A physiotherapy rotating device
By designing a physiotherapy rotation device that can adjust the intensity and direction of the magnetic field, the problems of poor magnetic therapy and uncomfortable wearing of existing equipment have been solved, and more efficient magnetic therapy effects and better comfort are achieved.
Patent Information
- Application Number
- CN202010813090.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2020-08-13
- Publication Date
- 2025-06-27
- Estimated Expiration
- 2040-08-13
AI Technical Summary
The magnetic field strength and direction of existing physiotherapy rotating equipment is relatively fixed, resulting in poor magnetic therapy effect. At the same time, the equipment is worn on the human head, making it less comfortable.
A physiotherapy rotating device including a base plate, a seat, a fixed compartment, a moving bracket, a central control box and a rotating disc is designed. Through the adjustment device and the rotating device, the magnetic field strength and direction can be easily adjusted, so that the multi-magnetic field acts on the human head synchronously.
It improves the effect of magnetic field on the human body and enhances the effect of magnetic therapy. At the same time, the human head is unrestrained and can be leaned against the seat for magnetic therapy, which improves the comfort and practicality and reliability of the equipment.
Smart Images

Figure CN114073822B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of physiotherapy devices, and particularly to a physiotherapy rotation device. Background Art
[0002] As is well known, physiotherapy rotation devices mainly comb and improve the human body's biological magnetic field through an artificial magnetic field, so that the disordered biological magnetic field of the human body returns to normal, achieving the purpose of massage and physiotherapy. It can have a good effect on head diseases such as insomnia, headache, and dizziness. Existing physiotherapy rotation devices are usually wearable, and they are fixed on the head by a tightening strap for use. When using such a device, the intensity and direction of the magnetic field generated by the physiotherapy rotation device are relatively fixed, and the magnetic therapy effect on the human body is poor. At the same time, when the device is worn on the human head, its comfort level is low. Summary of the Invention
[0003] To solve the above technical problems, the present invention provides a physiotherapy rotation device that can conveniently adjust the magnetic field intensity and magnetic field direction of the device's action on the human body through magnetic therapy on the human head, facilitating synchronous comprehensive magnetic therapy on the human head by multiple magnetic fields, improving the effect of the magnetic field on the human body, enhancing the magnetic therapy effect, and at the same time, there is no restraint on the human head, and the human body can lean on a seat for magnetic therapy, improving the comfort level of the human body and enhancing the practicality and reliability.
[0004] A physiotherapy rotating device of the present invention includes a bottom plate, a seat, a fixed bin, a moving bracket, a central control box, and a rotating disk. The seat and the fixed bin are both installed on the bottom plate. A cavity is provided inside the fixed bin. The lower right side of the moving bracket is inserted into the cavity through the top of the fixed bin and can slide up and down inside the cavity. Two adjustment devices are longitudinally arranged side by side on the lower right side of the moving bracket. The two adjustment devices are respectively installed on the front side and the rear side inside the cavity. The central control box is installed on the moving bracket. The central control box is signal-connected to the two adjustment devices. The rotating disk is rotatably installed on the left side of the moving bracket. A rotating device is provided on the right side of the rotating disk. The rotating device is drivably connected to the rotating disk. The central control box is signal-connected to the rotating device. Two connecting rods are rotatably provided at the bottom of the rotating disk. Arc-shaped support plates are provided at the bottoms of the two connecting rods. Fixed grooves are communicated on the inner walls of the two arc-shaped support plates. Arc-shaped magnets are provided in the two fixed grooves. A plurality of conical magnetic conductors are evenly provided on the inner walls of the two arc-shaped magnets. Pulling devices are provided on the outer walls of the two arc-shaped support plates. The upper sides of the two pulling devices are rotatably installed on the rotating disk. The pulling device includes a fixed seat, a lead screw, a first nut, a mounting plate, a first bevel gear, a first motor, a first rotating shaft, and a second bevel gear. The fixed seat is installed on the arc-shaped support plate. The lower side of the lead screw is rotatably installed on the fixed seat. The lower side of the first nut is sleeved on the upper side of the lead screw. The first nut is screwed to the lead screw. The upper side of the first nut is rotatably installed on the mounting plate. The right side of the mounting plate is rotatably installed on the rotating disk. The first bevel gear is installed on the outer wall of the first nut. The first motor is installed on the mounting plate. The two first motors are both signal-connected to the central control box. The first rotating shaft is installed on the first motor. The second bevel gear is installed on the first rotating shaft. The lower side of the second bevel gear meshes with the left side of the first bevel gear.
