Gymnastic training equipment with high safety
By designing a support and adjustment structure and a stretching adjustment structure, the safety and height adjustment issues of gymnastics training equipment were solved, achieving a stable and flexible training effect.
Patent Information
- Application Number
- CN202511555369.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-29
- Publication Date
- 2025-12-19
AI Technical Summary
Existing gymnastics training equipment is not safe to use and the rope height is not easy to adjust.
A gymnastics training device was designed, which includes a support and adjustment structure and a tension adjustment structure. The support and adjustment structure provides multi-point tension support, and the height of the suspension rope is adjusted by using an electro-hydraulic telescopic rod to achieve symmetrical adjustment of the rings.
It improves the safety and stability of the equipment, facilitates the adjustment of the rope height, and meets the training needs of different users.
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Figure CN121155084A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of gymnastics training equipment, in particular to a gymnastics training equipment with high safety. BACKGROUND
[0002] Physical exercise is one of the effective ways for modern people to enhance physical fitness, prevent diseases, regulate psychology, entertain body and mind, and adapt to society, and has a positive role in modern social life. With the development of national fitness, many people use morning and evening for physical exercise. Due to the limitation of time and place, this desire cannot be met. At present, although there are many fitness equipment, there are still relatively few upper limb exercise equipment.
[0003] According to the Chinese patent publication No. CN116617043A, a passive training mechanism of a ring of rehabilitation equipment is disclosed, which comprises a ring, a rope, a pulley, a fixed seat and a movable plate. Two rings are horizontally hung at the bottom of the fixed seat, two movable plates are respectively installed on the left and right sides of the fixed seat, the pulleys are respectively arranged on the left and right outer sides of the fixed seat, and the pulleys are respectively assembled on the movable plates on the left and right sides of the fixed seat. A rope is connected to one of the rings hung at the bottom of the fixed seat, and the rope passes through the pulleys, the pulleys, the pulleys and the pulleys in turn to connect the other ring hung at the bottom of the fixed seat to form a traction rope structure. In the present application, the rings are lifted up and down by the machine in a passive manner; thereby realizing passive training of the rings, relaxing muscles and ligaments, and recovering and maintaining joint activity. Some people with difficulty in walking and hemiplegia can perform limb rehabilitation training by themselves. The whole device is simple and practical, and has wide application range.
[0004] At present, the existing gymnastics training equipment and the above-mentioned case are inconvenient to improve the safety performance during use, and it is inconvenient to adjust the height of the rope body. Therefore, improvements are made for the above problems. SUMMARY
[0005] In view of the problems in the prior art, the present application provides a gymnastics training equipment with high safety.
[0006] The technical scheme adopted by the present application to solve its technical problems is: a gymnastics training equipment with high safety, comprising a support matching structure and a stretching adjustment structure, the stretching adjustment structure is connected to the top of the support matching structure, and the stretching adjustment structure is used for height adjustment by lifting; The support matching structure is used for supporting work, and the support matching structure supports the support cross bar and the reinforcing frame through the support stand, and the first lifting steel wire rope, the second lifting steel wire rope, the third lifting steel wire rope and the fourth lifting steel wire rope are used for multi-point stretching and supporting tension of the support cross bar; The tension adjustment structure is used for hand training. The second electric hydraulic telescopic rod controls the movement of the second lifting adjustment seat and the second tension wheel, and controls the movement of the first lifting adjustment seat and the first tension wheel to make symmetrical adjustments to the suspension rope, thereby changing the height position of the suspension ring.
[0007] Specifically, the supporting structure includes a supporting crossbar, a connecting side bar, a connecting seat, a reinforcing frame, a diagonal brace, a fixed hinge block, a supporting upright, a supporting bearing seat, and a threaded screwing shaft. The threaded screwing shaft is threadedly connected to the supporting bearing seat. The supporting upright is fixedly connected to the supporting upright. The fixed hinge block is fixedly connected to the supporting upright. The reinforcing frame is fixedly connected to the upper end of the fixed hinge block. The supporting crossbar is fixedly connected to the upper end of the reinforcing frame. The connecting side bar is fixedly connected to the side end of the supporting crossbar.
[0008] Specifically, the lower end of the supporting crossbar is fixedly connected to a docking seat, the lower end of the docking seat is connected to a diagonal brace, and the lower end of the diagonal brace is fixedly connected to a fixing hinge block.
