Adjustable badminton racket processing and positioning structure
By designing an adjustable badminton racket processing positioning structure, and utilizing adjustment and positioning components, the racket can be flexibly fixed and its angle adjusted. This solves the problem of difficulty in adjusting the positioning structure and placement angle in existing technologies, and improves the flexibility and convenience of processing.
Patent Information
- Application Number
- CN202423305268.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-31
- Publication Date
- 2025-12-23
- Estimated Expiration
- 2034-12-31
AI Technical Summary
The existing badminton racket manufacturing positioning structure is difficult to adjust according to actual size and processing requirements, resulting in poor processing flexibility.
Design an adjustable badminton racket processing and positioning structure. Through adjusting and positioning components, including a fixing frame, clamps, locking blocks, and an electric telescopic rod, the racket can be flexibly fixed and its angle adjusted, ensuring that the racket is fixed to the device according to its actual size and angle.
It enhances the flexibility and ease of operation in badminton racket manufacturing, enabling the racket to be stably fixed in position and the appropriate manufacturing angle to be adjusted according to actual needs.
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Figure CN223700769U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to badminton racket processing technical field especially, a kind of adjustable badminton racket processing positioning structure. BACKGROUND
[0002] Badminton can exercise body coordination, enhance the body quality of aerobic exercise, also have very strong social attribute, therefore more and more by young people's pursuit, when the badminton racket net is carried out processing operation, often need to stabilize and fix the position of racket.
[0003] Most of the present badminton racket processing positioning structure structure is fixed, often difficult to adjust positioning structure according to the actual size of badminton racket, and racket position is mostly fixed during processing, difficult to adjust the angle of placing racket according to actual processing demand, leading to poor processing operation flexibility.
[0004] Therefore, in view of the fact that the existing badminton racket processing positioning structure is difficult to adjust the positioning structure and the angle of placing racket according to the actual processing demand, a kind of adjustable badminton racket processing positioning structure can be designed, by the way of flexibly adjusting the angle of placing, according to the actual size of badminton racket, it is fixed in device, and the racket is adjusted to suitable processing angle, so as to effectively enhance the flexibility of badminton racket processing operation. SUMMARY
[0005] In order to overcome the problem that most badminton racket processing positioning structure is difficult to adjust positioning structure according to the actual size of badminton racket, and difficult to adjust the angle of placing racket according to actual processing demand during processing, leading to poor processing operation flexibility.
[0006] The technical scheme of the utility model is as follows: a kind of adjustable badminton racket processing positioning structure, including processing table, fixed frame, racket main body, first rotating shaft, first electric telescopic rod, adjusting assembly, bidirectional screw rod, clamping block, first positioning assembly, adjusting screw rod, clamping block and second positioning assembly, the upper portion of processing table is provided with fixed frame, the inner side of fixed frame is provided with racket main body, one end of fixed frame is provided with first rotating shaft, the other end of fixed frame is provided with first electric telescopic rod, the upper surface of processing table is provided with adjusting assembly, the inner side of fixed frame is provided with bidirectional screw rod, the outer side of bidirectional screw rod is provided with clamping block, clamping block is symmetrically provided with two groups, clamping block is arranged at the handle both sides of racket main body, the side of bidirectional screw rod is provided with first positioning assembly, the inner side of fixed frame is provided with adjusting screw rod, adjusting screw rod is symmetrically provided with two groups, the outer side of adjusting screw rod is provided with clamping block, clamping block is arranged at the outer side of racket main body ball frame, clamping block and racket main body ball frame are mutually clamped, the outer side of adjusting screw rod is provided with second positioning assembly.
[0007] Preferably, the processing table support fixing frame is arranged, the fixing frame is used to determine the placement position of the racket body, the first positioning assembly drives the bidirectional screw rod to rotate, the spacing of the clamping blocks is adjusted by rotating the bidirectional screw rod, the clamping blocks are used to clamp and fix the racket body according to the actual size of the racket body handle, the second positioning assembly drives the adjusting screw rod to rotate, the clamping blocks are adjusted to the appropriate position by rotating the adjusting screw rod, the clamping blocks are used to clamp and fix the racket body, the first electric telescopic rod drives the adjusting assembly to move, the adjusting assembly is used to adjust the placement angle of the fixing frame, thereby driving the first rotating shaft to rotate, the racket body is adjusted to the appropriate placement angle, the processing operation is conveniently carried out, the racket body is fixed on the device according to the actual size of the racket body, and the racket is adjusted to the appropriate processing angle, thereby enhancing the flexibility of the racket processing operation.