[0005] In the control box of the present invention, two sets of adjustment devices push the lower right side of the moving bracket to move upward in the fixed bin. The moving bracket moves upward and drives the rotating disk to move upward. Both sets of arc-shaped support plates move away from the seat. When a person sits on the seat, the control box drives the moving bracket to move downward through two sets of adjustment devices. The two sets of arc-shaped support plates move downward and move to the outside of the person's head. The magnetic fields generated on the two sets of arc-shaped magnets can be transmitted to multiple sets of conical magnetic conductors and dispersed into small magnetic fields on each set of conical magnetic conductors. The small magnetic fields on the multiple sets of conical magnetic conductors cross each other and all act on the person's head. The multiple crossed small magnetic fields can perform comprehensive magnetic therapy on the person's head. By turning on the first motors on the two sets of pulling devices through the control box, the two sets of first motors drive the two sets of first rotating shafts and the two sets of second bevel gears to rotate respectively. The two sets of second bevel gears drive the two sets of first screw sleeves to rotate respectively through the two sets of first bevel gears. The two sets of first screw sleeves rotate on the two sets of mounting plates respectively. At the same time, since the two sets of first screw sleeves are respectively screwed to the two sets of first screw sleeves, the two sets of first screw sleeves drive the two sets of lead screws to move up and down respectively. The two sets of lead screws pull the two sets of arc-shaped support plates to perform an opening and closing action respectively through the two sets of fixed seats. The two sets of arc-shaped support plates drive the two sets of connecting rods to rotate on the rotating disk respectively. At the same time, the lower sides of the two sets of lead screws can perform pitching motions on the two sets of fixed seats respectively. The two sets of mounting plates perform pitching motions on the rotating disk respectively, so as to adjust the magnetic therapy intensity of the magnetic fields on the multiple sets of conical magnetic conductors on the person's head. The control box controls the rotating device to drive the rotating disk to rotate. The rotating disk drives the two sets of connecting rods, the two sets of arc-shaped support plates, the two sets of arc-shaped magnets and the multiple sets of conical magnetic conductors to rotate, so as to adjust the acting angle of the magnetic fields on the multiple sets of conical magnetic conductors on the person. By performing magnetic therapy on the person's head, it is convenient to adjust the magnetic field intensity and magnetic field direction of the device acting on the person, and it is convenient to make multiple magnetic fields synchronously perform comprehensive magnetic therapy on the person's head, improve the effect of the magnetic field acting on the person, improve the magnetic therapy effect. At the same time, there is no restraint on the person's head, and the person can lean on the seat for magnetic therapy, improving the comfort of the person, as well as the practicability and reliability.