[0009] Specifically, the supporting structure further includes a first lifting wire rope, a first fastening pin seat, a second lifting wire rope, a third lifting wire rope, a second fastening pin seat, and a fourth lifting wire rope. The first lifting wire rope is tensioned and connected to the supporting crossbar, with its lower end tensioned to the first fastening pin seat. The fourth lifting wire rope is tensioned and connected to the fixed hinge block, with its lower end tensioned to the second fastening pin seat. The second and third lifting wire ropes connect the first and fourth lifting wire ropes, enabling the first and fourth lifting wire ropes to be pulled together. The multi-point connection of the rope, through the structural design of the support and cooperation structure, facilitates stable support work. The cooperation bearing seat is fixed to the ground by the threaded screw shaft. The first fastening pin seat and the second fastening pin seat are fixed to the ground. The upper end of the support pole is fixedly connected to the support crossbar through the reinforcing frame and the diagonal brace. The support crossbar is connected to the connecting side bar, which facilitates the guiding connection of the hoisting rope. A second lifting steel wire rope and a third lifting steel wire rope are provided between the first lifting steel wire rope and the fourth lifting steel wire rope, so that the first lifting steel wire rope and the fourth lifting steel wire rope are supported and fixed at multiple points, which improves the tension bearing capacity of the support crossbar.
[0010] Specifically, the tension adjustment structure includes a suspension rope, a lifting ring, and an adjustment component. The suspension rope is wound around the adjustment component, and a lifting ring is fixedly connected to the bottom end of the suspension rope.
[0011] Specifically, the control component includes a rotating wheel, a fixed docking seat, a support base, a first lifting adjustment seat, a first tensioning wheel, a first electro-hydraulic telescopic rod, a first mating hinge block, a mating crossbar, a second mating hinge block, a second electro-hydraulic telescopic rod, a second lifting adjustment seat, and a second tensioning wheel. The side end of the support base is fixedly connected to the fixed docking seat, and the rotating wheel is rotatably connected to the fixed docking seat.
[0012] Specifically, a first lifting adjustment seat and a first tensioning wheel are slidably connected to the support base block, and the first tensioning wheel is rotatably connected to the first lifting adjustment seat. A first electro-hydraulic telescopic rod is hinged to the first tensioning wheel, and the side end of the first electro-hydraulic telescopic rod is hinged to a first mating hinge block. A mating crossbar is fixedly connected to the side end of the first mating hinge block, and a second mating hinge block is fixedly connected to the mating crossbar. A second electro-hydraulic telescopic rod is hinged to the upper end of the second mating hinge block, and a second lifting adjustment seat is hinged to the second electro-hydraulic telescopic rod. The lower end of the second lifting adjustment seat is rotatably connected to the second tensioning wheel. Through the structural design of the tension adjustment structure, height adjustment is convenient. The suspension rope is guided to the rotating wheel through the second tensioning wheel and the first tensioning wheel, and then guided to the support crossbar through the connecting side rod. The second electro-hydraulic telescopic rod moves in the opposite direction to the first electro-hydraulic telescopic rod, thereby realizing the tension control of the suspension rope and changing the length of the upper suspension rope. Users can exercise using the suspension rope and rings, which is convenient for gymnastics training.
[0013] Specifically, the first and second tension pulleys are connected to the suspension rope, with the second tension pulley connected to the rear end of the rope and the first tension pulley located at the front end. The first and second electro-hydraulic telescopic rods are controlled to move in opposite directions. The suspension rope is guided to the connecting side rod via a rotating wheel, and the rope passes through the connecting side rod and connects to the lower end of the support crossbar. The lower end of the rope is fixed to a lifting ring for lifting. The rope passes through the connecting side rod and the support crossbar, and a lifting ring is connected to the bottom of the rope for easy lifting training. The rope is guided by the second and first tension pulleys, and then guided to the connecting side rod and the support crossbar. The second electro-hydraulic telescopic rod can control the extension and retraction adjustment, changing the position of the second tension pulley and the second lifting adjustment seat. The first electro-hydraulic telescopic rod extends and retracts, changing the position of the first lifting adjustment seat and the first tensioning wheel. The first and second tensioning wheels adjust the tension of the hoisting rope. Under the control of the first and second electro-hydraulic telescopic rods, the first and second tensioning wheels move in opposite directions, controlling the length of the hoisting rope and changing the height of the hoisting rope and the lifting ring. The second mating hinge block and the second electro-hydraulic telescopic rod can be fastened with screws to ensure the stability of the extension and retraction positions of the second mating hinge block and the second electro-hydraulic telescopic rod. The first electro-hydraulic telescopic rod can be rotated for adjustment. The lower end of the first lifting adjustment seat slides against the support base block. The support base block has a groove for adjusting the first lifting adjustment seat, thus facilitating the adjustment of the first tensioning wheel.
