Decompression device for depression patient
By designing a decompression device that includes a moving mechanism, an air blowing mechanism, and an operating mechanism, the problem of ineffective force exertion and accidental injury during use by patients with depression was solved, and continuous balloon inflation and explosion were achieved, thus improving the decompression effect.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2023-12-04
- Publication Date
- 2026-04-14
AI Technical Summary
When used by patients with depression, existing pressure-reducing devices can easily lead to ineffective damage or injury due to insufficient or incorrect force exerted by the patient. Existing technology cannot effectively achieve continuous balloon popping operations.
A pressure-reducing device comprising a moving mechanism, an air-blowing mechanism, and an operating mechanism was designed. The continuous expansion and explosion of the balloon are achieved through components such as a toothed belt, a motor, an air inlet pipe, and an air pump. The patient's force is indirectly applied to the balloon through the operating mechanism, avoiding direct and ineffective force application.
This allows for continuous balloon popping, preventing accidental injury to patients during venting and improving stress reduction.
Smart Images

Figure CN121846460A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of stress-relief devices, and more specifically to a stress-relief device for patients with depression. Background Technology
[0002] Early-stage depression patients can relieve stress through external emotional release, which plays a positive role in the treatment of depression. Current stress relief methods are generally simple acts of hitting and destroying. In actual use, if the patient's strength is insufficient, it will result in ineffective destruction and may even increase stress. If the patient does not exert the correct force, they are prone to injury. Therefore, a stress relief device for depression patients is proposed. Summary of the Invention
[0003] The purpose of this invention is to address the shortcomings and deficiencies of existing technologies by proposing a stress-relief device for patients with depression. This device enables continuous balloon popping to relieve stress and prevents accidental injury during venting. The patient's exertion does not directly affect the balloon, thus avoiding ineffective exertion and improving the stress-relief effect.
[0004] To achieve the above objectives, the technical solution adopted by the present invention is as follows: it includes a tabletop and legs; the tabletop is provided with legs at all four corners of its bottom. It also includes: A moving mechanism, wherein the moving mechanism is mounted on a tabletop; The air blowing mechanism is mounted on the table and is located on the left front side of the moving mechanism. An operating mechanism is mounted on a table and is connected to a moving mechanism and an air blowing mechanism. Through the above technical solution design, the moving mechanism is used to move the balloon, the blowing mechanism causes the balloon to expand and explode, and the operating mechanism ensures that the patient's force does not directly act on the balloon, avoiding ineffective force application and improving the decompression effect.
[0005] Preferably, the moving mechanism comprises: The toothed belt is mounted on the tabletop and driven by gears. The front gear is connected to the output shaft of the motor, which is fixed to the front of the upper surface of the tabletop and connected to an external power source. The rear gear is connected to the tabletop via a shaft and bearings. The movable blocks are of several types and are respectively fixed on the outer surface of the toothed belt; The air intake pipe consists of several parts, each fixed to a movable block, and an air intake hole is provided on the outer side of the annular wall of the air intake pipe. A limiting mechanism, wherein there are several limiting mechanisms, and each is provided on the intake pipe; With the above technical solution, the staff puts the balloon on the air inlet pipe and fixes the balloon with the limiting mechanism. The motor is started, which makes the gear rotate, drives the toothed belt to rotate, and moves the air inlet pipe to the blowing mechanism to blow air into the balloon.
[0006] Preferably, the limiting mechanism comprises: Two semicircular limiting plates are provided, which are respectively positioned opposite each other at the upper end of the air intake pipe. The connecting rods are of two types and have a "C" shape. The connecting rods are fixed to the semi-circular limiting plates respectively. The inner side of the connecting rods abuts against the limiting plates, and the limiting plates are fixed to the air intake pipe. The screws are two in number and are respectively threaded into the lower inner end of the connecting rod. The other end of the screws is screwed onto the intake pipe through a bearing. The drive shaft is screwed to the outer side of the bottom of the annular wall of the intake pipe via a bearing. The outer end of the drive shaft is fixed with a hand screw. The drive shaft and the two screws are connected by several bevel gears and shaft transmission. Through the above technical solution design, turning the hand screw causes the drive shaft to rotate, which in turn causes the screw to rotate under the action of the bevel gear. Under the action of the limiting plate, the connecting rod drives the semi-circular limiting plate to move away. After the balloon is fixed, turning the hand screw causes the balloon to be clamped, preventing the balloon from leaking air when it is inflated.
