Kicking height training equipment
The kick training device addresses inefficiencies and safety issues by offering adjustable height and automated wood board supply with impact protection, enhancing training efficiency and safety.
Patent Information
- Application Number
- CN202510464800.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-14
- Publication Date
- 2025-07-15
AI Technical Summary
The existing kick-up training equipment cannot adjust the height and is suitable for trainers of different heights. The wooden board needs to be replaced frequently during the training process, resulting in difficulty in using and inefficient training.
A kick-high training equipment including a counterweight base plate, a feeding box and a buffer kick pad is designed. The automatic cutting and height adjustment of the wooden board is achieved through a motor-driven transverse screw and hydraulic system, and combined with the buffer structure to protect the trainer, improving training efficiency and safety.
Automatic cutting of wooden boards is achieved, reducing the time for replacing wooden boards, adapting to trainers of different heights, improving training efficiency, and protecting trainers through buffer structures to avoid injuries.
Smart Images

Figure CN120305659A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of taekwondo training, and specifically to a high-kicking training device. Background Art
[0002] During taekwondo training, kicking board training is usually carried out. The traditional method is that one person holds the board and controls the height, while the other person conducts kicking board training. This training method may cause hand injuries to the person holding the board and is not convenient for one-person training. Therefore, more and more people use training props.
[0003] There is a prior art high-kicking training device with the application number 201410803396.3, which includes a base, a fixed bracket installed on the base, the other end of the fixed bracket is connected to a guide rod. The guide rod is an overall hollow tubular structure, and a cavity for the clearance sliding fit of the guide seat is axially opened inside it. The guide seat includes a guide tube, and a connecting plate extends radially outward from one side of the guide tube. The other end of the connecting plate passes through the guide rod, and a chute for the clearance sliding fit with the connecting plate is opened on one side of the guide rod. This invention has a simple and compact structure, can effectively achieve automatic positioning and manual reset, and can intuitively observe the height of the high kick, which is beneficial for targeted intensive training and can quickly increase the high-kicking height of the practitioner.
[0004] The existing high-kicking training structures have the following problems:
[0005] The existing high-kicking training structures are relatively simple, have incomplete functions, and cannot adjust the height. For trainers with relatively short or tall heights, it is difficult to use, and the training effect cannot be improved. Moreover, during the training process, damaged wooden boards need to be replaced continuously, which takes time, reduces the training duration, and lowers the training efficiency. For this reason, we propose a high-kicking training device. Summary of the Invention
[0006] The purpose of the present invention is to provide a high-kicking training device to solve the problems raised in the above background art.
[0007] To achieve the above purpose, the present invention provides the following technical solutions:
[0008] A high-kicking training device includes a counterweight bottom plate, a blanking box, and a buffer kicking pad. A support bottom column is arranged on the left side above the counterweight bottom plate, a movable column is arranged above the support bottom column, a support cross plate is arranged above the right side of the movable column, a blanking box is arranged above the support cross plate, and a driving cavity, a board storage cavity, and a falling cavity are sequentially arranged inside the blanking box from left to right.
[0009] Preferably, a push block is arranged on the right side inside the driving cavity, a push rod is arranged on the left side of the push block, a connecting rod is arranged on the left side of the push rod, a movable sliding sleeve is arranged above the connecting rod, a movable sliding rod is arranged inside the movable sliding sleeve, a screw rod sleeve column is arranged below the connecting rod, a transverse screw rod is arranged inside the screw rod sleeve column, and a first motor is arranged at the input end of the transverse screw rod.
[0010] Preferably, a plurality of wooden boards are arranged inside the board storage cavity, a push board is arranged at the rear end of the last wooden board, a plurality of support springs are arranged at the rear end of the push board, a limit guide rod is arranged in the middle of the rear end of the push board, a discharge port is opened below the falling cavity, a movable L-shaped plate is arranged on the right side below the discharge port, and a first hydraulic cylinder is arranged on the left side of the movable L-shaped plate.