[0014] Specifically, the first and second fastening pin seats are fixed to the ground, the mating bearing seat is fixed to the ground by a threaded screw shaft, and the reinforcing frame and the diagonal brace are double-rod designs to support the crossbar.
[0015] The beneficial effects of this invention are: I. This invention facilitates stable support through a support and cooperation structure. The supporting bearing seat is fixed to the ground via a threaded screw shaft, and the first and second fastening pin seats are also fixed to the ground. The upper end of the support column is fixedly connected to the support crossbar via a reinforcing frame and a diagonal brace. The support crossbar is also connected to the connecting side bar for easy guidance and connection of the lifting rope. A second and third lifting wire rope are provided between the first and fourth lifting wire ropes, providing multi-point support and fixation for the first and fourth lifting wire ropes, thereby improving the tension bearing capacity of the support crossbar.
[0016] Second, the present invention facilitates height adjustment through the structural design of the tension adjustment structure. The suspension rope is guided to the rotating wheel through the second tension wheel and the first tension wheel, and then guided to the supporting crossbar through the connecting side rod. The second electro-hydraulic telescopic rod moves in the opposite direction to the first electro-hydraulic telescopic rod, thereby realizing the tension control of the suspension rope and changing the length of the upper suspension rope. Users can exercise through the suspension rope and the rings, which is convenient for gymnastics training. Attached Figure Description
[0017] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0018] Figure 1 This is a three-dimensional structural diagram of the main body from a frontal perspective in this invention; Figure 2 This is a side view three-dimensional structural diagram of the main body in this invention; Figure 3 This is a perspective view of the supporting and mating structure in this invention; Figure 4 This is a three-dimensional side view of the supporting and mating structure in this invention; Figure 5 This is a perspective view of the stretching adjustment structure in this invention; Figure 6 This is a three-dimensional side view of the stretching adjustment structure in this invention; Figure 7 This is a perspective view of the control component in this invention; Figure 8 This is a three-dimensional side view of the control component in this invention.
[0019] In the diagram: 1-Supporting structure, 2-Tension adjustment structure, 3-Supporting crossbar, 4-Connecting side bar, 5-Connecting seat, 6-Reinforcing frame, 7-Diagonal brace, 8-Fixing hinge block, 9-Supporting upright, 10-Matching bearing seat, 11-Threaded screw shaft, 12-First lifting wire rope, 13-First fastening pin seat, 14-Second lifting wire rope, 15-Third lifting wire rope, 16-Second fastening pin seat, 17-Fourth lifting wire rope, 18-Lifting rope, 19-Lifting ring, 20-Adjusting component, 21-Rotating wheel, 22-Fixing docking seat, 23-Supporting base block, 24-First lifting adjustment seat, 25-First tensioning wheel, 26-First electro-hydraulic telescopic rod, 27-First mating hinge block, 28-Matching crossbar, 29-Second mating hinge block, 30-Second electro-hydraulic telescopic rod, 31-Second lifting adjustment seat, 32-Second tensioning wheel. Detailed Implementation
[0020] To enable those skilled in the art to better understand the present application, the technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present application, and not all embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative effort should fall within the scope of protection of the present application.
[0021] The invention will be further described below with reference to the accompanying drawings.
