A badminton shuttlecock feather arch detection device
By designing an automated clamping and loading mechanism and a rotating seat system, the problems of slow manual sorting and misjudgment were solved, enabling rapid and accurate classification of feather pieces and improving production efficiency and product quality.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- ANHUI DENGFENG SPORTS GOODS CO LTD
- Filing Date
- 2025-05-06
- Publication Date
- 2026-05-26
Smart Images

Figure CN224272247U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of machinery, and more specifically, to a device for detecting the arch of badminton shuttlecock feathers. Background Technology
[0002] The quality of badminton shuttlecock production is related to the quality of the feathers. The curvature of the feathers is the key to the quality of the feathers. The curvature of the feathers directly affects the flight performance and stability of the shuttlecock. A suitable curvature can enable the shuttlecock to maintain a stable trajectory and speed during flight, improving the accuracy and comfort of hitting the shuttlecock.
[0003] When testing the arch of feathers, an arch testing device is required. Current arch testing devices can distinguish between qualified and unqualified products, requiring them to be collected separately after testing. However, this separation is mostly done manually, which is slow and cannot meet the needs of large-scale production. Moreover, manual operation is prone to negligence or misjudgment, misclassifying qualified products as unqualified or vice versa, affecting product quality. How to invent a badminton feather arch testing device to improve these problems has become an urgent issue for those skilled in the art. Utility Model Content
[0004] To overcome the above shortcomings, this utility model provides a badminton shuttlecock feather arch detection device, which aims to improve the current situation where most arch detection devices rely on manual sorting. Manual sorting of feathers is slow and cannot meet the needs of large-scale production. Moreover, manual operation is prone to negligence or misjudgment, misjudging qualified products as unqualified products or vice versa, which affects product quality.
[0005] This utility model is implemented as follows:
[0006] This utility model provides a badminton shuttlecock feather arch detection device, including a workbench and a display screen and controller mounted on the workbench. The top of the workbench is provided with a rotating seat device, which has multiple sets of insertion holes for inserting feathers. An arch detector is provided on the left side of the top of the workbench, and a support plate is provided on the rear side wall of the workbench. The device also includes a clamping and loading mechanism: the clamping and loading mechanism is located on the top of the support plate, and can clamp the detected feathers and place qualified and unqualified products in corresponding positions.
[0007] Preferably, the clamping and dispensing mechanism includes a rotating column connected to the top of a support plate via a bearing. A gear is sleeved on the outer wall of the rotating column. A rack that meshes with the gear is slidably mounted on the support plate. A fixing block is provided on the top of the support plate. A first electric telescopic rod is provided on the side wall of the fixing block. One end of the first electric telescopic rod is connected to one end of the rack. A second electric telescopic rod is provided on the top of the rotating column. A lifting plate is provided at one end of the second electric telescopic rod. A third electric telescopic rod is provided on the side wall of the lifting plate. A clamping plate is provided at one end of the third electric telescopic rod. Two sets of clamping airbags are provided on the inner side wall of the clamping plate. Each set of clamping airbags has an inflation / deflation tube at its top. A hose is provided at one end of each set of inflation / deflation tubes.
[0008] Preferably, the clamping plate is U-shaped, and the sidewall of the clamping airbag is provided with an anti-slip pad, which is made of rubber material.
[0009] Preferably, the top of the support plate is provided with a slide rod, and a slider is sleeved on the outer wall of the slide rod, and the side wall of the slider is connected to the side wall of the rack.
[0010] Preferably, the rear side wall of the workbench is slidably connected with a qualified box and a non-qualified box, and slots are provided on both the left and right side walls of the workbench. The side walls of the qualified box and the non-qualified box are provided with insert plates that cooperate with the slots.
[0011] The beneficial effects of this utility model are:
[0012] 1. This utility model, by setting up a clamping and picking mechanism, can clamp and pick up qualified or unqualified feather pieces, and place them in the corresponding boxes respectively. It can meet the needs of large-scale production, avoid negligence or misjudgment, improve the arch detection and classification effect, and improve product quality.
[0013] 2. This utility model uses a clamping airbag to clamp and fix the base of the feather by expanding the clamping airbag, so that the feather has a certain buffering effect when it is clamped, avoiding excessive compression and damage to the feather. Attached Figure Description
[0014] To more clearly illustrate the technical solutions of the embodiments of this utility model, the drawings used in the embodiments will be briefly introduced below. It should be understood that the following drawings only show some embodiments of this utility model and should not be regarded as a limitation of the scope. For those skilled in the art, other related drawings can be obtained from these drawings without creative effort.