[0011] Preferably, a fixed L-shaped plate is arranged on the left side below the discharge port, a second motor is arranged in the middle on the left side of the fixed L-shaped plate, a driving gear is arranged above the second motor, a coaxial gear is arranged at the front end of the driving gear, a clamping rod is arranged on the right side of the driving gear and the coaxial gear, a clamping plate is arranged on the right side of the inner wall of the clamping rod, and a rubber pad is arranged on the side of the clamping plate away from the inner wall of the clamping rod.
[0012] Preferably, a lifting structure is arranged inside the supporting bottom column. The lifting structure is provided with a plurality of movable rods, movable plates are arranged at both the upper and lower ends of the lifting structure, limiting sliding blocks are arranged on both the left and right sides of the movable plates, limiting sliding grooves are sleeved outside the limiting sliding blocks, sliding grooves are opened on both the left and right sides of the inner wall of the movable plates, sliding shafts are arranged inside the sliding grooves, a positioning shaft is arranged between the two lower movable rods, a connecting block is arranged below the lower left movable rod, and a second hydraulic cylinder is arranged on the right side of the lower end of the connecting block.
[0013] Preferably, a fixed rack is arranged on the left side of the movable support column, a fixed box is arranged on the left side above the supporting bottom column, a movable gear is installed inside the fixed box, a limiting tooth block is arranged on the left side of the movable gear, a limiting screw rod is arranged on the left side of the limiting tooth block, and a second turning handle is arranged on the left side of the limiting screw rod.
[0014] Preferably, an installation groove plate is arranged above the right side of the supporting bottom column, an installation plate is arranged inside the installation groove plate, first turning handles are arranged above and below the installation groove plate, a limiting screw rod is arranged on the side of the first turning handle close to the installation plate, a limiting sleeve column is sleeved in the middle of the limiting screw rod, a limiting block is arranged outside the limiting sleeve column, and a limiting groove is sleeved outside the limiting block.
[0015] Preferably, the supporting bottom column is fixedly connected to the mounting groove plate, the mounting groove plate is partially adapted to the mounting plate, the first rotating handle is fixedly connected to the limiting lead screw, the limiting lead screw is in threaded cooperation with the limiting sleeve column, the limiting sleeve column is fixedly connected to the limiting block, and the limiting block is partially adapted to the limiting groove.
[0016] Preferably, a buffer box is arranged on the left side of the mounting plate. Kick plates are arranged at both the front and rear ends of the buffer box. A buffer kicking pad is arranged on the side of the kick plate away from the buffer box. Buffer springs are arranged on the left and right sides of the end of the kick plate close to the buffer box. A support rod is inserted into the interior of each buffer spring. A limiting plate is connected between the two support rods. Moving sliders are arranged on the left and right sides of the limiting plate. Moving chutes are sleeved outside the moving sliders.
[0017] Preferably, the mounting plate is fixedly connected to the buffer box, the kick plate is adhesively bonded to the buffer kicking pad, the kick plate is elastically connected to the buffer box through the buffer springs, the kick plate is fixedly connected to the support rod, the support rod is fixedly connected to the limiting plate, the limiting plate is movably connected to the moving slider, and the moving slider is partially adapted to the moving chute.
[0018] Compared with the prior art, the beneficial effects of the present invention are as follows:
[0019] Due to the action of the first motor in the present invention, the transverse lead screw rotates, causing the lead screw sleeve column to move horizontally. The connecting rod can drive the movable sliding sleeve to move horizontally on the movable sliding rod, and the push rod and the push block can move stably horizontally. The push block can push the wooden board at the forefront in the board storage cavity to move rightward into the falling cavity. By repeating this process, automatic blanking of the wooden board can be achieved, reducing the time for the trainer to replace the wooden board and improving the training efficiency.
[0020] When the movable L-shaped plate in the present invention is in a vertical state, the wooden board can fall from the falling cavity into the temporary storage cavity formed between the movable L-shaped plate and the fixed L-shaped plate. Due to the action of the second motor, the driving gear drives the coaxial gear to rotate, causing the clamping rods to drive the clamping plates at both ends to approach each other and clamp the left side of the wooden board. The rubber pads ensure firm clamping. Then, due to the action of the first hydraulic cylinder, the movable L-shaped plate can be driven to unfold rightward around its upper end, thereby displaying the wooden board in front of and above the trainer, facilitating the trainer to practice the kicking board action.