[0022] Example like Figures 1-8 As shown, the present invention provides a highly safe gymnastics training equipment, including a support structure 1 and a stretching adjustment structure 2. The support structure 1 is connected to the upper part of the stretching adjustment structure 2, and the lifting height is adjusted by the stretching adjustment structure 2. The support structure 1 is used for support work. It works with the bearing seat 10 to support the horizontal bar 3 and the reinforcing frame 6 via the support pole 9. The first lifting wire rope 12, the second lifting wire rope 14, the third lifting wire rope 15, and the fourth lifting wire rope 17 are tensioned at multiple points to support the horizontal bar 3. The structure of the support structure 1 facilitates stable support work. The bearing seat 10 is fixed to the ground via a threaded screw shaft 11, and the first fastening pin seat 1... 3. The second fastening pin seat 16 is fixed to the ground. The upper end of the support pole 9 is fixedly connected to the support crossbar 3 through the reinforcing frame 6 and the diagonal brace 7. The support crossbar 3 is connected to the connecting side bar 4 to facilitate the guiding connection of the lifting rope 18. The second lifting wire rope 14 and the third lifting wire rope 15 are provided between the first lifting wire rope 12 and the fourth lifting wire rope 17, so that the first lifting wire rope 12 and the fourth lifting wire rope 17 are supported and fixed at multiple points, thereby improving the tension bearing capacity of the support crossbar 3. The tension adjustment structure 2 is used for hand training. The second electro-hydraulic telescopic rod 30 controls the movement of the second lifting adjustment seat 31 and the second tension wheel 32, and 36 controls the movement of the first lifting adjustment seat 24 and the first tension wheel 25 to symmetrically adjust the suspension rope 18, thereby changing the height position of the hanging ring 19. The structure of the tension adjustment structure 2 facilitates height adjustment. The suspension rope 18 is guided to the rotating wheel 21 through the second tension wheel 32 and the first tension wheel 25, and then guided to the support crossbar 3 through the connecting side rod 4. The second electro-hydraulic telescopic rod 30 and the first electro-hydraulic telescopic rod 26 move in opposite directions to achieve tension control of the suspension rope 18 and change the length of the upper suspension rope 18. Users can exercise using the suspension rope 18 and the hanging ring 19, which is convenient for gymnastics training.
[0023] The supporting structure 1 includes a supporting crossbar 3, a connecting side bar 4, a connecting seat 5, a reinforcing frame 6, a diagonal brace 7, a fixed hinge block 8, a supporting upright 9, a supporting bearing seat 10, and a threaded screwing shaft 11. The threaded screwing shaft 11 is threadedly connected to the supporting bearing seat 10. The supporting upright 9 is fixedly connected to the supporting upright 9. The fixed hinge block 8 is fixedly connected to the supporting upright 9. The reinforcing frame 6 is fixedly connected to the upper end of the fixed hinge block 8. The supporting crossbar 3 is fixedly connected to the upper end of the reinforcing frame 6. The connecting side bar 4 is fixedly connected to the side end of the supporting crossbar 3.
[0024] The lower end of the supporting crossbar 3 is fixedly connected to a connecting seat 5, the lower end of the connecting seat 5 is connected to a diagonal brace 7, and the lower end of the diagonal brace 7 is fixedly connected to a fixing hinge block 8.
[0025] The supporting structure 1 also includes a first lifting wire rope 12, a first fastening pin seat 13, a second lifting wire rope 14, a third lifting wire rope 15, a second fastening pin seat 16, and a fourth lifting wire rope 17. The first lifting wire rope 12 is tensioned and connected to the supporting crossbar 3, with its lower end tensioned to the first fastening pin seat 13. The fourth lifting wire rope 17 is tensioned and connected to the fixed hinge block 8, with its lower end tensioned to the second fastening pin seat 16. The second lifting wire rope 14 and the third lifting wire rope 15 connect the first lifting wire rope 12 and the fourth lifting wire rope 17, creating a multi-point connection between them. This fixes the first fastening pin seat 13 and the second fastening pin seat 16 to the ground. The bearing seat 10 is connected to the bearing seat via a threaded screw shaft 11. The support is fixed to the ground to facilitate the load-bearing work of the supporting crossbar 3 and the connecting side bar 4. The supporting crossbar 3 is supported by a reinforcing frame 6, the lower end of which is fixed to the supporting upright 9. The lower end of the supporting upright 9 is fixed to the cooperating bearing seat 10, which facilitates the load-bearing support work. A diagonal brace 7 is provided between the supporting crossbar 3 and the fixed hinge block 8 to improve the support and protection capacity of the supporting crossbar 3. The first lifting steel wire rope 12 and the fourth lifting steel wire rope 17 are respectively connected to the supporting crossbar 3 and the fixed hinge block 8 to control the tension of the supporting crossbar 3 and the connecting side bar 4, thereby improving the support and protection capacity of the supporting crossbar 3 and the connecting side bar 4. A second lifting steel wire rope 14 and a third lifting steel wire rope 15 are provided between the first lifting steel wire rope 12 and the fourth lifting steel wire rope 17 to improve the connection stability of the first lifting steel wire rope 12 and the fourth lifting steel wire rope 17.
