body of the experiencer 100. The fastening end of the first pressing component 32 is opened to allow the experiencer 100 to enter. After the fastening end is closed, the middle section of the first pressing component 32 presses on the body of the experiencer 100 to fix it. The middle section of the first pressing component 32 is made of elastic cotton, and the deformability of the elastic cotton is utilized to meet the fixation of experiencers 100 with different body shapes.
[0039] As Figure 4 , 5 , 6 shows, the second pressing component 7 is connected to the support plate 3. The second pressing component 7 is L-shaped. The end of the short side of the L-shape is connected to the support plate 3 and can rotate. After rotation, the inner wall of the long side of the L-shape can generate an inward pressure to fix the squeezed side. This technology is the prior art.
[0040] There are two second pressing components 7. The fixing points of the second pressing components 7 and the support plate 3 are respectively located on both sides of the neck of the experiencer 100. The second pressing component 7 includes pressing arms 71 (i.e., the long sides of the L-shape of the second pressing component 7). The two pressing arms 71 can respectively press on both sides of the chest position of the experiencer 100.
[0041] Due to the difference in the height of the experiencer 100, in order to avoid discomfort caused by the pressing part to experiencers 100 of different heights when the pressing arms 71 press on the experiencer 100, movable pressing blocks 8 are slidably connected and installed on the pressing arms 71, so that the pressing position can be adjusted.
[0042] The pressing arm 71 includes a sliding groove 711 and a groove 712. The pressing block 8 can move along the length and depth directions of the sliding groove 711. The pressing block 8 includes a plurality of convex platforms 811. When the pressing block 8 is located at the deepest part of the sliding groove 711, the convex platforms 811 are inserted into the groove 712 to limit the pressing block 8.
[0043] Specifically, the sliding groove 711 is a common T-shaped sliding groove structure. Its special feature is that, as Figure 9 shown, a groove 712 is provided at the lower end position of its T-shape. The groove 712 is recessed outward along the inner wall of the T-shape at the lower end of the sliding groove 711. As Figure 8 shown, a plurality of grooves 712 are evenly distributed along the length direction of the sliding groove 711 (i.e., the sliding direction of the pressing block 8).
[0044] The pressing block 8 includes an embedding part 81 that cooperates with the sliding groove 711. The embedding part 81 can move along the sliding groove 711. The embedding part 81 is also a T-shaped structure. The T-shaped upper head of the embedding part 81 is inserted into the corresponding T-shaped head of the sliding groove 711. The thickness of the T-shaped upper head of the embedding part 81 is less than the depth of the T-shaped head of the sliding groove 711, so that the embedding part 81 can move along the depth direction of the sliding groove 711 after being inserted into the sliding groove 711.
[0045] The embedding part 81 is provided with a boss 811 that matches the groove 712. The boss 811 protrudes outward along the outer wall of the T-shaped middle section of the embedding part 81 to form a semi-circular structure, and the arc surface is located on the outside. At both ends of the inner side of the arc surface of the boss 811, there are boss protrusion parts 8111. The boss protrusion parts 8111 extend outward along the outer wall of the boss 811 and are connected to the outer wall of the embedding part 81. The boss protrusion parts 8111 are rectangular block structures, and the shape of the groove 712 matches that of the boss 811. When the embedding part 81 is located on the side farthest from the deepest part of the sliding groove 711, the boss 811 and the groove 712 are vertically offset, and the embedding part 81 can move along the length direction of the sliding groove 711. When the embedding part 81 is located at the deepest part of the sliding groove 711, the boss 811 is inserted into the groove 712 so that the embedding part 81 cannot move along the length direction of the sliding groove 711. The power for the embedding part 81 to be inserted into the deepest part of the sliding groove 711 is the pressure generated by the downward pressing of the pressing arm 71.