[0006] A physical therapy rotation device of the present invention, the adjustment device includes a second motor, a lead screw, a second nut sleeve and four sets of fixing blocks. The second motor is installed on the lower right side of the moving bracket, and the second motor is signal-connected to the central control box. The upper side of the lead screw is installed on the lower output end of the second motor. The second nut sleeve is screwed onto the lead screw, and the second nut sleeve is fixed on the inner wall of the fixed cavity through four sets of fixing blocks. A buffer device is arranged in the middle of the bottom end of the rotating disk. A pressure gauge and a pressing plate are arranged at the bottom of the buffer device. The pressure gauge is signal-connected to the central control box. By controlling the second motor to be turned on through the central control box, the second motor can drive the lead screw to rotate. The lead screw is screwed to the second nut sleeve, and the lead screw can move up and down on the second nut sleeve, so that the lead screw can drive the second motor and the moving bracket to move up and down. The four sets of fixing blocks can support and fix the second nut sleeve. When the rotating disk moves downward, the rotating disk drives the pressure gauge and the pressing plate to move downward through the buffer device. The pressing plate can contact the human head, and the pressing plate generates a reverse pressure on the pressure gauge. The pressure gauge transmits the pressure signal to the central control box. The central control box controls the two adjustment devices to drive the moving bracket to stop moving downward and move upward in the reverse direction to a specified distance. At this time, the pressing plate is separated from the human head. The two arc-shaped support plates are located outside the human head. By setting the adjustment device, the height of the device can be conveniently adjusted, so that it is convenient for a person to sit down or get up. By setting the pressure gauge and the pressing plate, the up and down movement positions of the two arc-shaped support plates can be conveniently positioned, so that the movement positions of the two arc-shaped support plates can be automatically controlled according to different human heights, improving the practicability and reliability.
[0007] A physical therapy rotation device of the present invention, the rotation device includes a third motor, a second rotating shaft, a first spur gear and a second spur gear. The third motor is signal-connected to the central control box. The third motor is installed on the moving bracket. The top of the second rotating shaft passes through the moving bracket and is installed on the lower output end of the third motor. The second rotating shaft is rotatably connected to the moving bracket. The first spur gear is installed on the second rotating shaft. The second spur gear is installed on the upper side of the rotating disk. The right side of the second spur gear meshes with the left side of the first spur gear. By controlling the third motor to operate through the central control box, the third motor can drive the second spur gear to rotate through the second rotating shaft and the first spur gear. The second spur gear can drive the rotating disk to rotate, so that the rotating disk drives the two connecting rods, the two arc-shaped support plates, the two arc-shaped magnets and multiple conical magnetic conductors to rotate, facilitating the adjustment of the magnetic field direction on the multiple conical magnetic conductors, so as to facilitate the device to perform comprehensive magnetic therapy on the human head, improving the magnetic therapy effect of the device and the practicability.
[0008] A physiotherapy rotation device of the present invention, the buffer device includes a buffer bin, a spring, a sliding plate and a buffer rod. The buffer bin is located between two groups of connecting rods, and the buffer bin is installed on the rotating disk. The spring is located inside the buffer bin, the top of the spring is installed on the upper side inside the buffer bin, the sliding plate is located inside the buffer bin and can slide up and down inside the buffer bin, the sliding plate is installed at the bottom of the spring, the top of the buffer rod passes through the bottom of the buffer bin and extends into the buffer bin and is installed at the bottom of the sliding plate, and the bottom of the buffer rod is connected to the top of the pressure gauge; when the bottom of the pressing plate contacts the human head, the pressing plate stops moving, the pressing plate can push the buffer rod upward through the pressure gauge, the buffer rod can drive the sliding plate to slide upward and squeeze the spring, and the spring undergoes elastic deformation. By setting the buffer device, it is convenient to buffer the pressure gauge and the pressing plate, prevent the pressure gauge and the pressing plate from causing pressure injuries to the human head when moving downward, and improve safety and practicability.
[0009] A physiotherapy rotation device of the present invention further includes two groups of contact switches. The two groups of contact switches are both signal-connected to the central control box. The inner sides of the two groups of contact switches are both installed on the side wall of the buffer bin, and the outer sides of the two groups of contact switches are respectively in contact with the inner sides of the two groups of arc-shaped support plates; when the two groups of arc-shaped support plates are closed, the two groups of arc-shaped support plates rotate and can respectively contact the two groups of contact switches. The two groups of contact switches transmit the contact signals into the central control box, and the central control box can control the two groups of pulling devices to stop operating, thereby limiting the closed position of the two groups of arc-shaped support plates to prevent them from colliding, and at the same time preventing them from squeezing the human head, and improving practicability and reliability.