[0026] The tension adjustment structure 2 includes a suspension rope 18, a lifting ring 19, and an adjustment component 20. The suspension rope 18 is wound around the adjustment component 20, and the lifting ring 19 is fixedly connected to the bottom end of the suspension rope 18.
[0027] The control component 20 includes a rotating wheel 21, a fixed docking seat 22, a support base 23, a first lifting adjustment seat 24, a first tensioning wheel 25, a first electro-hydraulic telescopic rod 26, a first mating hinge block 27, a mating crossbar 28, a second mating hinge block 29, a second electro-hydraulic telescopic rod 30, a second lifting adjustment seat 31, and a second tensioning wheel 32. The fixed docking seat 22 is fixedly connected to the side end of the support base 23, and the rotating wheel 21 is rotatably connected to the fixed docking seat 22. The suspension rope 18 passes through the connecting side rod 4 and the support crossbar 3. A hanging ring 19 is connected to the bottom of the suspension rope 18 to facilitate lifting training. The suspension rope 18 is guided by the second tensioning wheel 32 and the first tensioning wheel 25, and then guided to the connecting side rod 4 and the support crossbar 3. The second electro-hydraulic telescopic rod 30 can control the extension and retraction adjustment, changing the position of the second tensioning wheel 32 and the second lifting adjustment seat 31. The first electro-hydraulic telescopic rod 26 extends and retracts, changing the position of the first lifting adjustment seat 24 and the first tensioning wheel 25. The first tensioning wheel 25 and the second tensioning wheel 32 adjust the tension of the lifting rope 18. Under the control of the first electro-hydraulic telescopic rod 26 and the second electro-hydraulic telescopic rod 30, the first tensioning wheel 25 and the second tensioning wheel 32 move in opposite directions, controlling the length of the lifting rope 18 and changing the height of the lifting rope 18 and the lifting ring 19. The second mating hinge block 29 and the second electro-hydraulic telescopic rod 30 can be fastened with screws to ensure the stability of the extension and retraction position of the second mating hinge block 29 and the second electro-hydraulic telescopic rod 30. The first electro-hydraulic telescopic rod 26 can be rotated and adjusted. The lower end of the first lifting adjustment seat 24 slides and is limited by the support base block 23. The support base block 23 has a groove for adjusting the first lifting adjustment seat 24, thereby facilitating the adjustment of the first tensioning wheel 25.
[0028] A first lifting adjustment seat 24 and a first tensioning wheel 25 are slidably connected to the support base block 23, and the first tensioning wheel 25 is rotatably connected to the first lifting adjustment seat 24. A first electro-hydraulic telescopic rod 26 is hinged to the first tensioning wheel 25. The side end of the first electro-hydraulic telescopic rod 26 is hinged to the first mating hinge block 27. A mating crossbeam 28 is fixedly connected to the side end of the first mating hinge block 27. A second mating hinge block 29 is fixedly connected to the mating crossbeam 28. A second electro-hydraulic telescopic rod 30 is hinged to the upper end of the second mating hinge block 29. A second lifting adjustment seat 31 is hinged to the second electro-hydraulic telescopic rod 30. A second tensioning wheel 32 is rotatably connected to the lower end of the second lifting adjustment seat 31.
[0029] The first pulley 25 and the second pulley 32 are connected to the suspension rope 18, with the second pulley 32 connected to the rear end of the suspension rope 18 and the first pulley 25 located at the front end of the suspension rope 18. The first electro-hydraulic telescopic rod 26 and the second electro-hydraulic telescopic rod 30 are controlled to run in opposite directions. The suspension rope 18 is guided to the connecting side rod 4 through the rotating wheel 21, and the suspension rope 18 passes through the connecting side rod 4 and is connected to the lower end of the supporting crossbar 3. The lower end of the suspension rope 18 is fixed to the lifting ring 19 for lifting.
[0030] The first fastening pin seat 13 and the second fastening pin seat 16 are fixed to the ground. The bearing seat 10 is fixed to the ground by threaded screw shaft 11. The reinforcing frame 6 and the diagonal bracing frame 7 are double-bar designs to support the crossbar 3.