[0021] There are kick plates on both sides of the buffer box in the present invention, enabling the trainer to exercise the strength of both the left and right legs. When the trainer kicks towards the kick plate, they first come into contact with the buffer kicking pad, which can protect the trainer's legs and feet, reducing injuries and pain. When the kicking force is transmitted to the kick plate, the kick plate moves towards the buffer box direction, pushing the support rod and the limiting plate to move. At the same time, the moving slider moves within the moving chute. Through the elastic action of the buffer springs, the kick plate, the buffer kicking pad, and the trainer's legs and feet can be buffered, preventing the trainer from being injured due to excessive kicking force. Brief Description of the Drawings
[0022] Figure 1 This is a front view structural schematic diagram of the present invention;
[0023] Figure 2 This is the present invention Figure 1 A partially enlarged structural schematic diagram of the blanking box in the present invention;
[0024] Figure 3 This is the present invention Figure 1 A top view structural schematic diagram of the blanking box in the present invention;
[0025] Figure 4 This is the present invention Figure 1 A top view structural schematic diagram of the buffer kicking pad in the present invention;
[0026] Figure 5 This is the present invention Figure 1 A partially enlarged structural schematic diagram of part A in the present invention;
[0027] Figure 6 This is the present invention Figure 1 A partially enlarged structural schematic diagram of part B in the present invention;
[0028] Figure 7 This is the present invention Figure 1 A partially enlarged structural schematic diagram of part C in the present invention;
[0029] Figure 8 This is the present invention Figure 2 A partially enlarged structural schematic diagram of part D in the present invention;
[0030] Figure 9 This is the present invention Figure 5 A top view structural schematic diagram of the clamping plate in the present invention;
[0031] Figure 10 This is an overall structural schematic diagram of the present invention.
[0032] In the figure:
[0033] 1. Counterweight bottom plate; 2. Support bottom column; 3. Movable rod; 4. Support cross plate; 5. Movable support column; 6. Feeding box; 7. Buffer kicking pad; 8. First motor; 9. Connecting rod; 10. Movable sliding sleeve; 11. Driving cavity; 12. Movable sliding rod; 13. Push rod; 14. Push block; 15. Plate storage cavity; 16. Wood board; 17. Falling cavity; 18. First hydraulic cylinder; 19. Movable L-shaped plate; 20. Fixed L-shaped plate; 21. Horizontal lead screw; 22. Lead screw sleeve column; 23. Limit guide rod; 24. Support spring; 25. Push plate; 26. Buffer box; 27. Support rod; 28. Buffer spring; 29. Kicking plate; 30. Limit plate; 31. Movable chute; 32. Movable slider; 33. Limit chute; 34. Limit slider; 35. Connecting block; 36. Second hydraulic cylinder; 37. Movable plate; 38. Sliding shaft; 39. Positioning shaft; 40. Limit block; 41. Installation groove plate; 42. Installation plate; 43. Limit groove; 44. Limit sleeve column; 45. Limit lead screw; 46. First turning handle; 47. Limit screw; 48. Second turning handle; 49. Limit tooth block; 50. Movable gear; 51. Fixed rack; 52. Fixed box; 53. Clamping rod; 54. Second motor; 55. Clamping plate; 56. Driving gear; 57. Coaxial gear; 58. Rubber pad. Detailed implementation manners
[0034] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.
