Angle-adjustable orthopedics bone-setting fixing frame
By designing an angle-adjustable orthopedic fixator, and utilizing a multi-fixator, sliding rail, and telescopic rod structure, the problem of insufficient comfort and flexibility of existing orthopedic fixators is solved. This enables multi-angle fixation and convenient movement, improving treatment efficiency and patient comfort.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- GANSU PROVINCIAL HOSPITAL OF TRADITIONAL CHINESE MEDICINE
- Filing Date
- 2024-12-20
- Publication Date
- 2026-04-21
AI Technical Summary
Existing orthopedic fixators have drawbacks when used to fix patients with fractures or dislocations, including poor comfort, difficulty in adjusting posture flexibly, low reduction efficiency, and significant surgical trauma.
An angle-adjustable orthopedic fixation frame was designed, which adopts a combination structure of multiple fixation frames, slide rails and telescopic rods, combined with an open pure mechanical structure and casters, to achieve multi-angle fixation and convenient movement. A level is provided to ensure the stability and comfort of the device.
It improves the ease of patient posture adjustment, increases the practicality and adaptability of the fixation frame, reduces the workload of medical staff, and improves treatment efficiency and patient comfort.
Smart Images

Figure CN224141143U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of medical device technology, specifically an angle-adjustable orthopedic bone-setting fixation frame. Background Technology
[0002] Orthopedics, in traditional Chinese medicine, refers to the treatment of fractures, dislocations, and other diseases using techniques such as pushing, pulling, pressing, and kneading. It is also known as traumatology or bone injury treatment.
[0003] Fractures and dislocations of the limbs are common injuries. Currently, there are two main treatment methods: traditional manual therapy and surgery. Traditional manual therapy is typically performed by an orthopedic surgeon using manual techniques. However, orthopedic surgeons often lack sufficient force, and their techniques are characterized by poor persistence and stability. Furthermore, it requires the participation of multiple people, thus affecting the effectiveness and efficiency of the treatment.
[0004] However, surgical reduction is an invasive procedure that is more likely to cause fracture complications, which is not conducive to patient recovery. Traditional orthopedic fixation frames use a single posture, which is not comfortable and makes it inconvenient for doctors to flexibly adjust the patient's posture.
[0005] Therefore, this utility model provides an angle-adjustable orthopedic bone-setting fixation frame. Utility Model Content
[0006] In order to overcome the shortcomings of the prior art, at least one technical problem raised in the background art is solved.
[0007] The technical solution adopted by this utility model to solve its technical problem is as follows: The angle-adjustable orthopedic bone-setting fixation frame of this utility model includes a support plate, a fixing post fixed to the top of the support plate, a lumbar support plate on one side of the fixing post, and a leg support plate on the other side of the fixing post. The lumbar support plate is connected to one side of the fixing post through a second connecting shaft, and the leg support plate is connected to the other side of the fixing post through a second connecting shaft. A lumbar fixation frame is provided on the top of the lumbar support plate, and a lumbar strap is fixed to the top of the lumbar fixation frame. Two thigh fixation frames are provided on the top of the leg support plate, and a thigh strap is fixed to the top of the thigh fixation frame. Two lower leg fixation frames are provided on the top of the leg support plate, and a lower leg strap is fixed to the top of the lower leg fixation frame. The lower leg fixation frames are installed opposite to the thigh fixation frames. Through the above structure, the injured person can be fixed at more angles, increasing the comfort, practicality, and adaptability of the device.
[0008] Preferably, the lumbar fixation frame has a second slider at its bottom, which is disposed within the lumbar support plate slide rail. The thigh fixation frame has a telescopic support rod at its bottom and is connected by a first connecting shaft. The calf fixation frame has a telescopic support rod at its bottom and is connected by a first connecting shaft. The bottom of the telescopic support rod is connected to the first slider. Two first sliders are installed opposite each other within the slide rail of the lumbar support plate. The thigh fixation frame is close to the fixing post. Through the above structure, the injured person's leg can be bent and fixed at more angles, which facilitates the treatment of the injured person, reduces the time for adjusting the injured person's posture, gains more treatment time, and increases the practicality and adaptability of the device.