[0008] Preferably, the processing table support fixing frame is arranged, the fixing frame is used to determine the placement position of the racket body, the first positioning assembly drives the bidirectional screw rod to rotate, the spacing of the clamping blocks is adjusted by rotating the bidirectional screw rod, the clamping blocks are used to clamp and fix the racket body according to the actual size of the racket body handle, the second positioning assembly drives the adjusting screw rod to rotate, the clamping blocks are adjusted to the appropriate position by rotating the adjusting screw rod, the clamping blocks are used to clamp and fix the racket body, the first electric telescopic rod drives the adjusting assembly to move, the adjusting assembly is used to adjust the placement angle of the fixing frame, thereby driving the first rotating shaft to rotate, the racket body is adjusted to the appropriate placement angle, the processing operation is conveniently carried out, the racket body is fixed on the device according to the actual size of the racket body, and the racket is adjusted to the appropriate processing angle.
[0009] Preferably, the adjusting assembly further comprises a connecting frame, a second rotating shaft and a second fixing plate, one end of the first electric telescopic rod is provided with the connecting frame, one side of the connecting frame is provided with the second rotating shaft, the second rotating shaft is symmetrically provided with two groups, one side of the fixing frame is provided with the second fixing plate, the second fixing plate is symmetrically provided with two groups, and the second fixing plate and the other end of the second rotating shaft are rotatably connected.
[0010] Preferably, the first positioning assembly comprises a mounting groove, a positioning column and a positioning hole, one side of the fixing frame is provided with the mounting groove, the inner side of the mounting groove is provided with the positioning column, the bottom surface of the handle of the racket body is provided with the positioning hole, and the positioning column and the positioning hole are mutually embedded.
[0011] Preferably, the first positioning assembly further comprises a first servo motor, a first connecting block and a connecting rod, the outer side of the fixing frame is provided with the first servo motor, the output end of the first servo motor is connected with the bidirectional screw rod, the outer side of the bidirectional screw rod is provided with the first connecting block, the first connecting block is symmetrically provided with two groups, one side of the first connecting block is provided with the connecting rod, and the clamping block is arranged at one end of the connecting rod.
[0012] As preferred, the second positioning assembly comprises a second servo motor and a second connecting block, one end of the fixed frame is provided with the second servo motor, an output end of the second servo motor is connected with the adjusting lead screw, and the outside of the adjusting lead screw is provided with the second connecting block.
[0013] As preferred, the second positioning assembly further comprises a second electric telescopic rod and a connecting ball, the outside of the second connecting block is provided with the second electric telescopic rod, the second electric telescopic rod is symmetrically arranged at two ends of the second connecting block, one end of the second electric telescopic rod is provided with the connecting ball, and the connecting ball is rotatably connected with one side of the clamping block.
[0014] The beneficial effects of the utility model are as follows:
[0015] When the badminton racket is positioned, the fixed frame is supported by the machining table, the racket main body is placed by the fixed frame, the distance between the clamping blocks is adjusted by rotating the bidirectional lead screw, the racket main body is clamped and fixed according to the actual size of the racket handle by the clamping blocks, then, the clamping block is adjusted to the appropriate position by rotating the adjusting lead screw, the racket main body is clamped and fixed by the clamping block, so that the position of the racket main body is stably fixed, finally, the first electric telescopic rod is extended to drive the first rotating shaft to rotate, and the racket main body is adjusted to the appropriate placement angle by rotating the first rotating shaft, so that the problem that most badminton racket machining positioning structures are often difficult to adjust the positioning structure according to the actual size of the badminton racket, and the position of the racket is mostly fixed during the machining process, and it is difficult to adjust the placement angle of the racket according to the actual machining requirement is solved, and the flexibility of the badminton racket machining operation is enhanced. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1 A three-dimensional structure schematic diagram of the adjustable badminton racket machining positioning structure is shown.
[0017] Figure 2 A three-dimensional structure schematic diagram of the adjusting assembly of the adjustable badminton racket machining positioning structure is shown.
[0018] Figure 3 A three-dimensional structure schematic diagram of the first positioning assembly of the adjustable badminton racket machining positioning structure is shown.
[0019] Figure 4 A three-dimensional structure schematic diagram of the racket main body of the adjustable badminton racket machining positioning structure is shown.
[0020] Figure 5 A three-dimensional structure schematic diagram of the second positioning assembly of the adjustable badminton racket machining positioning structure is shown.