[0035] Embodiment 1:
[0036] As Figure 1 、 Figure 2 and Figure 3As shown in the figure, the present invention provides a technical solution: a high-kicking training device, including a counterweight bottom plate 1, a blanking box 6 and a buffer kicking pad 7. On the left side above the counterweight bottom plate 1, there is a supporting bottom column 2. Above the supporting bottom column 2, there is a movable column 5. Above the right side of the movable column 5, there is a supporting cross plate 4. Above the supporting cross plate 4, there is a blanking box 6. Inside the blanking box 6, there are successively arranged a driving cavity 11, a board storage cavity 15 and a falling cavity 17 from left to right. On the right side inside the driving cavity 11, there is a pushing block 14. On the left side of the pushing block 14, there is a push rod 13. On the left side of the push rod 13, there is a connecting rod 9. Above the connecting rod 9, there is a movable sliding sleeve 10. Inside the movable sliding sleeve 10, there is a movable sliding rod 12 passing through. Below the connecting rod 9, there is a screw rod sleeve column 22. Inside the screw rod sleeve column 22, there is a horizontal screw rod 21 passing through. The input end of the horizontal screw rod 21 is provided with a first motor 8. The first motor 8 is fixedly connected to the horizontal screw rod 21. The horizontal screw rod 21 is in threaded cooperation with the screw rod sleeve column 22. The screw rod sleeve column 22 is fixedly connected to the connecting rod 9. The connecting rod 9 is fixedly connected to the movable sliding sleeve 10. The movable sliding sleeve 10 is partially adapted to the movable sliding rod 12. The connecting rod 9 is fixedly connected to the push rod 13. The push rod 13 is fixedly connected to the pushing block 14. Under the action of the first motor 8, the horizontal screw rod 21 rotates, causing the screw rod sleeve column 22 to move horizontally. The movable sliding sleeve 10 can be driven by the connecting rod 9 to move horizontally on the movable sliding rod 12, and the push rod 13 and the pushing block 14 can be stably moved horizontally. The pushing block 14 can push the frontmost wooden board 16 in the board storage cavity 15 to move rightward into the falling cavity 17. By repeating this process, the automatic blanking of the wooden board 16 can be achieved, reducing the time for the trainer to replace the wooden board 16 and improving the training efficiency.
[0037] Embodiment 2:
[0038] As Figure 2 and Figure 3 shown in the figure, there are several wooden boards 16 arranged inside the board storage cavity 15. At the rear end of the rearmost wooden board 16, there is a pushing plate 25. At the rear end of the pushing plate 25, there are several supporting springs 24. In the middle of the rear end of the pushing plate 25, there is a limiting guide rod 23. The limiting guide rod 23 is fixedly connected to the pushing plate 25. The pushing plate 25 is elastically connected to the inner wall of the blanking box 6 through the supporting springs 24. The pushing plate 25 is in partial contact with the wooden boards 16. Under the elastic force of the supporting springs 24, the pushing plate 25 pushes all the wooden boards 16 in the board storage cavity 15 forward, ensuring that the wooden boards are in contact with each other, which is convenient for the pushing block 14 to push the frontmost wooden board 16 in the board storage cavity 15.
[0039] Embodiment 3:
[0040] As Figure 2 , Figure 8 and Figure 9As shown in the figure, a discharge port is provided below the falling cavity 17. On the right side below the discharge port, there is a movable L-shaped plate 19. On the left side of the movable L-shaped plate 19, there is a first hydraulic cylinder 18. On the left side below the discharge port, there is a fixed L-shaped plate 20. In the middle of the left side of the fixed L-shaped plate 20, there is a second motor 54. Above the second motor 54, there is a driving gear 56. At the front end of the driving gear 56, there is a coaxial gear 57. On the right side of the driving gear 56 and the coaxial gear 57, there is a clamping rod 53. On the right side of the inner wall of the clamping rod 53, there is a clamping plate 55. On the side of the clamping plate 55 away from the inner wall of the clamping rod 53, there is a rubber pad 58. The first hydraulic cylinder 18 is movably pin-connected to the movable L-shaped plate 19 through a movable pin. The fixed L-shaped plate 20 is fixedly connected to the support cross plate 4. The second motor 54 is fixedly connected to the driving gear 56. The driving gear 56 is meshed with the coaxial gear 57. Both the driving gear 56 and the coaxial gear 57 are fixedly connected to the corresponding clamping rod 53. The clamping rod 53 is fixedly connected to the clamping plate 55. The clamping plate 55 is adhesively connected to the rubber pad 58. When the movable L-shaped plate 19 is in a vertical state, the wooden board 16 can fall from the falling cavity 17 into the temporary placement cavity formed between the movable L-shaped plate 19 and the fixed L-shaped plate 20. Under the action of the second motor 54, the driving gear 56 drives the coaxial gear 57 to rotate, so that the clamping rod 53 drives the two ends of the clamping plate 55 to approach each other and clamp the left side of the wooden board 16. The rubber pad 58 ensures firm clamping. Then, under the action of the first hydraulic cylinder 18, the movable L-shaped plate 19 can be driven to expand to the right around its upper end, thereby displaying the wooden board 16 in front of and above the trainer, facilitating the trainer to practice the kicking board action.