[0046] As Figure 5 , 6 , as shown in Fig. 7, in order to move the pressing block 8 to a suitable position along the length direction of the sliding groove 711, the pressing arm 71 is installed with a limiting block 9. The limiting block 9 is located on both sides of the lower T-shaped end of the sliding groove 711 and is outside the side of the groove 712 away from the upper T-shaped end of the sliding groove 711. The limiting block 9 extends along the length direction of the sliding groove 711 along both sides of the lower T-shaped end of the sliding groove 711, and the limiting block 9 is inserted into the pressing arm 71. The pressing block 8 passes through the middle of the two limiting blocks 9 on both sides. There are a plurality of convex teeth 91 on the inner walls of both sides of the limiting block 9, and the convex teeth 91 are distributed at intervals. The groove 712 is located below the interval area between two adjacent convex teeth 91.
[0047] Figure 6 , Figure 7 As shown in Fig. 15, which is a state position diagram of the embedding part 81. At this time, when the embedding part 81 is located on the side farthest from the deepest part of the sliding groove 711, the boss 811 is partially inserted between two adjacent convex teeth 91. The pressing block 8 moves along the length direction of the sliding groove 711 to adjust the pressing position of the pressing block 8. At this time, the boss 811 is stuck in and out between the convex teeth 91. The depth of the boss 811 inserted between the convex teeth 91 is about one-fourth to one-third of the radius of the boss 811, so that the movement of the pressing block 8 generates jerks and moves relatively slowly. When it moves to a suitable position, it is convenient to stop. When the boss 811 moves, it always corresponds vertically to the groove 712.
[0048] As Figure 8 , 9 , as shown in Fig. 10 ( Figure 8 and Figure 971 is another state position diagram of the embedded portion 81. When the clamping block 8 moves to a suitable position, the clamping arm 71 is pressed down, so that the clamping block 8 is pushed along the depth direction of the slide groove 711, and the boss 811 leaves between the two adjacent protruding teeth 91 and is inserted into the groove 712. The entire arc surface outer wall of the boss 811 fits with the inner wall of the groove 712, and as shown in FIG. Figure 10 As shown, the boss protrusion 8111 is inserted into the corresponding part of the groove 712, so that the boss 811 cannot move along the length direction of the slide groove 711.
[0049] By adjusting the clamping position of the clamping block 8, the experiencer 100 can maintain a relatively comfortable state when fixed on the support plate 3, creating a comfortable psychological environment.
[0050] In the initial position, the support plate 3 is vertically arranged and located at the end of one side of the U-shape, the center of the upper and lower positions of the support plate 3 is located at the center of the cabin body 1, the fixing block 31, the clamping component 1 32, and the clamping component 2 7 are all facing outwards, the experiencer 100 stands on the fixing block 31, and adjusts and fixes the clamping component 2 7, and fixes the clamping component 1 32 at the same time.
[0051] Display screens 6 are installed on the inner walls of the first cabin 11 and the second cabin 12. The support plate 3 is rotated so that the support plate 3 on the side where the experiencer 100 is fixed faces the display screen 6, so that the experiencer 100 can watch the screen 6. The movable frame 2 drives the support plate 3 to move in the first cabin 11 and the second cabin 12.
[0052] like Figure 3 As shown, the cabin body 1 also includes a channel 14 between the first cabin 11 and the second cabin 12, and the shaft 5 can move along the channel 14. The channel 14 is partially curved and partially straight, so that the shaft 5 can move upward or downward along the curved track when moving along the channel 14, so that the support plate 3 drives the experiencer 100 to move upward or downward. The corresponding moving frame 2 also moves according to the ups and downs of the channel 14 curve, from which it can be inferred that the track 21 is also provided with a corresponding curved track.
[0053] The inner walls of the first cabin 11 and the second cabin 12 are provided with a partition 13 , which is a transparent glass plate. A display screen 6 is placed in the partition 13 . The display screen 6 is distributed on the upper wall and side walls of the first cabin 11 and the lower wall and side walls of the second cabin 12 .
[0054] The rotating shaft 5 can be rotated to any angle and fixed, so that the support plate 3 can be fixed at the same angle. When the support plate 3 moves, it can rotate simultaneously. Combining with the picture, music of the display screen 6 and the undulation of the curve of the channel 14, the experiencer 100 can obtain an immersive dynamic experience, enabling the experiencer 100 to enter the environment of the display screen 6 in a dynamic form, with a stronger sense of participation and more directness. Moreover, by providing more stimulating pictures, such as crossing cliffs, the experiencer 100 can release emotions by shouting, so that the emotions can be released.