[0007] Preferably, the air blowing mechanism comprises: The fixing plate is fixed to the table. The fixing plate has a "C" shaped structure, and the toothed belt and air intake pipe pass through the window on the fixing plate. The electric telescopic pole is fixed to the left inner side wall of the fixed plate and is connected to an external power source. A first connecting plate is fixed to the movable end of the electric telescopic pole, and a second connecting plate is fixed to the upper end of the first connecting plate. The bottom of the second connecting plate is equipped with wheels at both the front and rear. An air pump is fixed on the second connecting plate and connected to an external power source. An air guide pipe is connected to the air outlet of the air pump, and a sealing gasket is fixed on the air guide pipe. The sealing gasket is fitted to the annular wall of the air inlet pipe. The above technical solution design involves activating the electric telescopic rod to extend the No. 2 connecting plate, inserting the air guide tube into the air inlet of the air inlet pipe, and sealing the gasket to prevent air leakage; then activating the air pump to release air, causing the balloon to inflate and explode.
[0008] Preferably, the bottom of the first connecting plate is provided with auxiliary wheels; Through the above technical design, the auxiliary wheel plays the role of assisting the movement of the No. 1 connecting plate.
[0009] Preferably, the operating mechanism comprises: An arc-shaped track is fixed to the upper surface of the table on the front right side; a slider is provided on the arc-shaped track. A grip, which is fixed to the slider; The No. 1 switch is located at the right rear end of the arc-shaped track. The No. 1 switch is fixed to the No. 1 mounting plate, which is fixed to the table. The No. 1 switch is connected to the motor and the electric telescopic rod. The second switch is located at the front end of the arc-shaped track, the second switch is fixed on the second mounting plate, the second mounting plate is fixed on the table, and the second switch is connected to the air pump. Spring No. 1 is fixed to the outer wall of the slider, and mounting plate No. 3 is fixed to the rear end of spring No. 1. Mounting plate No. 3 is fixed to the table. The abutment blocks are of two types, and are respectively located on the front and back left sides of the first mounting plate. A limit rod is fixed on the right side wall of the abutment block, and the limit rod is movably inserted into the first mounting plate. A second spring is movably sleeved on the limit rod, one end of the second spring is fixed to the abutment block, and the other end of the second spring is fixed to the first mounting plate. With the above technical solution design, the patient holds the handle and touches switch number one to the right, which starts the motor and electric telescopic rod. The slider moves along the arc-shaped slide rail, and spring number one creates resistance. When the patient exerts force to move the slider and touches switch number two, the air pump starts. When the patient relaxes the force, the handle slides back under the action of spring number one, the slider returns to its position, and the stop block prevents the slider from hitting switch number one.
[0010] Preferably, a first baffle plate is fixed to the bottom front side of the fixed plate, a second baffle plate is provided inside the fixed plate, the second baffle plate is fixed to the first baffle plate, the right side wall of the second baffle plate is fixed to the fixed plate, and a round hole is provided on the second baffle plate, which is corresponding to the air guide pipe of the air pump. Through the above technical solution design, the No. 1 and No. 2 shields serve to hide the toothed belt. When the balloon is inflated, it rises from the round hole, allowing the patient to focus on the balloon.
[0011] Compared with the prior art, the beneficial effects of the present invention are: 1. Equipped with a moving mechanism and an inflating mechanism, it can continuously pop balloons to relieve stress for patients and prevent them from accidentally injuring themselves during venting. 2. It is equipped with an operating mechanism, so the patient's force does not directly act on the balloon, avoiding ineffective force and improving the decompression effect. Attached Figure Description
[0012] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0013] Figure 1 This is the southwest isometric view of the present invention.
[0014] Figure 2 yes Figure 1 Enlarged view of part A in the image.
[0015] Figure 3 yes Figure 1 Southeast isometric view.
[0016] Figure 4 yes Figure 1 Top view.
[0017] Figure 5 yes Figure 4 Enlarged view of part B in the image.
[0018] Figure 6 This is a schematic diagram of the moving mechanism in this invention.
[0019] Figure 7 yes Figure 6 Enlarged view of section C in the image.
[0020] Figure 8 This is a schematic diagram of the air blowing mechanism in this invention.
[0021] Figure 9 yes Figure 8 Enlarged view of part D in the image.