[0009] Preferably, the support plate is internally connected to a first threaded rotating shaft, which passes through the interior of a third slider. The outer wall of the first threaded rotating shaft and the interior of the third slider have the same texture and are in close contact. The support plate is internally connected to a second threaded rotating shaft, which passes through the interior of the third slider. The outer wall of the second threaded rotating shaft and the interior of the third slider have the same texture and are in close contact. The support plate is internally connected to a third threaded rotating shaft, which passes through the interior of the third slider. The outer wall of the third threaded rotating shaft and the interior of the third slider have the same texture and are in close contact. The support plate is internally connected to a fourth threaded rotating shaft, which passes through the interior of the third slider. The outer wall of the fourth threaded rotating shaft... The wall and the interior of the third slider have the same texture and fit tightly together. The support plate is connected to the fifth rotating shaft. The output end of the fifth rotating shaft is connected to the transmission belt. The transmission belt is connected to the output end of the first threaded rotating shaft, the output end of the third threaded rotating shaft, the output end of the fifth rotating shaft, the output end of the fourth threaded rotating shaft, and the output end of the second threaded rotating shaft. The two third sliders are on the same horizontal line. The input end of the fifth rotating shaft is fixed to a handle. Through the above structure, the load-bearing structure of the device can be fixed at more angles. The open pure mechanical structure can prevent the device from failing to rise in case of emergencies, facilitates later maintenance, and increases the practicality and adaptability of the device.
[0010] Preferably, the bottom of the support plate is fixedly connected to a bracket, and the bracket has four brackets installed in pairs opposite each other. The bottom of the bracket is fixedly connected to a base. Through the above structure, the device as a whole can be made more stable, the operating table can be raised to facilitate the treatment of the wounded, and the applicability of the device can be increased.
[0011] Preferably, the bottom of the base is fixed with casters, which are distributed at the four corners of the base. This structure allows the device to be pushed, making it easier to transfer the wounded and reducing the labor costs associated with transferring the wounded.
[0012] Preferably, a level is provided on the top of the base. Through the above structure, the device is always under monitoring, which facilitates the staff to adjust the device and keeps it level at all times, reducing the time and cost of manual inspection.
[0013] Preferably, the waist strap, calf strap, and thigh strap are made of high-elasticity Velcro. This structure makes it easier and faster to fix and remove the device on the injured person, while also providing a more comfortable experience.
[0014] The beneficial effects of this utility model are as follows:
[0015] 1. The angle-adjustable orthopedic fixation frame described in this utility model, through the cooperation of multiple fixation frames, slide rails and telescopic rods, can provide fixation support for the injured at more angles, reduce the need to adjust the injured person's posture, gain more time to treat the injured person, and increase the practicality and adaptability of the device.
[0016] 2. The angle-adjustable orthopedic fixation frame described in this utility model makes the overall balance of the device visible by adding a level, which facilitates the maintenance of the device. The addition of casters improves the mobility of the device, making it faster and more convenient to transfer the wounded. Attached Figure Description
[0017] Figure 1 This is a perspective view of the present invention.
[0018] Figure 2 This is a partial structural diagram of the support plate in this utility model.
[0019] Figure 3 This is a schematic diagram showing the cooperation relationship between the support plate and the base in this utility model.
[0020] Figure 4 A schematic diagram showing the fit between the transmission belt and the threaded rotating shaft in this utility model.
[0021] Figure 5 This is a partial structural diagram of the waist fixing bracket in this utility model.
[0022] Figure 6 This is a partial structural diagram of the thigh fixation frame in this utility model.
[0023] Figure 7 This is a partial structural diagram of the lower leg fixation bracket in this utility model.
[0024] In the diagram: 1. Support plate, 2. Waist support plate, 3. Leg support plate, 4. Lower leg fixation frame, 5. Lower leg strap, 6. Thigh strap, 7. Thigh fixation frame, 8. First slider, 9. Telescopic support rod, 10. First connecting shaft, 11. Second connecting shaft, 12. Bracket, 13. Base, 14. Waist fixation frame, 15. Waist strap, 16. Second slider, 17. Caster wheel, 18. Fixed post, 19. Level, 20. Third slider, 21. First threaded rotating shaft, 22. Second threaded rotating shaft, 23. Third threaded rotating shaft, 24. Fourth threaded rotating shaft, 25. Fifth rotating shaft, 26. Drive belt, 27. Handle. Detailed Implementation
[0025] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of the present utility model.
[0026] Specific implementation examples are given below.