[0010] A physiotherapy rotation device of the present invention, the pulling device further includes a first protective cover. The first protective cover is located outside the first bevel gear, the first motor, the first rotating shaft and the second bevel gear. The first protective cover is installed on the mounting plate. The lower right side of the first protective cover is sleeved on the first screw sleeve and is rotatably connected to the first screw sleeve. A second protective cover is arranged outside the first spur gear and the second spur gear. The second protective cover is sleeved outside the rotating disk and is rotatably connected to the rotating disk. The top of the second protective cover is installed on the moving bracket; by setting the first protective cover, it is convenient to isolate and protect the first bevel gear, the first motor, the first rotating shaft and the second bevel gear. By setting the second protective cover, it is convenient to isolate and protect the first spur gear and the second spur gear, and improve practicability.
[0011] A physiotherapy rotation device of the present invention, the adjustment device further includes a guide rail, a slider and a stabilizing plate. The guide rail is vertically installed on the left side of the inner wall of the cavity. The slider is slidably installed on the guide rail. The stabilizing plate is installed on the slider. The bottom of the lead screw is rotatably installed on the stabilizing plate; when the lead screw moves up and down, the lead screw can drive the slider to slide up and down on the guide rail through the stabilizing plate. By setting the guide rail, the slider and the stabilizing plate, it is convenient to support and guide the bottom of the lead screw, improve the stability and firmness when the lead screw moves, and improve practicability.
[0012] A physiotherapy rotation device of the present invention further includes two groups of telescopic rods. The lower sides of the two groups of telescopic rods are respectively rotatably installed on two arc-shaped support plates, and the upper sides of the two groups of telescopic rods are both rotatably installed on a rotating disk. When the two arc-shaped support plates perform an opening and closing movement, the two arc-shaped support plates respectively drive the lower sides of the two groups of telescopic rods to perform a telescopic movement. By providing the two groups of telescopic rods, it is convenient to support and guide the two arc-shaped support plates, improve the stability of the movement of the two arc-shaped support plates, and improve the practicability and reliability.
[0013] Compared with the prior art, the beneficial effects of the present invention are as follows: The central control box drives the lower right side of the moving bracket to move upward in the fixed bin through two adjustment devices. The moving bracket moves upward and drives the rotating disk to move upward. The two arc-shaped support plates are both away from the seat. When a person sits on the seat, the central control box drives the moving bracket to move downward through the two adjustment devices. The two arc-shaped support plates move downward and move to the outside of the person's head. The magnetic fields generated on the two arc-shaped magnets can be transmitted to multiple groups of conical magnetic conductors and dispersed into small magnetic fields on each group of conical magnetic conductors. The small magnetic fields on the multiple groups of conical magnetic conductors cross each other and all act on the person's head. The multiple cross - intersecting small magnetic fields can perform comprehensive magnetic therapy on the person's head. By turning on the first motors on the two pulling devices through the central control box, the two first motors respectively drive the two first rotating shafts and the two second bevel gears to rotate. The two second bevel gears respectively drive the two first screw sleeves to rotate through the two first bevel gears. The two first screw sleeves respectively rotate on the two mounting plates. At the same time, since the two first screw sleeves are respectively screwed and connected with the two first screw rods, the two first screw sleeves respectively drive the two screw rods to move up and down. The two screw rods respectively pull the two arc-shaped support plates to perform an opening and closing action through the two fixed seats. The two arc-shaped support plates respectively drive the two connecting rods to rotate on the rotating disk. At the same time, the lower sides of the two screw rods can respectively perform pitching movements on the two fixed seats, and the two mounting plates both perform pitching movements on the rotating disk, so as to adjust the magnetic therapy intensity of the magnetic fields on the multiple groups of conical magnetic conductors on the person's head. The central control box controls the rotating device to drive the rotating disk to rotate. The rotating disk drives the two connecting rods, the two arc-shaped support plates, the two arc-shaped magnets and the multiple groups of conical magnetic conductors to rotate, so as to adjust the acting angle of the magnetic fields on the multiple groups of conical magnetic conductors on the person. By performing magnetic therapy on the person's head, it is convenient to adjust the magnetic field intensity and magnetic field direction of the device acting on the person, facilitate the synchronous comprehensive magnetic therapy treatment of the multiple magnetic fields on the person's head, improve the effect of the magnetic field acting on the person, improve the magnetic therapy effect. At the same time, the person's head is not restricted, and the person can lean on the seat for magnetic therapy, improving the comfort of the person, and improving the practicability and reliability. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] Figure 1 is a schematic structural diagram of the present invention;