[0021] Explanation of reference signs: 1, processing table; 2, fixed frame; 201, racket main body; 3, first rotating shaft; 4, first electric telescopic rod; 401, first fixed plate; 402, wedge-shaped fixed block; 403, connecting frame; 404, second rotating shaft; 405, second fixed plate; 5, bidirectional screw rod; 501, clamping block; 502, mounting groove; 503, positioning column; 504, positioning hole; 505, first servo motor; 506, first connecting block; 507, connecting rod; 6, adjusting screw rod; 601, clamping block; 602, second servo motor; 603, second connecting block; 604, second electric telescopic rod; 605, connecting ball. DETAILED DESCRIPTION
[0022] The utility model is further explained in connection with the drawings and examples.
[0023] Please refer to Figures 1-5 The utility model provides an adjustable badminton racket processing positioning structure, including processing table 1, fixed frame 2, racket main body 201, first rotating shaft 3, first electric telescopic rod 4, adjusting assembly, bidirectional screw rod 5, clamping block 501, first positioning assembly, adjusting screw rod 6, clamping block 601 and second positioning assembly, the top of processing table 1 is provided with fixed frame 2, the inner side of fixed frame 2 is provided with racket main body 201, one end of fixed frame 2 is provided with first rotating shaft 3, the other end of fixed frame 2 is provided with first electric telescopic rod 4, the upper surface of processing table 1 is provided with adjusting assembly, the inner side of fixed frame 2 is provided with bidirectional screw rod 5, the outer side of bidirectional screw rod 5 is provided with clamping block 501, clamping block 501 is symmetrically provided with two groups, clamping block 501 is arranged in the handle both sides of racket main body 201, one side of bidirectional screw rod 5 is provided with first positioning assembly, the inner side of fixed frame 2 is provided with adjusting screw rod 6, adjusting screw rod 6 is symmetrically provided with two groups, the outer side of adjusting screw rod 6 is provided with clamping block 601, clamping block 601 is arranged in racket main body 201 racket frame outside, clamping block 601 and racket main body 201 racket frame are mutually clamped, the outer side of adjusting screw rod 6 is provided with second positioning assembly.
[0024] Please refer to Figure 2In the embodiment, the adjusting assembly comprises the first fixing plate 401, the wedge-shaped fixing block 402, the connecting frame 403, the second rotating shaft 404 and the second fixing plate 405. The upper surface of one end of the machining table 1 is provided with the first fixing plate 401. The first fixing plate 401 is symmetrically provided with two groups. The first rotating shaft 3 is arranged on one side of the first fixing plate 401. The first rotating shaft 3 is rotatably connected with the first fixing plate 401. The upper surface of the other end of the machining table 1 is provided with the wedge-shaped fixing block 402. The first electric telescopic rod 4 is arranged on one side of the wedge-shaped fixing block 402. One end of the first electric telescopic rod 4 is provided with the connecting frame 403. One side of the connecting frame 403 is provided with the second rotating shaft 404. The second rotating shaft 404 is symmetrically provided with two groups. One side of the fixing frame 2 is provided with the second fixing plate 405. The second fixing plate 405 is symmetrically provided with two groups. The second fixing plate 405 is rotatably connected with the other end of the second rotating shaft 404. The first rotating shaft 3 is rotatably connected with the first fixing plate 401. The position of the first electric telescopic rod 4 is fixed by the wedge-shaped fixing block 402. The first electric telescopic rod 4 is placed at a certain angle. The second rotating shaft 404 is fixedly connected with the connecting frame 403. The second rotating shaft 404 is rotatably connected with the second fixing plate 405. The position of the connecting frame 403 is adjusted by the first electric telescopic rod 4. The second rotating shaft 404 is rotated around the second fixing plate 405. At the same time, the first rotating shaft 3 is rotated around the first fixing plate 401. Therefore, the placing angle of the fixing frame 2 is flexibly adjusted.
[0025] Please refer to Figures 3-4 In the embodiment, the first positioning assembly comprises the mounting groove 502, the positioning column 503, the positioning hole 504, the first servo motor 505, the first connecting block 506 and the connecting rod 507. One side of the fixing frame 2 is provided with the mounting groove 502. The inner side of the mounting groove 502 is provided with the positioning column 503. The bottom surface of the handle of the racket main body 201 is provided with the positioning hole 504. The positioning column 503 and the positioning hole 504 are mutually embedded. The outer side of the fixing frame 2 is provided with the first servo motor 505. The output end of the first servo motor 505 is connected with the bidirectional screw rod 5. The outer side of the bidirectional screw rod 5 is provided with the first connecting block 506. The first connecting block 506 is symmetrically provided with two groups. One side of the first connecting block 506 is provided with the connecting rod 507. The clamping block 501 is arranged on one end of the connecting rod 507. The placing position of the handle of the racket main body 201 is determined by the mounting groove 502. The positioning column 503 is embedded in the positioning hole 504. Therefore, the handle of the racket main body 201 is positioned to the central position in the mounting groove 502. The position deviation of the racket main body 201 is avoided. The bidirectional screw rod 5 is rotated by the first servo motor 505. The distance between the two groups of first connecting blocks 506 is flexibly adjusted. The first connecting block 506 is connected with the connecting rod 507. The connecting rod 507 is connected with the clamping block 501. Therefore, the racket main body 201 is clamped and fixed according to the actual size of the handle.