[0027] like Figures 1 to 6 As shown in the embodiment of this utility model, the angle-adjustable orthopedic fixation frame includes a support plate 1. A fixation post 18 is fixedly connected to the top of the support plate 1. A lumbar support plate 2 is provided on one side of the fixation post 18, and a leg support plate 3 is provided on the other side of the fixation post 18. The lumbar support plate 2 is connected to one side of the fixation post 18 via a second connecting shaft 11, and the leg support plate 3 is connected to the other side of the fixation post 18 via a second connecting shaft 11. A lumbar fixation frame 14 is provided on the top of the lumbar support plate 2, and a lumbar strap 15 is fixedly connected to the top of the lumbar fixation frame 14. Two thigh fixation frames 7 are provided on the top of the leg support plate 3, and a thigh strap 6 is fixedly connected to the top of each thigh fixation frame 7. A calf fixation frame 4 is provided on the top of the leg support plate 3. Two lower leg fixation frames 4 are provided. The lower leg fixation frames 4 are fixed to the top of the lower leg fixation frames 4 and the lower leg fixation frames 7 are arranged correspondingly. In operation, the injured person is placed inside the arc of the waist fixation frame 14 and the waist strap 15 is tightened to fix the injured person's waist. The injured person's thigh is placed inside the arc of the thigh fixation frame 7 and the thigh strap 6 is tightened to fix the injured person's thigh. The injured person's lower leg is placed inside the arc of the lower leg fixation frame 4 and the lower leg strap 5 is tightened to fix the injured person's lower leg. Through the cooperation of the fixing post 18 and the first connecting shaft 10, the waist support plate 2 and the leg support plate 3 can be lifted separately, so that the injured person can sit, lie down or raise their legs. Through the above structure, the injured person can be fixed at more angles, increasing the comfort, practicality and adaptability of the device.
[0028] like Figure 1 , Figure 6 and Figure 7 As shown, the lumbar support bracket 14 has a second slider 16 at its bottom, which is located within the slide rail of the lumbar support plate 2. The thigh support bracket 7 has a telescopic support rod 9 at its bottom, connected by a first connecting shaft 10. The calf support bracket 4 also has a telescopic support rod 9 at its bottom, connected by a first connecting shaft 10. The bottom of the telescopic support rod 9 is connected to a first slider 8. Two first sliders 8 are installed opposite each other within the slide rail of the lumbar support plate 2. The thigh support bracket 7 is close to the fixing post 18. During operation, the second slider 16 is positioned within the slide rail of the lumbar support plate 2, allowing it to slide freely within the slide rail. The bottom of the lumbar support bracket 14 is connected to the second slider 16, allowing the lumbar support bracket 14 to slide freely on the top of the lumbar support plate 2 in conjunction with the second slider 16. The first slider 8 can slide freely within the slide rail of the leg support plate 3. The telescopic support rod 9 can raise the height of the thigh support bracket 7. The telescopic support rod 9, in conjunction with the first connecting shaft 10, fixes the thigh fixation frame 7 to the top of the telescopic support rod 9. The top of the telescopic support rod 9 has a triangular design. The telescopic support rod 9, in conjunction with the first connecting shaft 10, allows the thigh fixation frame 7 to tilt. The telescopic support rod 9 can raise the height of the lower leg fixation frame 4. The telescopic support rod 9, in conjunction with the first connecting shaft 10, fixes the lower leg fixation frame 4 to the top of the telescopic support rod 9. The top of the telescopic support rod 9 has a triangular design. The telescopic support rod 9, in conjunction with the first connecting shaft 10, allows the lower leg fixation frame 4 to tilt. By raising the telescopic support rod 9, tilting the thigh fixation frame 7, and tilting the lower leg fixation frame 4, the injured person's leg is fixed in a right-angle flexion. Through the above structure, the injured person's leg can be fixed in a more flexion angle, which facilitates the treatment of the injured person, reduces the time for adjusting the injured person's posture, gains more treatment time, and increases the practicality and adaptability of the device.