[0015] Figure 2 is Figure 1Schematic diagram of the enlarged structure of the rotating disk;
[0016] Figure 3 is Figure 1 Schematic diagram of the enlarged structure of the second motor part in the [device];
[0017] Figure 4 is Figure 2 Schematic diagram of the enlarged structure of the first motor part in the [device];
[0018] Figure 5 is Figure 2 Schematic diagram of the enlarged structure of the pressing plate in the [device];
[0019] Labels in the attached drawings: 1. Bottom plate; 2. Seat; 3. Fixed bin; 4. Moving bracket; 5. Central control box; 6. Rotating disk; 7. Connecting rod; 8. Arc-shaped support plate; 9. Arc-shaped magnet; 10. Conical magnetic conductor; 11. Fixed seat; 12. Lead screw; 13. First screw sleeve; 14. Mounting plate; 15. First bevel gear; 16. First motor; 17. First rotating shaft; 18. Second bevel gear; 19. Second motor; 20. Lead screw; 21. Second screw sleeve; 22. Fixed block; 23. Pressure gauge; 24. Pressing plate; 25. Third motor; 26. Second rotating shaft; 27. First spur gear; 28. Second spur gear; 29. Buffer bin; 30. Spring; 31. Slide plate; 32. Buffer rod; 33. Contact switch; 34. First protective cover; 35. Second protective cover; 36. Guide rail; 37. Slide block; 38. Stabilizing plate; 39. Telescopic rod. Detailed implementation manners
[0020] The following combines the attached drawings and embodiments to further describe in detail the specific implementation manners of the present invention. The following embodiments are used to illustrate the present invention, but are not used to limit the scope of the present invention.
[0021] Such as Figures 1 to 5As shown in the figure, a physiotherapy rotation device of the present invention, when working, the central control box 5 drives the lower right side of the moving bracket 4 to move upward in the fixed bin 3 through two groups of adjustment devices. The moving bracket 4 moves upward and drives the rotating disk 6 to move upward. Both groups of arc-shaped support plates 8 move away from the seat 2. A person sits on the seat 2. The central control box 5 drives the moving bracket 4 to move downward through two groups of adjustment devices. Both groups of arc-shaped support plates 8 move downward and move to the outside of the human head. The magnetic fields generated on both groups of arc-shaped magnets 9 can be transmitted to multiple groups of conical magnetic conductors 10 and dispersed into small magnetic fields on each group of conical magnetic conductors 10. The small magnetic fields on multiple groups of conical magnetic conductors 10 cross each other and act on the human head. The multiple cross - intersecting small magnetic fields can perform comprehensive magnetic therapy on the human head. By turning on the first motors 16 on two groups of pulling devices through the central control box 5, the two groups of first motors 16 drive the two groups of first rotating shafts 17 and the two groups of second bevel gears 18 to rotate respectively. The two groups of second bevel gears 18 drive the two groups of first screw sleeves 13 to rotate respectively through the two groups of first bevel gears 15. The two groups of first screw sleeves 13 rotate on the two groups of mounting plates 14 respectively. At the same time, since the two groups of first screw sleeves 13 are respectively screwed and connected to the two groups of first screw sleeves 13, the two groups of first screw sleeves 13 drive the two groups of lead screws 12 to move up and down respectively. The two groups of lead screws 12 pull the two groups of arc-shaped support plates 8 to perform an opening and closing action respectively through the two groups of fixed seats 11. The two groups of arc-shaped support plates 8 drive the two groups of connecting rods 7 to rotate on the rotating disk 6 respectively. At the same time, the lower sides of the two groups of lead screws 12 can perform pitching motions on the two groups of fixed seats 11 respectively. The two groups of mounting plates 14 perform pitching motions on the rotating disk 6 respectively, so as to adjust the magnetic therapy intensity of the magnetic fields on multiple groups of conical magnetic conductors 10 on the human head. The central control box 5 controls the rotating device to drive the rotating disk 6 to rotate. The rotating disk 6 drives the two groups of connecting rods 7, the two groups of arc-shaped support plates 8, the two groups of arc-shaped magnets 9 and multiple groups of conical magnetic conductors 10 to rotate, so as to adjust the acting angle of the magnetic fields on multiple groups of conical magnetic conductors 10 on the human body. When the magnetic therapy of the human head is completed, the central control box 5 drives the moving bracket 4 to move upward through two groups of adjustment devices. The two groups of arc-shaped support plates 8 move upward and away from the human body. The person can stand up and move away from the seat 2.