[0055] The experiencer 100 can adjust the angle of the support plate 3 according to the display picture of the display screen 6 to imitate flying or diving movements, which helps to release stress and soothe emotions.
[0056] The above are only the preferred embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included within the protection scope of the present invention.
Claims
1. A physical and mental stress reduction cabin, comprising a cabin body main body (1), characterized in that: The cabin body (1) includes a first cabin (11) and a second cabin (12) which are arranged in pairs up and down. One side of each of the first cabin (11) and the second cabin (12) is provided with an opening, and the openings are arranged opposite to each other, forming a cabin inside. A moving frame (2) is installed on the outer side of the cabin body (1). The inner walls on both sides of the moving frame (2) are attached to the outer walls on both sides of the cabin body (1). The moving frame (2) can slide along the outer wall of the cabin body (1). A support plate (3) is installed inside the cabin body (1). The support plate (3) is fixedly connected to a rotating shaft (5). The rotating shaft (5) is inserted into the support plate (3). The support plate (3) can rotate along the axis of the rotating shaft (5). The rotating shaft (5) is connected to the moving frame (2). When the moving frame (2) moves, it drives the support plate (3) and the rotating shaft (5) to move together. When the support plate (3) moves, it can rotate at any angle and be fixed. Display screens (6) are installed on the inner walls of both the first cabin (11) and the second cabin (12). One side of the support plate (3) faces the display screen of the display screen (6); The rotating shaft (5) is located between the upper and lower first cabin (11) and second cabin (12), and both ends extend out of the outer walls of the first cabin (11) and the second cabin (12). The cabin body (1) further includes a passage (14) located between the first cabin (11) and the second cabin (12). The rotating shaft (5) can move along the passage (14); One side of the rotating shaft (5) is connected to a gear pair (41). The gear pair (41) is driven by a motor (4). The other side of the rotating shaft (5) is connected to the moving frame (2) through a bearing. The gear pair (41) rotates through a certain angle so that the rotating shaft (5) rotates by a corresponding angle and remains fixed; The upper end of the moving frame (2) is connected to a track (21). The track (21) is provided with a driving device to enable the moving frame (2) to move along the track (21); The support plate (3) can fix the experiencer (100). The support plate (3) is provided with a second pressing component (7) and a first pressing component (32). The second pressing component (7) includes a pressing arm (71). The pressing arm (71) and the first pressing component (32) can fix the experiencer (100); The pressing block (8) is slidably connected to the pressing arm (71). The pressing arm (71) includes a sliding groove (711) and a groove (712). The pressing block (8) can move along the length and depth directions of the sliding groove (711). The pressing block (8) includes a plurality of protrusions (811). When the pressing block (8) is located at the deepest part of the sliding groove (711), the protrusions (811) are inserted into the groove (712) to limit the pressing block (8).
2. The psychosomatic decompression chamber according to claim 1, wherein: At least part of the passage (14) is curved, so that when the rotating shaft (5) moves along the passage (14), it can move up or down along the curved track, thereby enabling the support plate (3) to move up or down.
3. The physical and mental stress reduction cabin according to claim 1, wherein: The rotating shaft (5) can rotate to any angle and remain fixed, so that the support plate (3) remains fixed at the same angle.
4. The physical and mental stress reduction chamber according to claim 1, wherein: The gear pair (41) and the motor (4) are installed on one side of the moving frame (2), and a counterweight (22) is installed on the other side of the moving frame (2).
5. The physical and mental stress reduction cabin according to claim 1, characterized in that: A limiting block (9) is installed on the pressing arm (71). The pressing block (8) passes through the limiting block (9) and can move along its length direction. A plurality of convex teeth (91) are provided on the inner walls of both sides of the limiting block (9), and the convex platform (811) can be partially inserted between two adjacent convex teeth (91).
Citation Information
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