[0029] like Figure 1 and Figure 4As shown, a first threaded rotating shaft 21 is connected inside the support plate 1. The first threaded rotating shaft 21 passes through the interior of the third slider 20. The outer wall of the first threaded rotating shaft 21 and the interior of the third slider 20 are provided with the same texture and fit tightly together. A second threaded rotating shaft 22 is connected inside the support plate 1. The second threaded rotating shaft 22 passes through the interior of the third slider 20. The outer wall of the second threaded rotating shaft 22 and the interior of the third slider 20 are provided with the same texture and fit tightly together. A third threaded rotating shaft 23 is connected inside the support plate 1. The third threaded rotating shaft 23 passes through the interior of the third slider 20. The outer wall of the third threaded rotating shaft 23 and the interior of the third slider 20 are provided with the same texture and fit tightly together. A fourth threaded rotating shaft 24 is connected inside the support plate 1. The fourth threaded rotating shaft 24 passes through... The third slider 20 is internally connected, and the outer wall of the fourth threaded rotating shaft 24 is closely fitted with the third slider 20 by having the same texture. The support plate 1 internally connects to the fifth rotating shaft 25. The output end of the fifth rotating shaft 25 is connected to a transmission belt 26, which is connected to the output end of the first threaded rotating shaft 21, the output end of the third threaded rotating shaft 23, and the output end of the fifth rotating shaft 25. The transmission belt 26 is connected to the output end of the fourth threaded rotating shaft 24 and the output end of the second threaded rotating shaft 22. The two third sliders 20 are on the same horizontal line. The input end of the fifth rotating shaft 25 is fixedly connected to a handle 27. During operation, rotating the handle 27 clockwise causes the fifth rotating shaft 25 to rotate. The fifth rotating shaft 25 drives the transmission belt 26 to rotate, which in turn drives the first threaded rotating shaft 21 to rotate. The outer wall of the first threaded rotating shaft 21 has the same texture as the interior of the third slider 20. Rotating the first threaded rotating shaft 21 pushes the third slider 20 forward. The top of the third slider 20 has a triangular design that supports the waist support plate 2. The fifth rotating shaft 25 drives the transmission belt 26 to rotate, which in turn drives the second threaded rotating shaft 22 to rotate. The outer wall of the second threaded rotating shaft 22 has the same texture as the interior of the third slider 20. Rotating the first threaded rotating shaft 21 pushes the third slider 20 forward. The top of the third slider 20 has a triangular design that supports the waist support plate 2. Rotating the handle 27 counterclockwise will move the third slider 20 in the opposite direction and move the waist support plate 2. 2. Reset: The above-mentioned structure is arranged as a set at the bottom of the waist support plate 2. Rotating the handle 27 clockwise causes the fifth rotating shaft 25 to rotate, which in turn drives the transmission belt 26 to rotate. The transmission belt 26 then drives the third threaded rotating shaft 23 to rotate. The outer wall of the third threaded rotating shaft 23 has the same texture as the interior of the third slider 20. Rotating the third threaded rotating shaft 23 pushes the third slider 20 forward. The top of the third slider 20 has a triangular design that supports the waist support plate 2. The fifth rotating shaft 25 drives the transmission belt 26 to rotate, which in turn drives the fourth threaded rotating shaft 24 to rotate. The outer wall of the fourth threaded rotating shaft 24 has the same texture as the interior of the third slider 20. Rotating the fourth threaded rotating shaft 24 pushes the third slider 20 forward.The third slider 20 has a triangular design at its top to lift the leg support plate 3. Rotating the handle 27 counterclockwise moves the third slider 20 in the opposite direction, resetting the leg support plate 3. This structure, arranged as a set, is located at the bottom of the leg support plate 3. This structure allows for more angles of fixation on the device's load-bearing structure. The open, purely mechanical structure prevents the device from failing to rise in unexpected situations, facilitating later maintenance and increasing the device's practicality and adaptability.
[0030] like Figures 1 to 3 As shown, the bottom of the support plate 1 is fixed to the bracket 12, and the bracket 12 has four brackets installed in pairs. The bottom of the bracket 12 is fixed to the base 13. When working, the bottom of the support plate 1 is fixed to the bracket 12, and the bottom of the bracket 12 is fixed to the base 13. The base 13 provides support for the bracket 12, and the bracket 12 provides support for the support plate 1. Through the above structure, the device can be made more stable as a whole, the operating table can be raised to facilitate the treatment of the wounded, and the applicability of the device can be increased.
[0031] like Figures 1 to 3 As shown, the bottom of the base 13 is equipped with casters 17, which are distributed at the four corners of the base 13. During operation, the casters 17 are fixed to the bottom of the base 13 and distributed at the four corners of the base 13. Through the above structure, the device can be pushed, making it more convenient to transfer the wounded and reducing the labor cost of transferring the wounded.
[0032] like Figure 1 and Figure 3 As shown, a level 19 is provided on the top of the base 13. During operation, the level 19 monitors the level of the device at all times. Through the above structure, the device is always under monitoring, which makes it convenient for staff to debug the device and keep it level at all times, reducing manual inspection time and costs.
[0033] like Figure 1 and Figures 5 to 7 As shown, the waist strap 15, calf strap 5, and thigh strap 6 are made of high-elasticity Velcro, which can more securely fix the injured person during work and is easy to remove. At the same time, the high elasticity will also make the injured person more comfortable. Through the above structure, the device can fix and remove the injured person more conveniently and quickly, and the experience is more comfortable.