[0022] The main functions achieved by the present invention are as follows: By performing magnetic therapy on the human head, it is convenient to adjust the magnetic field strength and magnetic field direction of the device acting on the human body, facilitating the synchronous use of multiple magnetic fields to comprehensively perform magnetic therapy on the human head, improving the effect of the magnetic field on the human body and the magnetic therapy effect. At the same time, there is no restraint on the human head, and the human body can lean on the seat for magnetic therapy, improving human comfort. The adjustment device works in such a way that by controlling the opening of the second motor through the central control box, the second motor can drive the lead screw to rotate. The lead screw is screwed to the second nut sleeve, and the lead screw can move up and down on the second nut sleeve, so that the lead screw can drive the second motor and the moving bracket to move up and down. The four fixed blocks can support and fix the second nut sleeve. When the turntable moves downward, the turntable drives the pressure gauge and the pressure plate to move downward through the buffer device. The pressure plate can contact the human head, and the pressure plate generates a reverse pressure on the pressure gauge. The pressure gauge transmits the pressure signal to the central control box. The central control box controls the two adjustment devices to drive the moving bracket to stop moving downward and move upward in the reverse direction to a specified distance. At this time, the pressure plate is separated from the human head. The two arc-shaped support plates are located outside the human head. By setting the adjustment device, it is convenient to adjust the height of the device, facilitating the human body to sit down or get up. By setting the pressure gauge and the pressure plate, it is convenient to position the up and down movement positions of the two arc-shaped support plates, so as to conveniently control the movement positions of the two arc-shaped support plates automatically according to different human heights. The rotating device works in such a way that by controlling the operation of the third motor through the central control box, the third motor can drive the second spur gear to rotate through the second rotating shaft and the first spur gear. The second spur gear can drive the turntable to rotate, so that the turntable drives the two connecting rods, the two arc-shaped support plates, the two arc-shaped magnets and multiple conical magnetic conductors to rotate, facilitating the adjustment of the magnetic field direction on the multiple conical magnetic conductors, thus facilitating the device to comprehensively perform magnetic therapy on the human head and improving the magnetic therapy effect of the device. The buffer device works in such a way that when the bottom of the pressure plate contacts the human head, the pressure plate stops moving. The pressure plate can push the buffer rod upward through the pressure gauge. The buffer rod can drive the slide plate to slide upward and compress the spring, and the spring undergoes elastic deformation. By setting the buffer device, it is convenient to buffer the pressure gauge and the pressure plate, preventing the pressure gauge and the pressure plate from causing pressure injuries to the human head when moving downward. When the two arc-shaped support plates are closed, the two arc-shaped support plates rotate and can respectively contact the two contact switches. The two contact switches transmit the contact signal to the central control box. The central control box can control the two pulling devices to stop operating, thereby limiting the closing position of the two arc-shaped support plates to prevent them from colliding and at the same time preventing them from squeezing the human head. By setting the first protective cover, it is convenient to isolate and protect the first bevel gear, the first motor, the first rotating shaft and the second bevel gear. By setting the second protective cover, it is convenient to isolate and protect the first spur gear and the second spur gear;When the lead screw moves up and down, the lead screw can drive the slider to slide up and down on the guide rail through the stabilizing plate. By setting the guide rail, slider and stabilizing plate, it is convenient to support and guide the bottom of the lead screw, improving the stability and firmness when the lead screw moves; when the two arc-shaped support plates perform the opening and closing movement, the two arc-shaped support plates respectively drive the lower sides of the two telescopic rods to perform the telescopic movement. By setting the two telescopic rods, it is convenient to support and guide the two arc-shaped support plates, improving the smoothness when the two arc-shaped support plates move, and improving the practicability and reliability.