[0022] Explanation of reference numerals in the attached figures: Tabletop 1, Legs 2, Moving Mechanism 3, Toothed Belt 3-1, Gear 3-2, Motor 3-3, Moving Block 3-4, Air Inlet Pipe 3-5, Air Inlet Hole 3-5-1, Limiting Mechanism 3-6, Semi-circular Limiting Plate 3-6-1, Connecting Rod 3-6-2, Limiting Plate 3-6-3, Screw 3-6-4, Drive Shaft 3-6-5, Hand Tightening 3-6-6, Air Blowing Mechanism 4, Fixed Plate 4-1, Electric Telescopic Rod 4-2, Connecting Plate No. 1 4-3, Connecting Plate No. 2 4-4, Walking Mechanism Wheel 4-5, Auxiliary wheel 4-6, Air pump 4-7, Air guide pipe 4-8, Sealing gasket 4-9, Operating mechanism 5, Arc track 5-1, Slider 5-2, Handle 5-3, Switch No. 1 5-4, Mounting plate No. 1 5-5, Switch No. 2 5-6, Mounting plate No. 2 5-7, Spring No. 1 5-8, Mounting plate No. 3 5-9, Stop block 5-10, Limiting rod 5-11, Spring No. 2 5-12, Baffle plate No. 1 5-13, Baffle plate No. 2 5-14, Round hole 5-15. Detailed Implementation
[0023] The invention will now be further described with reference to the accompanying drawings.
[0024] Example 1: Please see Figure 1 , Figure 3 and Figure 4 This embodiment 1 includes a tabletop 1 and legs 2; the tabletop 1 is provided with legs 2 at the four bottom corners; It also includes: The moving mechanism 3 is mounted on the tabletop 1. The air blowing mechanism 4 is located on the table 1 and is located on the left front side of the moving mechanism 3. Operating mechanism 5, which is mounted on table 1, is connected to moving mechanism 3 and blowing mechanism 4; In Example 1, the moving mechanism 3 is used to move the balloon, the blowing mechanism 4 causes the balloon to expand and explode, and the operating mechanism 5 ensures that the patient's force is not directly applied to the balloon, thus avoiding ineffective force application and improving the decompression effect.
[0025] Example 2: Please see Figure 6 Based on Embodiment 1, the moving mechanism 3 includes: The toothed belt 3-1 is mounted on the tabletop 1 and is driven by a gear 3-2. The front gear 3-2 is connected to the output shaft of the motor 3-3. The motor 3-3 is fixed to the front of the upper surface of the tabletop 1 by bolts and is connected to an external power source. The specific model of the motor 3-3 is purchased and installed directly from the market according to actual usage requirements. The rear gear 3-2 is connected to the tabletop 1 through a shaft and bearings. The number of movable blocks 3-4 is several, and each is fixed to the outer surface of the toothed belt 3-1 by bolts; The number of air intake pipes 3-5 is several, and they are respectively fixed to the movable block 3-4 by bolts. An air intake hole 3-5-1 is opened on the outer side of the annular wall of the air intake pipe 3-5. Limiting mechanisms 3-6, there are several limiting mechanisms 3-6, and they are respectively provided on the air intake pipe 3-5; In this embodiment, the worker places the balloon on the air inlet pipe 3-5 and fixes the balloon with the limiting mechanism 3-6. The motor 3-3 is started, which causes the gear 3-2 to rotate, driving the toothed belt 3-1 to rotate, so that the air inlet pipe 3-5 moves to the blowing mechanism 4 to blow air into the balloon.
[0026] Example 3: Please see Figure 6-7 Based on Embodiment 2, the limiting mechanisms 3-6 all include: There are two semicircular limiting plates 3-6-1, which are respectively positioned opposite each other at the upper end of the air intake pipe 3-5. Connecting rod 3-6-2, there are two connecting rods 3-6-2, the connecting rods 3-6-2 are "C" shaped, and the connecting rods 3-6-2 are respectively fixed to the semi-circular limiting plate 3-6-1; the inner side of the connecting rod 3-6-2 abuts against the limiting plate 3-6-3, and the limiting plate 3-6-3 is fixed to the air intake pipe 3-5; Screw 3-6-4, there are two screws 3-6-4, and they are respectively inserted into the lower inner end of the connecting rod 3-6-2 by threaded connection. The other end of the screw 3-6-4 is screwed onto the air intake pipe 3-5 by bearing. The drive shaft 3-6-5 is screwed to the outer side of the bottom of the annular wall of the intake pipe 3-5 via a bearing. The outer end of the drive shaft 3-6-5 is fixed with a hand-tightening 3-6-6 by bolts. The drive shaft 3-6-5 and the two screws 3-6-4 are connected by several bevel gears and shaft transmission. In this embodiment, turning the hand screw 3-6-6 causes the drive shaft 3-6-5 to rotate. Under the action of the bevel gear, the screw 3-6-4 rotates. Under the action of the limiting plate 3-6-3, the connecting rod 3-6-2 drives the semi-circular limiting plate 3-6-1 to move away. After the balloon is fixed, turning the hand screw 3-6-6 clamps the balloon, preventing air leakage when the balloon is inflated.