[0015] Figure 1 This is a schematic diagram of the overall structure of this utility model;
[0016] Figure 2This is a left view of the structure of this utility model;
[0017] Figure 3 This is a schematic diagram of the clamping and loading mechanism of this utility model;
[0018] Figure 4 This is a schematic diagram of the structure of the airbag and anti-slip pad of this utility model.
[0019] In the diagram: 1. Workbench; 2. Display screen; 3. Rotating seat device; 4. Support plate; 5. Clamping and loading / unloading mechanism; 500. Fixing block; 501. First electric telescopic rod; 502. Rack; 503. Slide rod; 504. Slider; 505. Gear; 506. Rotating column; 507. Second electric telescopic rod; 508. Lifting plate; 509. Third electric telescopic rod; 510. Clamping plate; 511. Clamping airbag; 512. Anti-slip mat; 513. Inflation / discharge tube; 514. Hose; 6. Insertion hole; 7. Feather piece; 8. Arch detector; 9. Controller; 10. Qualified box; 11. Unqualified box. Detailed Implementation
[0020] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this utility model, not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this utility model.
[0021] Example, refer to Figures 1-4 A badminton shuttlecock feather arch detection device includes a workbench 1, a display screen 2 and a controller 9 mounted on the workbench 1. The controller 9 is electrically connected to a rotating seat device 3 and an arch detector 8. The display screen 2 supports real-time display of detection results, pass rate statistics and historical data query. The rotating seat device 3 is located on the top of the workbench 1. The rotating seat device 3 consists of a drive device and a rotating seat. The drive device can drive the rotating seat to rotate. This is existing technology. The rotating seat device 3 has multiple sets of insertion holes 6. Feathers 7 are inserted into the insertion holes 6. An arch detector 8 is located on the top left side of the workbench 1. A support plate 4 is located on the rear side wall of the workbench 1. The device also includes a clamping and loading mechanism 5: the clamping and loading mechanism 5 is located on the top of the support plate 4. The clamping and loading mechanism 5 can clamp the detected feathers 7 and place qualified and unqualified products in the corresponding positions.
[0022] The clamping and loading mechanism 5 includes a rotating column 506 connected to the top of a support plate 4 via a bearing. A gear 505 is sleeved on the outer wall of the rotating column 506. A rack 502, meshing with the gear 505, slides on the support plate 4. A sliding rod 503 is provided on the top of the support plate 4, and a slider 504 is sleeved on the outer wall of the sliding rod 503. The side wall of the slider 504 is connected to the side wall of the rack 502. Under the action of the sliding rod 503 and the slider 504, the rack 502 moves more stably, thus enabling better meshing between the rack 502 and the gear 505. A fixing block 500 is provided on the top of the support plate 4, and a first electric telescopic rod 501 is provided on the side wall of the fixing block 500. One end of 01 is connected to one end of rack 502. The top of rotating column 506 is provided with a second electric telescopic rod 507. One end of the second electric telescopic rod 507 is provided with a lifting plate 508. The side wall of the lifting plate 508 is provided with a third electric telescopic rod 509. One end of the third electric telescopic rod 509 is provided with a clamping plate 510. The inner side wall of the clamping plate 510 is provided with two sets of clamping airbags 511. The top of the two sets of clamping airbags 511 is provided with an inflation / deflation tube 513. One end of the two sets of inflation / deflation tubes 513 is provided with a hose 514. The clamping plate 510 is U-shaped. The side wall of the clamping airbags 511 is provided with an anti-slip pad 512. The anti-slip pad 512 is made of rubber material to improve the friction coefficient of clamping and the clamping stability.
[0023] It should be noted that the clamping plate 510 is U-shaped, allowing the base of the feather 7 to enter the clamping plate 510 when it moves. The inflation / deflation tube 513 is connected to an external pressure sensor to adjust the airbag pressure in real time, preventing excessive compression and damage to the feather 7. Inflation of the clamping airbag 511 is achieved through the hose 514. After inflation, the airbag 511, in conjunction with the anti-slip pad 512, clamps the base of the feather 7. Then, the second electric telescopic rod 507 moves upward to pull out the feather 7. With the cooperation of the rack 502 and gear 505, qualified or unqualified feathers 7 can be rotated to the top of their respective housings.
[0024] The rear side wall of the workbench 1 is slidably connected with a qualified box 10 and an unqualified box 11. The left and right side walls of the workbench 1 are provided with slots, and the side walls of the qualified box 10 and the unqualified box 11 are provided with insert plates that cooperate with the slots.
[0025] It should be noted that the clamping and loading mechanism 5 can clamp and place qualified and unqualified products into their respective boxes to achieve classified collection. With the help of slots and insert plates, qualified boxes 10 and unqualified boxes 11 can be quickly installed and removed. The slots and insert plates are T-shaped, which can improve the stability of the insertion and ensure the stability of qualified boxes 10 and unqualified boxes 11.