[0041] Embodiment 4:
[0042] As Figure 1 and Figure 5As shown in the figure, a lifting structure is provided inside the supporting bottom column 2. The lifting structure is provided with a number of movable rods 3. Movable plates 37 are provided at both the upper and lower ends of the lifting structure. Limiting sliders 34 are provided on both the left and right sides of the movable plate 37. Limiting chutes 33 are sleeved outside the limiting sliders 34. Chutes are provided on both the left and right sides of the inner wall of the movable plate 37. Slide shafts 38 are provided inside the chutes. A positioning shaft 39 is passed through between the two lower movable rods 3. A connecting block 35 is provided below the left lower movable rod 3. A second hydraulic cylinder 36 is provided on the right side of the lower end of the connecting block 35. The two movable rods 3 are movably connected by a movable pin. The second hydraulic cylinder 36 and the connecting block 35 are movably pin-connected by a movable pin. The connecting block 35 is fixedly connected to the left lower movable rod 3. The two lower movable rods 3 are both movably connected to the positioning shaft 39. The positioning shaft 39 is fixedly connected to the supporting bottom column 2. The four movable rods 3 at the upper and lower ends of the lifting structure are all fixedly connected to the slide shaft 38. The slide shaft 38 is partially adapted to the chute provided on the inner wall of the movable plate 37. The movable plate 37 is fixedly connected to the limiting slider 34. The limiting slider 34 is partially adapted to the limiting chute 33. Under the action of the second hydraulic cylinder 36, the connecting block 35 and the movable rod 3 connected thereto are driven to rotate around the positioning shaft 39, which can drive all the upper movable rods 3 to move, so that the slide shaft 38 slides in the slide shaft 38, and under the mutual cooperation of the limiting slider 34 and the limiting chute 33, the upper movable plate 37 moves vertically inside the supporting bottom column 2, thereby changing the height of the movable support column 5 and the wooden board 16, adapting to trainers of various heights, and also facilitating the addition of the wooden board 16 to the blanking box 6.
[0043] Embodiment 5:
[0044] As Figure 1 and Figure 7 shown in the figure, a fixed rack 51 is provided on the left side of the movable support column 5. A fixed box 52 is provided on the upper left side of the supporting bottom column 2. An active gear 50 is installed inside the fixed box 52. A limiting tooth block 49 is provided on the left side of the active gear 50. A limiting screw rod 47 is provided on the left side of the limiting tooth block 49. A second turning handle 48 is provided on the left side of the limiting screw rod 47. The supporting bottom column 2 is fixedly connected to the fixed box 52. The fixed box 52 is movably connected to the active gear 50. The active gear 50 is meshed and connected to the fixed rack 51. The fixed rack 51 is fixedly connected to the movable support column 5. The active gear 50 is partially adapted to the limiting tooth block 49. The limiting tooth block 49 is fixedly connected to the limiting screw rod 47. The limiting screw rod 47 is fixedly connected to the second turning handle 48. By turning the second turning handle 48, the limiting screw rod 47 rotates, which can drive the limiting tooth block 49 to move away from or contact the active gear 50, thereby controlling the rotation of the active gear 50. Since the active gear 50 is meshed and connected to the fixed rack 51, the vertical movement of the fixed rack 51 and the movable support column 5 can be restricted.