[0023] For a physiotherapy rotating device of the present invention, its installation method, connection method or setting method are all common mechanical methods, and any implementation that can achieve its beneficial effects can be carried out; the central control box, arc-shaped magnet, conical magnetic conductor, pressure gauge and contact switch can be purchased in the market.
[0024] The above are only the preferred embodiments of the present invention. It should be noted that for those of ordinary skill in the art, without departing from the technical principle of the present invention, several improvements and modifications can be made, and these improvements and modifications should also be regarded as the protection scope of the present invention.
Claims
1. A physiotherapy rotating device, characterized in that, It includes a bottom plate (1), a seat (2), a fixed bin (3), a moving bracket (4), a central control box (5) and a rotating disk (6). The seat (2) and the fixed bin (3) are both installed on the bottom plate (1). A cavity is provided inside the fixed bin (3). The lower right side of the moving bracket (4) is inserted into the cavity through the top of the fixed bin (3) and can slide up and down inside the cavity. Two groups of adjusting devices are longitudinally arranged side by side on the lower right side of the moving bracket (4). The two groups of adjusting devices are respectively installed on the front side and the rear side inside the cavity. The central control box (5) is installed on the moving bracket (4). The central control box (5) is signal-connected to the two groups of adjusting devices. The rotating disk (6) is rotatably installed on the left side of the moving bracket (4). A rotating device is provided on the upper side of the rotating disk (6). The rotating device is drivably connected to the rotating disk (6). The central control box (5) is signal-connected to the rotating device. Two groups of connecting rods (7) are rotatably provided at the bottom of the rotating disk (6). Arc-shaped support plates (8) are provided at the bottoms of the two groups of connecting rods (7). Fixed grooves are communicated with the inner walls of the two groups of arc-shaped support plates (8). Arc-shaped magnets (9) are provided in the two groups of fixed grooves. A plurality of conical magnetic conductors (10) are evenly provided on the inner walls of the two groups of arc-shaped magnets (9). Pulling devices are provided on the outer walls of the two groups of arc-shaped support plates (8). The upper sides of the two groups of pulling devices are rotatably installed on the rotating disk (6); The pulling device includes a fixed seat (11), a first lead screw (12), a first nut (13), a mounting plate (14), a first bevel gear (15), a first motor (16), a first rotating shaft (17) and a second bevel gear (18). The fixed seat (11) is installed on the arc-shaped support plate (8). The lower side of the first lead screw (12) is rotatably installed on the fixed seat (11). The lower side of the first nut (13) is sleeved on the upper side of the first lead screw (12). The first nut (13) is screwed to the first lead screw (12). The upper side of the first nut (13) is rotatably installed on the mounting plate (14). The mounting plate (14) is rotatably installed on the rotating disk (6). The first bevel gear (15) is installed on the outer wall of the first nut (13). The first motor (16) is installed on the mounting plate (14). The two first motors (16) are both signal-connected to the central control box (5). The first rotating shaft (17) is installed on the first motor (16). The second bevel gear (18) is installed on the first rotating shaft (17). The lower side of the second bevel gear (18) meshes with the left side of the first bevel gear (15); The rotating device includes a third motor (25), a second rotating shaft (26), a first spur gear (27) and a second spur gear (28). The third motor (25) is signal-connected to the central control box (5). The third motor (25) is installed on the moving bracket (4). The top of the second rotating shaft (26) passes through the moving bracket (4) and is installed on the lower output end of the third motor (25). The second rotating shaft (26) is rotatably connected to the moving bracket (4). The first spur gear (27) is installed on the second rotating shaft (26). The second spur gear (28) is installed on the upper side of the rotating disc (6). The right side of the second spur gear (28) meshes with the left side of the first spur gear (27).