[0027] Example 4: Please see Figure 8-9 Based on embodiment 3, the blowing mechanism 4 includes: The fixing plate 4-1 is fixed to the table 1 by bolts. The fixing plate 4-1 has a "C" shaped structure. The toothed belt 3-1 and the air intake pipe 3-5 pass through the window on the fixing plate 4-1. The electric telescopic pole 4-2 is fixed to the left inner side wall of the fixing plate 4-1 by bolts. The electric telescopic pole 4-2 is connected to an external power source. The specific model of the electric telescopic pole 4-2 is purchased and installed directly from the market according to actual usage requirements. The movable end of the electric telescopic pole 4-2 is fixed to a first connecting plate 4-3 by bolts. The upper end of the first connecting plate 4-3 is fixed to a second connecting plate 4-4 by bolts. The bottom of the second connecting plate 4-4 is provided with traveling wheels 4-5 at both the front and rear. The bottom of the first connecting plate 4-3 is provided with auxiliary wheels 4-6. Air pump 4-7 is fixed to the second connecting plate 4-4 by bolts. Air pump 4-7 is connected to an external power source. The specific model of air pump 4-7 is purchased and installed directly from the market according to actual usage requirements. Air pump 4-7 has an air guide pipe 4-8 connected to its outlet end. A sealing gasket 4-9 is fitted and fixed on the air guide pipe 4-8. The sealing gasket 4-9 is fitted to the annular wall of the air inlet pipe 3-5. In this embodiment, the electric telescopic rod 4-2 is activated, causing the second connecting plate 4-4 to extend. The air guide tube 4-8 is inserted into the air inlet 3-5-1 of the air inlet tube 3-5, and the sealing gasket 4-9 prevents air leakage. The air pump 4-7 is activated to release air, causing the balloon to inflate and explode.
[0028] Example 5: Please see Figure 1-5 Based on embodiment 4, the operating mechanism 5 includes: The arc-shaped track 5-1 is fixed to the upper surface of the table 1 on the front right side by bolts; a slider 5-2 is slidably provided on the arc-shaped track 5-1. The grip 5-3 is fixed to the slider 5-2 by bolts. The first switch 5-4 is located at the right rear end of the arc track 5-1. The first switch 5-4 is fixed on the first mounting plate 5-5. The first mounting plate 5-5 is fixed on the table 1. The first switch 5-4 is connected to the motor 3-3 and the electric telescopic rod 4-2. The second switch 5-6 is located at the front end of the arc-shaped track 5-1. The second switch 5-6 is fixed on the second mounting plate 5-7. The second mounting plate 5-7 is fixed on the table 1. The second switch 5-6 is connected to the air pump 4-7. Spring 5-8 is fixed to the outer wall of slider 5-2. Mounting plate 5-9 is fixed to the rear end of spring 5-8 and is fixed to table 1. There are two abutment blocks 5-10, which are respectively located on the front and rear left sides of the first mounting plate 5-5. A limit rod 5-11 is fixed on the right side wall of the abutment block 5-10 and is movably inserted into the first mounting plate 5-5. A second spring 5-12 is movably sleeved on the limit rod 5-11. One end of the second spring 5-12 is fixed to the abutment block 5-10 and the other end of the second spring 5-12 is fixed to the first mounting plate 5-5. In this embodiment, the patient holds the grip lever 5-3 and touches switch 5-4 to the right, which starts the motor 3-3 and the electric telescopic rod 4-2. The slider 5-2 moves along the arc-shaped slide rail, and spring 5-8 provides resistance. The patient then moves the slider 5-2 to touch switch 5-6, which starts the air pump 4-7. The patient then relaxes the grip lever 5-3, and the slider 5-2 returns to its original position under the action of spring 5-8. Block 5-10 prevents the slider 5-2 from hitting switch 5-4.