[0031] The working principle is as follows: When in use, the user fixes the first fastening pin seat 13 and the second fastening pin seat 16 to the ground, and fixes the bearing seat 10 to the ground through the threaded screw shaft 11, which facilitates the bearing work of the support crossbar 3 and the connecting side bar 4. The support crossbar 3 is supported by the reinforcing frame 6. The lower end of the reinforcing frame 6 is fixed to the support upright 9, and the lower end of the support upright 9 is fixed to the bearing seat 10, which facilitates the bearing support work. A diagonal brace 7 is provided between the support crossbar 3 and the fixed hinge block 8 to improve the support and protection of the support crossbar 3. The first lifting wire rope 12 and the fourth lifting wire rope 17 are respectively connected to the support crossbar 3 and the fixed hinge block 8 to perform tension control work on the support crossbar 3 and the connecting side bar 4, thereby improving the support and protection capacity of the support crossbar 3 and the connecting side bar 4. Furthermore, a second lifting wire rope 14 and a third lifting wire rope 15 are provided between the first lifting wire rope 12 and the fourth lifting wire rope 17, which improves the connection stability of the first lifting wire rope 12 and the fourth lifting wire rope 17. The suspension rope 18 is connected to the connecting side rod 4 and the supporting crossbar 3. A lifting ring 19 is attached to the bottom of the suspension rope 18 for easy lifting training. The suspension rope 18 is guided by the second tension pulley 32 and the first tension pulley 25, and then guided to the connecting side rod 4 and the supporting crossbar 3. The second electro-hydraulic telescopic rod 30 can control the extension and retraction, changing the position of the second tension pulley 32 and the second lifting adjustment seat 31. The first electro-hydraulic telescopic rod 26, through extension and retraction, changes the position of the first lifting adjustment seat 24 and the first tension pulley 25. The first tension pulley 25 and the second tension pulley 32 adjust the tension of the suspension rope 18. The puller 32 moves in the opposite direction under the control of the first electro-hydraulic telescopic rod 26 and the second electro-hydraulic telescopic rod 30, controlling the length of the lifting rope 18 and changing the height of the lifting rope 18 and the lifting ring 19. The second mating hinge block 29 and the second electro-hydraulic telescopic rod 30 can be fastened with screws to ensure the stability of the extension and retraction positions of the second mating hinge block 29 and the second electro-hydraulic telescopic rod 30. The first electro-hydraulic telescopic rod 26 can be rotated and adjusted. The lower end of the first lifting adjustment seat 24 slides in a limited position against the support base block 23. The support base block 23 has a groove for adjusting the first lifting adjustment seat 24, thereby facilitating the adjustment of the first puller 25 and completing the work.
[0032] Although embodiments of the invention 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 the invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A highly safe gymnastics training device, characterized in that: It includes a support structure (1) and a tension adjustment structure (2). The upper part of the support structure (1) is connected to the tension adjustment structure (2), and the lifting height is adjusted by the tension adjustment structure (2). The supporting structure (1) is used for supporting the work. It works with the bearing seat (10) to support the crossbar (3) and the reinforcing frame (6) through the supporting pole (9). The first lifting wire rope (12), the second lifting wire rope (14), the third lifting wire rope (15), and the fourth lifting wire rope (17) are stretched at multiple points to support the crossbar (3). The tension adjustment structure (2) is used for hand training. The second electric hydraulic telescopic rod (30) controls the movement of the second lifting adjustment seat (31) and the second tension wheel (32), and (36) controls the movement of the first lifting adjustment seat (24) and the first tension wheel (25) to make symmetrical adjustments to the suspension rope (18), thereby changing the height position of the hanging ring (19).
2. The high-safety gymnastics training equipment according to claim 1, characterized in that: The supporting structure (1) includes a supporting crossbar (3), a connecting side bar (4), a docking seat (5), a reinforcing frame (6), a diagonal brace (7), a fixed hinge block (8), a supporting upright (9), a supporting bearing seat (10), and a threaded screw shaft (11). The threaded screw shaft (11) is threadedly connected to the supporting bearing seat (10). The supporting upright (9) is fixedly connected to the upper end of the supporting bearing seat (10). The fixed hinge block (8) is fixedly connected to the supporting upright (9). The reinforcing frame (6) is fixedly connected to the upper end of the fixed hinge block (8). The supporting crossbar (3) is fixedly connected to the upper end of the reinforcing frame (6). The connecting side bar (4) is fixedly connected to the side end of the supporting crossbar (3).