[0026] Please refer to Figure 5 In the embodiment, the second positioning assembly comprises a second servo motor 602, a second connecting block 603, a second electric telescopic rod 604 and a connecting ball 605. One end of the fixing frame 2 is provided with the second servo motor 602. The output end of the second servo motor 602 is connected with the adjusting lead screw 6. The outer side of the adjusting lead screw 6 is provided with the second connecting block 603. The outer side of the second connecting block 603 is provided with the second electric telescopic rod 604. The second electric telescopic rod 604 is symmetrically arranged at two ends of the second connecting block 603. One end of the second electric telescopic rod 604 is provided with the connecting ball 605. The connecting ball 605 is rotatably connected with one side of the clamping block 601. The second servo motor 602 drives the adjusting lead screw 6 to rotate. The adjusting lead screw 6 adjusts the position of the second connecting block 603. Thus, the position of the clamping block 601 is adjusted according to the position of the frame of the racket main body 201. The second electric telescopic rod 604 is connected and fixed by the second connecting block 603. The position of the clamping block 601 is adjusted by respectively extending and retracting the second electric telescopic rod 604. Thus, the distance between the clamping block 601 and the frame of the racket main body 201 is flexibly adjusted. The clamping block 601 is rotatably connected with the connecting ball 605. The clamping block 601 is tightly fixed to the frame of the racket main body 201 by being tightly fitted to the curvature of the frame of the racket main body 201. Thus, the frame of the racket main body 201 is tightly fixed.
[0027] When the racket handle is positioned, the racket handle is placed into the installation slot 502. The positioning column 503 is embedded into the positioning hole 504. The first servo motor 505 drives the bidirectional screw rod 5 to rotate. The bidirectional screw rod 5 adjusts the distance between the two groups of first connecting blocks 506. The clamping block 501 on the connecting rod 507 clamps the racket handle.
[0028] When the frame of the racket main body 201 is positioned, the second servo motor 602 drives the adjusting lead screw 6 to rotate. The adjusting lead screw 6 adjusts the position of the second connecting block 603. The second connecting block 603 is moved to the two sides of the frame of the racket main body 201. Then, the second electric telescopic rod 604 is extended. At the same time, the clamping block 601 is rotated around the connecting ball 605. The clamping block 601 is clamped into the outer side of the frame of the racket main body 201.
[0029] When the processing angle of the racket main body 201 is adjusted, the first electric telescopic rod 4 on the wedge-shaped fixing block 402 drives the second rotating shaft 404 on the connecting frame 403 to rotate around the second fixing plate 405. At the same time, the first rotating shaft 3 is driven to rotate around the first fixing plate 401. Thus, the placement angle of the fixing frame 2 on the processing table 1 is adjusted. The racket main body 201 is placed at a suitable angle.
[0030] Through the above steps, by setting the processing table 1 supports the fixing frame 2, the fixing frame 2 is used to determine the racket body 201 placement position, the first positioning assembly drives the bidirectional screw rod 5 to rotate, the bidirectional screw rod 5 is adjusted to adjust the distance between the clamping block 501, the clamping block 501 is used according to the actual size of the racket body 201 handle to clamp and fix it, the second positioning assembly drives the adjusting screw rod 6 to rotate, the adjusting screw rod 6 is rotated to adjust the clamping block 601 to the appropriate position, the clamping block 601 is used to clamp and fix the racket body 201 ball frame, the telescopic first electric telescopic rod 4 drives the adjusting assembly to move, the adjusting assembly is used to adjust the angle of the fixing frame 2, thereby driving the first rotating shaft 3 to rotate, the racket body 201 is adjusted to the appropriate placement angle, and the processing operation is conveniently carried out, so that the badminton racket is fixed on the device according to the actual size, and the racket is adjusted to the appropriate processing angle.