[0034] During operation, the injured person is placed inside the arc of the lumbar fixation frame 14, and the lumbar strap 15 is tightened to secure the injured person's waist. The injured person's thigh is placed inside the arc of the thigh fixation frame 7, and the thigh strap 6 is tightened to secure the injured person's thigh. The injured person's lower leg is placed inside the arc of the lower leg fixation frame 4, and the lower leg strap 5 is tightened to secure the injured person's lower leg. Through the cooperation of the fixing post 18 and the first connecting shaft 10, the lumbar support plate 2 and the leg support plate 3 are lifted separately, allowing the injured person to sit, lie down, or raise their legs. The second slider 16 is set in the slide rail of the lumbar support plate 2, allowing the second slider 16 to slide freely within the slide rail of the lumbar support plate 2. The bottom of the lumbar fixation frame 14 is connected to the second slider 16, allowing the lumbar fixation frame 14 to slide freely on the top of the lumbar support plate 2 in conjunction with the second slider 16. The first slider 8 can slide freely within the slide rail provided on the leg support plate 3. The telescopic support rod 9 can raise the height of the thigh fixation frame 7. The telescopic support rod 9, in conjunction with the first connecting shaft 10, fixes the thigh fixation frame 7 to the top of the telescopic support rod 9. The top of the telescopic support rod 9 has a triangular design. The telescopic support rod 9, in conjunction with the first connecting shaft 10, allows the thigh fixation frame 7 to tilt. The telescopic support rod 9 can also raise the height of the calf fixation frame 4. The telescopic support rod 9, in conjunction with the first connecting shaft 10, fixes the calf fixation frame 4 to the top of the telescopic support rod 9. The top of the telescopic support rod 9 has a triangular design. The telescopic support rod 9, in conjunction with the first connecting shaft 10, allows the calf fixation frame 4 to tilt. By raising the telescopic support rod 9, the thigh fixation frame 7 and the calf fixation frame 4 are tilted. The injured person's leg is fixed in a right-angled flexion. Turning handle 27 clockwise causes the fifth rotating shaft 25 to rotate, which in turn drives the transmission belt 26. The transmission belt 26 then drives the first threaded rotating shaft 21. The outer wall of the first threaded rotating shaft 21 has the same texture as the interior of the third slider 20. Rotating the first threaded rotating shaft 21 pushes the third slider 20 forward. The top of the third slider 20 has a triangular design that supports the waist support plate 2. The fifth rotating shaft 25 then drives the transmission belt 26 to rotate, which in turn drives the second threaded rotating shaft 22. The outer wall of the second threaded rotating shaft 22 has the same texture as the interior of the third slider 20. Rotating the first threaded rotating shaft 21 pushes the third slider 20 forward. The top of slider 20 has a triangular design that supports the waist support plate 2. Rotating handle 27 counterclockwise moves the third slider 20 in the opposite direction, resetting the waist support plate 2. This structure is arranged as a set at the bottom of the waist support plate 2. Rotating handle 27 clockwise rotates the fifth rotating shaft 25, which in turn rotates the transmission belt 26. The transmission belt 26 then rotates the third threaded rotating shaft 23. The outer wall of the third threaded rotating shaft 23 has the same texture as the interior of the third slider 20. Rotating the third threaded rotating shaft 23 pushes the third slider 20 forward. The triangular design at the top of the third slider 20 supports the waist support plate 2. The fifth rotating shaft 25 rotates the transmission belt 26, which in turn rotates the fourth threaded rotating shaft 24.The outer wall of the fourth threaded rotating shaft 24 and the interior of the third slider 20 have the same texture. Rotating the fourth threaded rotating shaft 24 pushes the third slider 20 forward. The top of the third slider 20 has a triangular design that lifts the leg support plate 3. Rotating the handle 27 counterclockwise can move the third slider 20 in the opposite direction and reset the leg support plate 3. The above structure is set at the bottom of the leg support plate 3. The support plate 1 is fixedly connected to the bottom of the bracket 12, and the bracket 12 is fixedly connected to the bottom of the base 13. The base 13 provides support for the bracket 12, and the bracket 12 provides support for the support plate 1. The base 13 is fixedly connected to omnidirectional wheels 17 at its bottom, with the wheels 17 distributed at the four corners of the base 13. A level 19 constantly monitors the levelness of the device, providing a more secure fixation for the injured person and facilitating removal. The high elasticity also makes the injured person more comfortable. Although embodiments of this utility model have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions, and alterations can be made to these embodiments without departing from the principles and spirit of this utility model, the scope of which is defined by the appended claims and their equivalents.