[0026] Working principle: When the camber of the feather 7 needs to be detected, the feather 7 is inserted into the socket 6 of the rotating seat device 3. The rotating seat device 3 drives the feather 7 to rotate. When the rotating seat device 3 rotates the feather 7 to the position of the camber detector 8, the camber detector 8 can measure the radius of curvature of the feather surface. Thus, the camber detector 8 can transmit the signal to the controller 9. The controller 9 receives and processes the signal, and then transmits the signal to the display screen 2. The display screen 2 displays the detection result in real time. Then, the rotating seat device 3 drives the feather 7 to rotate to the clamping plate 501. If it is qualified: the third electric telescopic rod 509 drives the clamping plate 510 to move to the feather... At the base of feather 7, air is inflated into clamping airbag 511 through hose 514. After the clamping airbag 511 expands, it clamps feather 7 in conjunction with anti-slip pad 512. Then, the second electric telescopic rod 507 moves upward to pull out feather 7. The first electric telescopic rod 501 drives rack 502 to move. Rack 502 drives gear 505 and rotating column 506 to rotate, which can rotate feather 7 above qualified box 10. Airbag deflates to release feather 7. Qualified feather 7 falls into qualified box 10. If unqualified, feather 7 is rotated above unqualified box 11. Airbag deflates to release feather 7. Unqualified feather 7 falls into unqualified box 11.
[0027] It should be noted that the specific model and specifications of the motor need to be selected and determined based on the actual specifications of the device. The specific selection and calculation method adopts the existing technology in this field, so it will not be described in detail here.
[0028] The above are merely preferred embodiments of this utility model and are not intended to limit the scope of this utility model. Various modifications and variations can be made to this utility model by those skilled in the art. Any modifications, equivalent substitutions, or improvements made within the spirit and principles of this utility model should be included within the protection scope of this utility model.
Claims
1. A badminton shuttlecock slice camber detection device, comprising a workbench (1) and a display screen (2) and a controller (9) arranged on the workbench (1), characterized in that, The workbench (1) is equipped with a rotating seat device (3) on its top. The rotating seat device (3) has multiple sets of insertion holes (6), and feather pieces (7) are inserted into the insertion holes (6). An arch detector (8) is provided on the left side of the top of the workbench (1). A support plate (4) is provided on the rear side wall of the workbench (1). The workbench (1) also includes: Clamping and picking mechanism (5): The clamping and picking mechanism (5) is set on the top of the support plate (4). The clamping and picking mechanism (5) can clamp the tested feather pieces (7) and place qualified and unqualified products in the corresponding positions respectively.
2. A shuttlecock blade camber detection apparatus according to claim 1, characterized in that, The clamping and loading mechanism (5) includes a rotating column (506) connected to the top of a support plate (4) via a bearing. A gear (505) is sleeved on the outer wall of the rotating column (506). A rack (502) that meshes with the gear (505) is slidably mounted on the support plate (4). A fixing block (500) is provided on the top of the support plate (4). A first electric telescopic rod (501) is provided on the side wall of the fixing block (500). One end of the first electric telescopic rod (501) is connected to one end of the rack (502). The top of the moving column (506) is provided with a second electric telescopic rod (507), one end of the second electric telescopic rod (507) is provided with a lifting plate (508), the side wall of the lifting plate (508) is provided with a third electric telescopic rod (509), one end of the third electric telescopic rod (509) is provided with a clamping plate (510), the inner side wall of the clamping plate (510) is provided with two sets of clamping airbags (511), the top of the two sets of clamping airbags (511) is provided with an inflation tube (513), and one end of the two sets of inflation tubes (513) is provided with a hose (514).
3. A shuttlecock blade camber detection apparatus according to claim 2, characterised in that, The clamping plate (510) is U-shaped, and the side wall of the clamping airbag (511) is provided with an anti-slip pad (512), which is made of rubber material.
4. The badminton shuttlecock feather arch detection device according to claim 1, characterized in that, The top of the support plate (4) is provided with a slide rod (503), and a slider (504) is sleeved on the outer wall of the slide rod (503). The side wall of the slider (504) is connected to the side wall of the rack (502).
5. The badminton shuttlecock feather arch detection device according to claim 1, characterized in that, The workbench (1) is slidably connected to the rear side wall with a qualified box (10) and an unqualified box (11). The workbench (1) has slots on both the left and right side walls. The qualified box (10) and the unqualified box (11) have insert plates on their side walls that cooperate with the slots.