3. The gymnastics training equipment with high safety according to claim 2, characterized in that: The lower end of the support crossbar (3) is fixedly connected to a docking seat (5), and the lower end of the docking seat (5) is connected to a diagonal brace (7). The lower end of the diagonal brace (7) is fixedly connected to a fixed hinge block (8).
4. The gymnastics training equipment with high safety according to claim 3, characterized in that: The supporting structure (1) further includes a first lifting wire rope (12), a first fastening pin seat (13), a second lifting wire rope (14), a third lifting wire rope (15), a second fastening pin seat (16), and a fourth lifting wire rope (17). The first lifting wire rope (12) is tensioned and connected to the support crossbar (3). The lower end of the first lifting wire rope (12) is tensioned and connected to the first fastening pin seat (13). The fourth lifting wire rope (17) is tensioned and connected to the fixed hinge block (8). The lower end of the fourth lifting wire rope (17) is tensioned and connected to the second fastening pin seat (16). The second lifting wire rope (14) and the third lifting wire rope (15) are connected between the first lifting wire rope (12) and the fourth lifting wire rope (17) to achieve multi-point connection of the first lifting wire rope (12) and the fourth lifting wire rope (17).
5. The gymnastics training equipment with high safety according to claim 4, characterized in that: The tension adjustment structure (2) includes a suspension rope (18), a lifting ring (19) and an adjustment component (20). The suspension rope (18) is wound around the adjustment component (20), and the lifting ring (19) is fixedly connected to the bottom end of the suspension rope (18).
6. The gymnastics training equipment with high safety according to claim 5, characterized in that: The control component (20) includes a rotating wheel (21), a fixed docking seat (22), a support base (23), a first lifting adjustment seat (24), a first tensioning wheel (25), a first electric hydraulic telescopic rod (26), a first mating hinge block (27), a mating crossbar (28), a second mating hinge block (29), a second electric hydraulic telescopic rod (30), a second lifting adjustment seat (31), and a second tensioning wheel (32). The side end of the support base (23) is fixedly connected to the fixed docking seat (22), and the rotating wheel (21) is rotatably connected to the fixed docking seat (22).
7. The gymnastics training equipment with high safety according to claim 6, characterized in that: The support base (23) is slidably connected to a first lifting adjustment seat (24) and a first tensioning wheel (25), and the first tensioning wheel (25) is rotatably connected to the first lifting adjustment seat (24). A first electric hydraulic telescopic rod (26) is hinged on the first tensioning wheel (25). The side end of the first electric hydraulic telescopic rod (26) is hinged to a first mating hinge block (27). A mating crossbeam (28) is fixedly connected to the side end of the first mating hinge block (27). A second mating hinge block (29) is fixedly connected to the mating crossbeam (28). A second electric hydraulic telescopic rod (30) is hinged to the upper end of the second mating hinge block (29). A second lifting adjustment seat (31) is hinged to the second electric hydraulic telescopic rod (30). A second tensioning wheel (32) is rotatably connected to the lower end of the second lifting adjustment seat (31).
8. The gymnastics training equipment with high safety according to claim 7, characterized in that: The first tension pulley (25) and the second tension pulley (32) are connected to the hoisting rope (18), and the second tension pulley (32) is connected to the rear end of the hoisting rope (18). The first tension pulley (25) is located at the front end of the hoisting rope (18). The first electric hydraulic telescopic rod (26) and the second electric hydraulic telescopic rod (30) are controlled to run in opposite directions. The hoisting rope (18) is guided to the connecting side rod (4) through the rotating wheel (21), and the hoisting rope (18) passes through the connecting side rod (4) and is connected to the lower end of the supporting crossbar (3). The lower end of the hoisting rope (18) is fixed to the lifting ring (19) for lifting.
9. The gymnastics training equipment with high safety according to claim 8, characterized in that: The first fastening pin seat (13) and the second fastening pin seat (16) are fixed to the ground. The mating bearing seat (10) is fixed to the ground through the threaded screw shaft (11). The reinforcing frame (6) and the inclined frame (7) are double-rod designs to support the crossbar (3).
Citation Information
Patent Citations
Passive training mechanism of lifting ring of rehabilitation equipment
CN116617043A