[0045] Embodiment 6:
[0046] AsFigure 1 and Figure 6 As shown in Figure 6 , an installation groove plate 41 is provided above the right side of the supporting bottom column 2. An installation plate 42 is arranged inside the installation groove plate 41. First turning handles 46 are arranged on both the upper and lower sides of the installation groove plate 41. A limiting screw rod 45 is arranged on the side of the first turning handle 46 close to the installation plate 42. A limiting sleeve column 44 is sleeved in the middle of the limiting screw rod 45. A limiting block 40 is arranged outside the limiting sleeve column 44. A limiting groove 43 is sleeved outside the limiting block 40. The supporting bottom column 2 is fixedly connected to the installation groove plate 41. The installation groove plate 41 is partially adapted to the installation plate 42. The first turning handle 46 is fixedly connected to the limiting screw rod 45. The limiting screw rod 45 is in threaded cooperation with the limiting sleeve column 44. The limiting sleeve column 44 is fixedly connected to the limiting block 40. The limiting block 40 is partially adapted to the limiting groove 43. The installation plate 42 is embedded into the installation groove plate 41. The first turning handle 46 is rotated. The limiting screw rod 45 rotates, so that the limiting sleeve column 44 drives the limiting block 40 to move vertically, and the limiting block 40 can be embedded into the limiting groove 43 opened on the inner wall of the installation groove plate 41, completing the installation of the installation plate 42, which is convenient for replacement and update at any time and has a firm installation.
[0047] Example 7:
[0048] As Figure 1 and Figure 4 shown, a buffer box 26 is arranged on the left side of the installation plate 42. Kicking plates 29 are arranged at both the front and rear ends of the buffer box 26. A buffer kicking pad 7 is arranged on the side of the kicking plate 29 away from the buffer box 26. Buffer springs 28 are arranged on the left and right sides of the end of the kicking plate 29 close to the buffer box 26. A support rod 27 is arranged through the inside of the buffer spring 28. A limiting plate 30 is connected between the two support rods 27. Movable sliders 32 are arranged on both the left and right sides of the limiting plate 30. Movable sliding grooves 31 are sleeved outside the movable sliders 32. The installation plate 42 is fixedly connected to the buffer box 26. The kicking plate 29 is adhesively connected to the buffer kicking pad 7. The kicking plate 29 is elastically connected to the buffer box 26 through the buffer spring 28. The kicking plate 29 is fixedly connected to the support rod 27. The support rod 27 is fixedly connected to the limiting plate 30. The limiting plate 30 is movably connected to the movable slider 32. The movable slider 32 is partially adapted to the movable sliding groove 31. There are kicking plates 29 on both sides of the buffer box 26, and the trainer can exercise the strength of the left and right legs. When the trainer kicks towards the kicking plate 29, the buffer kicking pad 7 is contacted first. The buffer kicking pad 7 can protect the trainer's legs and feet and reduce injuries and pain. When the kicking force is transmitted to the kicking plate 29, the kicking plate 29 moves towards the buffer box 26 direction, and the support rod 27 and the limiting plate 30 are pushed to move. At the same time, the movable slider 32 moves in the movable sliding groove 31. Through the elastic action of the buffer spring 28, the kicking plate 29, the buffer kicking pad 7 and the trainer's legs and feet can be buffered, avoiding excessive kicking force of the trainer and causing injuries.
[0049] Although embodiments of the present invention have been shown and described, it will be understood by those of ordinary skill in the art that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A high-kicking training device, comprising a counterweight bottom plate (1), a blanking box (6) and a buffer kicking pad (7), characterized in that: On the left side above the counterweight base plate (1), there is a support bottom column (2). Above the support bottom column (2), there is a movable column (5). Above the right side of the movable column (5), there is a support cross plate (4). Above the support cross plate (4), there is a blanking box (6). Inside the blanking box (6), there are a driving cavity (11), a plate storage cavity (15), and a falling cavity (17) arranged in sequence from left to right.
2. The kicking height training device according to claim 1, characterized in that: On the right side inside the driving cavity (11), there is a pushing block (14). On the left side of the pushing block (14), there is a pushing rod (13). On the left side of the pushing rod (13), there is a connecting rod (9). Above the connecting rod (9), there is a movable sliding sleeve (10). Inside the movable sliding sleeve (10), there is a movable sliding rod (12) passing through. Below the connecting rod (9), there is a screw rod sleeve column (22). Inside the screw rod sleeve column (22), there is a horizontal screw rod (21). The input end of the horizontal screw rod (21) is provided with a first motor (8).
3. The kicking height training device according to claim 2, characterized in that: Inside the plate storage cavity (15), there are several wooden boards (16). At the rear end of the last wooden board (16), there is a pushing plate (25). At the rear end of the pushing plate (25), there are several support springs (24). In the middle of the rear end of the pushing plate (25), there is a limiting guide rod (23). Below the falling cavity (17), there is a discharge port. On the right side below the discharge port, there is a movable L-shaped plate (19). On the left side of the movable L-shaped plate (19), there is a first hydraulic cylinder (18).