2. The physical therapy rotation device according to claim 1, characterized in that, The adjusting device includes a second motor (19), a second lead screw (20), a second nut sleeve (21) and four groups of fixing blocks (22). The second motor (19) is installed on the lower right side of the moving bracket (4). The second motor (19) is signal-connected to the central control box (5). The upper side of the second lead screw (20) is installed on the lower output end of the second motor (19). The second nut sleeve (21) is screwed onto the second lead screw (20). The second nut sleeve (21) is fixed to the inner wall of the cavity of the fixed bin (3) through four groups of fixing blocks (22). A buffer device is arranged in the middle of the bottom end of the rotating disc (6). A pressure gauge (23) and a pressing plate (24) are arranged at the bottom of the buffer device. The pressure gauge (23) is signal-connected to the central control box (5).
3. A physiotherapy rotating device according to claim 2, characterized in that, The buffer device includes a buffer bin (29), a spring (30), a sliding plate (31) and a buffer rod (32). The buffer bin (29) is located between two groups of connecting rods (7). The buffer bin (29) is installed on the rotating disc (6). The spring (30) is located inside the buffer bin (29). The top of the spring (30) is installed on the upper side inside the buffer bin (29). The sliding plate (31) is located inside the buffer bin (29) and can slide up and down inside the buffer bin (29). The sliding plate (31) is installed at the bottom of the spring (30). The top of the buffer rod (32) passes through the bottom of the buffer bin (29) and extends into the buffer bin (29) and is installed at the bottom of the sliding plate (31). The bottom of the buffer rod (32) is connected to the top of the pressure gauge (23).
4. The physical therapy rotation device according to claim 3, characterized in that, It also includes two groups of contact switches (33). Both groups of contact switches (33) are signal-connected to the central control box (5). The inner sides of both groups of contact switches (33) are installed on the side walls of the buffer bin (29). The outer sides of both groups of contact switches (33) are respectively in contact with the inner sides of two groups of arc-shaped support plates (8).
5. The physical therapy rotating device according to claim 4, characterized in that, The pulling device further includes a first shield (34) which is located outside the first bevel gear (15), the first motor (16), the first rotating shaft (17) and the second bevel gear (18). The first shield (34) is mounted on the mounting plate (14). The lower right side of the first shield (34) is sleeved on the first screw sleeve (13) and is rotatably connected to the first screw sleeve (13). A second shield (35) is arranged outside the first spur gear (27) and the second spur gear (28). The second shield (35) is sleeved outside the rotating disc (6) and is rotatably connected to the rotating disc (6). The top of the second shield (35) is mounted on the moving bracket (4).
6. The physical therapy rotating device according to claim 5, characterized in that, The adjusting device further includes a guide rail (36), a slider (37) and a stabilizing plate (38). The guide rail (36) is vertically mounted on the left side of the inner wall of the cavity. The slider (37) is slidably mounted on the guide rail (36). The stabilizing plate (38) is mounted on the slider (37). The bottom of the second lead screw (20) is rotatably mounted on the stabilizing plate (38).
7. A physiotherapy rotation device according to claim 6, characterized in that, It further includes two groups of telescopic rods (39). The lower sides of the two groups of telescopic rods (39) are respectively rotatably mounted on the two groups of arc-shaped support plates (8). The upper sides of the two groups of telescopic rods (39) are rotatably mounted on the rotating disc (6).
Citation Information
Patent Citations
Massage physiotherapy equipment
CN114073819A