[0029] Example 6: Please see Figure 1 , Figure 3 and Figure 4 Based on embodiment 5, a first shielding plate 5-13 is fixed to the bottom front side of the fixed plate 4-1 by bolts. A second shielding plate 5-14 is provided inside the fixed plate 4-1. The second shielding plate 5-14 is fixed to the first shielding plate 5-13. The right side wall of the second shielding plate 5-14 is fixed to the fixed plate 4-1. A round hole 5-15 is provided on the second shielding plate 5-14. The round hole 5-15 is correspondingly set with the air guide pipe 4-8 of the air pump 4-7. In this embodiment, the first shielding plate 5-13 and the second shielding plate 5-14 serve to conceal the toothed band 3-1. When the balloon is inflated, it rises from the round hole 5-15, allowing the patient to focus on the balloon.
[0030] In use, the operator places the balloon onto the air inlet pipe 3-5 from the back of the table 1, and rotates the handwheel 3-6-6 to rotate the drive shaft 3-6-5. Under the action of the bevel gear, the screw 3-6-4 rotates. Under the action of the limiting plate 3-6-3, the connecting rod 3-6-2 moves the semi-circular limiting plate 3-6-1 away. After the balloon is fixed, rotating the handwheel 3-6-6 clamps the balloon to prevent air leakage during inflation. The patient holds the handle 5-3 and touches the first switch 5-4 to the right, starting the motor 3-3 and the electric telescopic rod 4-2. The motor 3-3 starts, causing the gear 3-2 to rotate, which in turn drives the toothed belt 3-1 to rotate, moving the air inlet pipe 3-5 to the air pump 4-7 to inflate the balloon. The electric telescopic rod 4-2 is activated, the second connecting plate 4-4 extends, and the air guide tube 4-8 is inserted into the air inlet 3-5-1 of the air inlet tube 3-5. The sealing gasket 4-9 prevents air leakage. The patient moves the slider 5-2 along the arc-shaped slide rail. The first spring 5-8 creates resistance, making the patient feel the force. The patient exerts force to move the slider 5-2 and touches the second switch 5-6, which activates the air pump 4-7 to release air. The balloon expands and explodes, reducing pressure on the patient and preventing ineffective force exertion and injury during the outburst. The patient relaxes the force and, under the action of the first spring 5-8, grips the rod 5-3 to slide back. The slider 5-2 returns to its position, and the stop block 5-10 prevents the slider 5-2 from hitting the first switch 5-4. Then, the above steps are repeated to pop the next balloon.
[0031] The beneficial effects of this specific embodiment after adopting the above structure are as follows: 1. Equipped with a moving mechanism 3 and a blowing mechanism, it can continuously blow up balloons to relieve pressure on patients and prevent them from accidentally injuring themselves during venting. 2. An operating mechanism 5 is provided, so the patient's force is not directly applied to the balloon, avoiding ineffective force application and improving the decompression effect.
[0032] The above description is only used to illustrate the technical solution of the present invention and is not intended to limit it. Any other modifications or equivalent substitutions made by those skilled in the art to the technical solution of the present invention, as long as they do not depart from the spirit and scope of the technical solution of the present invention, should be covered within the scope of the claims of the present invention.
Claims
1. A stress-relief device for patients with depression, comprising a table (1) and legs (2); the table (1) is provided with legs (2) at the four bottom corners. Its features are, It also includes: The moving mechanism (3) is mounted on the tabletop (1); The air blowing mechanism (4) is located on the table (1) and is located on the left front side of the moving mechanism (3); The operating mechanism (5) is located on the table (1) and is connected to the moving mechanism (3) and the blowing mechanism (4).
2. A stress-relief device for patients with depression according to claim 1, characterized in that... The aforementioned mobile mechanism (3) includes: The toothed belt (3-1) is located on the tabletop (1). The toothed belt (3-1) is driven by a gear (3-2). The front gear (3-2) is connected to the output shaft of the motor (3-3). The motor (3-3) is fixed on the front side of the upper surface of the tabletop (1) and is connected to an external power source. The rear gear (3-2) is connected to the tabletop (1) through a shaft and bearing. The number of movable blocks (3-4) is several, and they are respectively fixed on the outer surface of the toothed belt (3-1); The number of air intake pipes (3-5) is several, and they are fixed on the movable block (3-4). An air intake hole (3-5-1) is opened on the outer side of the annular wall of the air intake pipe (3-5). The limiting mechanism (3-6) is a plurality of such limiting mechanisms (3-6) and is respectively provided on the air intake pipe (3-5).