[0031] The embodiments of the utility model are described in detail above in combination with the drawings, but the utility model is not limited to the above-mentioned embodiments, and various changes can be made within the knowledge range possessed by the person skilled in the art without departing from the purpose of the utility model.
Claims
1. An adjustable badminton racket processing positioning structure, comprising a processing table (1), a fixing frame (2) and a racket main body (201), characterized in that: The utility model also includes first pivot (3), first electric telescopic rod (4), adjusting assembly, two -way screw rod (5), clamping block (501), first positioning assembly, adjusting screw rod (6), clamping block (601) and second positioning assembly, the upper portion of processing platform (1) is provided with fixed frame (2), the inner side of fixed frame (2) is provided with racket main part (201), one end of fixed frame (2) is provided with first pivot (3), the other end of fixed frame (2) is provided with first electric telescopic rod (4), the upper surface of processing platform (1) is provided with adjusting assembly, the inner side of fixed frame (2) is provided with two -way screw rod (5), the outer side of two -way screw rod (5) is provided with clamping block (501), clamping block (501) is provided with two groups of symmetry, clamping block (501) is set up in racket main part (201) handle both sides, one side of two -way screw rod (5) is provided with first positioning assembly, the inner side of fixed frame (2) is provided with adjusting screw rod (6), adjusting screw rod (6) is provided with two groups of symmetry, the outer side of adjusting screw rod (6) is provided with clamping block (601), clamping block (601) is set up in racket main part (201) ball frame outer side, clamping block (601) and racket main part (201) ball frame are mutually clamped, the outer side of adjusting screw rod (6) is provided with second positioning assembly.
2. An adjustable badminton racket processing positioning structure according to claim 1, characterized in that: Adjusting assembly includes first fixed plate (401) and wedge fixed block (402), the upper surface of one end of processing platform (1) is provided with first fixed plate (401), first fixed plate (401) is provided with two groups of symmetry, first pivot (3) is set up in one side of first fixed plate (401), first pivot (3) and first fixed plate (401) are mutually rotatablely connected, the upper surface of the other end of processing platform (1) is provided with wedge fixed block (402), first electric telescopic rod (4) is set up in one side of wedge fixed block (402).
3. A position structure for processing of adjustable badminton racket according to claim 2, characterized in that: Adjusting assembly also includes connecting frame (403), second pivot (404) and second fixed plate (405), one end of first electric telescopic rod (4) is provided with connecting frame (403), one side of connecting frame (403) is provided with second pivot (404), second pivot (404) is provided with two groups of symmetry, one side of fixed frame (2) is provided with second fixed plate (405), second fixed plate (405) is provided with two groups of symmetry, second fixed plate (405) and the other end of second pivot (404) are mutually rotatablely connected.
4. An adjustable badminton racket processing positioning structure according to claim 2, characterized in that: First positioning assembly includes mounting groove (502), positioning column (503) and positioning hole (504), one side of fixed frame (2) is provided with mounting groove (502), the inner side of mounting groove (502) is provided with positioning column (503), the bottom surface of racket main part (201) handle is provided with positioning hole (504), positioning column (503) and positioning hole (504) are mutually embedded.
5. An adjustable badminton racket processing positioning structure according to claim 4, characterized in that: The first positioning assembly further comprises a first servo motor (505), a first connecting block (506) and a connecting rod (507), the outer side of the fixed frame (2) is provided with the first servo motor (505), the output end of the first servo motor (505) is connected with the bidirectional screw rod (5), the outer side of the bidirectional screw rod (5) is provided with the first connecting block (506), the first connecting block (506) is symmetrically provided with two groups, one side of the first connecting block (506) is provided with the connecting rod (507), and the clamping block (501) is arranged at one end of the connecting rod (507).
6. An adjustable badminton racket processing positioning structure according to claim 4, characterized in that: The second positioning assembly comprises a second servo motor (602) and a second connecting block (603), one end of the fixed frame (2) is provided with the second servo motor (602), the output end of the second servo motor (602) is connected with the adjusting screw rod (6), and the outer side of the adjusting screw rod (6) is provided with the second connecting block (603).
7. An adjustable badminton racket processing positioning structure according to claim 6, characterized in that: The second positioning assembly further comprises a second electric telescopic rod (604) and a connecting ball (605), the outer side of the second connecting block (603) is provided with the second electric telescopic rod (604), the second electric telescopic rod (604) is symmetrically arranged at two ends of the second connecting block (603), one end of the second electric telescopic rod (604) is provided with the connecting ball (605), and the connecting ball (605) is rotatably connected with one side of the clamping block (601).