Claims
1. An angle-adjustable orthopedic bone-setting fixation frame, characterized in that: The utility model provides a kind of support plate (1);The support plate (1) top is fixed with fixed pile (18);The fixed pile (18) one side is equipped with waist supporting plate (2);The fixed pile (18) other side is equipped with leg supporting plate (3);The waist supporting plate (2) is connected in fixed pile (18) one side by second connecting shaft (11);The leg supporting plate (3) is connected in fixed pile (18) other side by second connecting shaft (11);The waist supporting plate (2) top is equipped with waist fixed frame (14);The waist fixed frame (14) top is fixed with waist bandage (15);The leg supporting plate (3) top is equipped with thigh fixed frame (7);The thigh fixed frame (7) is equipped with two;The thigh fixed frame (7) top is fixed with thigh bandage (6);The leg supporting plate (3) top is equipped with calf fixed frame (4);The calf fixed frame (4) is equipped with two;The calf fixed frame (4) top is fixed with calf bandage (5);The calf fixed frame (4) and thigh fixed frame (7) are opposite installation.
2. The angle adjustable orthopedic reduction fixation frame according to claim 1, wherein: The waist fixed frame (14) bottom is equipped with second sliding block (16);The second sliding block (16) is set in waist supporting plate (2) slide rail;The thigh fixed frame (7) bottom is equipped with telescopic support rod (9);The thigh fixed frame (7) and telescopic support rod (9) are connected by first connecting shaft (10);The telescopic support rod (9) bottom is connected first sliding block (8);The calf fixed frame (4) bottom is equipped with telescopic support rod (9);The first sliding block (8) is installed in the slide rail of waist supporting plate (2) and is opposite installation two;The thigh fixed frame (7) is close to fixed pile (18).
3. The angle adjustable orthopedic reduction fixation frame according to claim 1, wherein: The support plate (1) is internally connected with a first threaded rotating shaft (21); the first threaded rotating shaft (21) is connected through the inside of a third sliding block (20); the same texture is closely attached on the outer wall of the first threaded rotating shaft (21) and the inside of the third sliding block (20); the support plate (1) is internally connected with a second threaded rotating shaft (22); the second threaded rotating shaft (22) is connected through the inside of the third sliding block (20); the same texture is closely attached on the outer wall of the second threaded rotating shaft (22) and the inside of the third sliding block (20); the support plate (1) is internally connected with a fifth rotating shaft (25); the fifth rotating shaft (25) is connected with a transmission belt (26) at the output end; the transmission belt (26) is connected with the output end of the first threaded rotating shaft (21); the transmission belt (26) is connected with the output end of the second threaded rotating shaft (22); the two third sliding blocks (20) are on the same horizontal line; the support plate (1) is internally connected with a third threaded rotating shaft (23); the third threaded rotating shaft (23) is connected through the inside of the third sliding block (20); the same texture is closely attached on the outer wall of the third threaded rotating shaft (23) and the inside of the third sliding block (20); the support plate (1) is internally connected with a fourth threaded rotating shaft (24); the fourth threaded rotating shaft (24) is connected through the inside of the third sliding block (20); the same texture is closely attached on the outer wall of the fourth threaded rotating shaft (24) and the inside of the third sliding block (20); the transmission belt (26) is connected with the output end of the third threaded rotating shaft (23); the transmission belt (26) is connected with the output end of the fourth threaded rotating shaft (24); the fifth rotating shaft (25) is fixedly connected with a handle (27) at the input end.
4. The angle adjustable orthopedic reduction fixation frame according to claim 1, wherein: The support plate (1) is fixedly connected with a support (12) at the bottom; the support (12) is provided with four supports installed oppositely in pairs; the support (12) is fixedly connected with a base (13) at the bottom.
5. The angle adjustable orthopedic reduction fixation frame according to claim 4, wherein: The base (13) is fixedly connected with universal wheels (17) at the bottom; the universal wheels (17) are distributed at the four corners of the base (13).
6. The angle adjustable orthopedic reduction fixation frame according to claim 4, wherein: The base (13) is provided with a level (19) at the top.
7. The angle adjustable orthopedic reduction fixation frame according to claim 1, wherein: The waist belt (15), the calf belt (5) and the thigh belt (6) adopt high-elasticity magic tapes.