3. A stress-relief device for patients with depression according to claim 2, characterized in that: The aforementioned limiting mechanisms (3-6) all include: Two semicircular limiting plates (3-6-1) are provided, and they are respectively positioned opposite each other at the upper end of the air intake pipe (3-5). There are two connecting rods (3-6-2), each with a "C"-shaped structure. The connecting rods (3-6-2) are fixed to the semi-circular limiting plate (3-6-1) respectively. The inner side of the connecting rod (3-6-2) abuts against the limiting plate (3-6-3), and the limiting plate (3-6-3) is fixed to the air intake pipe (3-5). Two screws (3-6-4) are provided, and each screw is threadedly inserted into the lower inner end of the connecting rod (3-6-2). The other end of the screw (3-6-4) is threaded onto the intake pipe (3-5) via a bearing. The drive shaft (3-6-5) is screwed to the outer side of the bottom of the annular wall of the intake pipe (3-5) via a bearing. The outer end of the drive shaft (3-6-5) is fixed with a hand screw (3-6-6). The drive shaft (3-6-5) and the two screws (3-6-4) are connected by several bevel gears and shaft drive.
4. A stress-relief device for patients with depression according to claim 3, characterized in that: The air blowing mechanism (4) includes: The fixing plate (4-1) is fixed on the table (1). The fixing plate (4-1) has a "C" shaped structure. The toothed belt (3-1) and the air intake pipe (3-5) pass through the window on the fixing plate (4-1). An electric telescopic rod (4-2) is fixed to the left inner side wall of a fixed plate (4-1) and is connected to an external power source. A first connecting plate (4-3) is fixed to the movable end of the electric telescopic rod (4-2), and a second connecting plate (4-4) is fixed to the upper end of the first connecting plate (4-3). The bottom of the second connecting plate (4-4) is provided with wheels (4-5) at both the front and rear. An air pump (4-7) is fixed on a second connecting plate (4-4) and connected to an external power source. An air guide pipe (4-8) is connected to the air outlet of the air pump (4-7). A sealing gasket (4-9) is fitted and fixed on the air guide pipe (4-8). The sealing gasket (4-9) is fitted against the annular wall of the air inlet pipe (3-5).
5. A stress-relief device for patients with depression according to claim 4, characterized in that: The bottom of the No. 1 connecting plate (4-3) is equipped with auxiliary wheels (4-6).
6. A stress-relief device for patients with depression according to claim 4, characterized in that: The operating mechanism (5) includes: An arc-shaped track (5-1) is fixed to the upper surface of the table (1) on the right front side; a slider (5-2) is slidably provided on the arc-shaped track (5-1). The grip (5-3) is fixed on the slider (5-2); The first switch (5-4) is located at the right rear end of the arc track (5-1). The first switch (5-4) is fixed on the first mounting plate (5-5). The first mounting plate (5-5) is fixed on the table (1). The first switch (5-4) is connected to the motor (3-3) and the electric telescopic rod (4-2). The second switch (5-6) is located at the front end of the arc track (5-1), the second switch (5-6) is fixed on the second mounting plate (5-7), the second mounting plate (5-7) is fixed on the table (1), and the second switch (5-6) is connected to the air pump (4-7). Spring No. 1 (5-8) is fixed to the outer wall of slider (5-2), and mounting plate No. 3 (5-9) is fixed to the rear end of spring No. 1 (5-8). Mounting plate No. 3 (5-9) is fixed on table (1). There are two abutment blocks (5-10), which are respectively located on the front and back left sides of the first mounting plate (5-5). A limit rod (5-11) is fixed on the right side wall of the abutment block (5-10). The limit rod (5-11) is movably inserted into the first mounting plate (5-5). A second spring (5-12) is movably sleeved on the limit rod (5-11). One end of the second spring (5-12) is fixed to the abutment block (5-10), and the other end of the second spring (5-12) is fixed to the first mounting plate (5-5).
7. A stress-relief device for patients with depression according to claim 6, characterized in that: A first baffle plate (5-13) is fixed to the bottom front side of the fixed plate (4-1). A second baffle plate (5-14) is provided inside the fixed plate (4-1). The second baffle plate (5-14) is fixed on the first baffle plate (5-13). The right side wall of the second baffle plate (5-14) is fixed to the fixed plate (4-1). A round hole (5-15) is opened on the second baffle plate (5-14). The round hole (5-15) is correspondingly set with the air guide pipe (4-8) of the air pump (4-7).