4. A high-kicking training device according to claim 3, characterized in that: On the left side below the discharge port, there is a fixed L-shaped plate (20). In the middle of the left side of the fixed L-shaped plate (20), there is a second motor (54). Above the second motor (54), there is a driving gear (56). In front of the driving gear (56), there is a coaxial gear (57). On the right side of the driving gear (56) and the coaxial gear (57), there is a clamping rod (53). On the right side of the inner wall of the clamping rod (53), there is a clamping plate (55). On the side of the clamping plate (55) away from the inner wall of the clamping rod (53), there is a rubber pad (58).
5. A high-kicking training device according to claim 4, characterized in that: Inside the support bottom column (2), there is a lifting structure. The lifting structure is provided with several movable rods (3). At both the upper and lower ends of the lifting structure, there are movable plates (37). On both the left and right sides of the movable plates (37), there are limiting sliding blocks (34). The outside of the limiting sliding blocks (34) is sleeved with limiting sliding grooves (33). On both the left and right sides of the inner wall of the movable plates (37), there are sliding grooves. Inside the sliding grooves, there are sliding shafts (38). A positioning shaft (39) passes through between the two lower movable rods (3). Below the left lower movable rod (3), there is a connecting block (35). On the right side of the lower end of the connecting block (35), there is a second hydraulic cylinder (36).
6. The kicking height training device according to claim 5, characterized in that: On the left side of the movable support column (5), there is a fixed rack (51). Above the left side of the support bottom column (2), there is a fixed box (52). Inside the fixed box (52), there is a movable gear (50). On the left side of the movable gear (50), there is a limit tooth block (49). On the left side of the limit tooth block (49), there is a limit screw rod (47). On the left side of the limit screw rod (47), there is a second turning handle (48).
7. The kicking height training device according to claim 6, characterized in that: Above the right side of the support bottom column (2), there is a mounting groove plate (41). Inside the mounting groove plate (41), there is a mounting plate (42). On the upper and lower sides of the mounting groove plate (41), there is a first turning handle (46). On the side of the first turning handle (46) close to the mounting plate (42), there is a limit screw rod (45). In the middle of the limit screw rod (45), there is a limit sleeve column (44). On the outside of the limit sleeve column (44), there is a limit block (40). On the outside of the limit block (40), there is a limit groove (43).
8. A high-kicking training device according to claim 7, characterized in that: The support bottom column (2) is fixedly connected to the mounting groove plate (41). The mounting groove plate (41) is locally adapted to the mounting plate (42). The first turning handle (46) is fixedly connected to the limit screw rod (45). The limit screw rod (45) is in threaded cooperation with the limit sleeve column (44). The limit sleeve column (44) is fixedly connected to the limit block (40). The limit block (40) is locally adapted to the limit groove (43).
9. A high-kicking training device according to claim 1, characterized in that: On the left side of the mounting plate (42), there is a buffer box (26). On the front and rear ends of the buffer box (26), there are kick plates (29). On the side of the kick plate (29) away from the buffer box (26), there is a buffer kick pad (7). On the left and right sides of the end of the kick plate (29) close to the buffer box (26), there are buffer springs (28). Inside the buffer springs (28), there are support rods (27) inserted. Between the two support rods (27), there is a limit plate (30) connected. On the left and right sides of the limit plate (30), there are movable sliders (32). On the outside of the movable sliders (32), there are movable chute grooves (31).
10. A high-kicking training device according to claim 9, characterized in that: The mounting plate (42) is fixedly connected to the buffer box (26). The kick plate (29) is adhesively bonded to the buffer kick pad (7). Between the kick plate (29) and the buffer box (26), there is an elastic connection through the buffer spring (28). The kick plate (29) is fixedly connected to the support rod (27). The support rod (27) is fixedly connected to the limit plate (30). The limit plate (30) is movably connected to the movable slider (32). The movable slider (32) is locally adapted to the movable chute groove (31).
Citation Information
Patent Citations
Kick-high training device
CN104524757A