Rapid elastic force detection device for feathers for shuttlecock production
By designing a rapid detection device for feather elasticity using clamping and pressing components, the problem of long detection time in existing technologies has been solved, achieving efficient and accurate detection of feather elasticity and improving the production efficiency and quality of badminton shuttlecocks.
Patent Information
- Application Number
- CN202520198421.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-08
- Publication Date
- 2025-12-19
- Estimated Expiration
- 2035-02-08
AI Technical Summary
Existing technologies for detecting the elasticity of badminton shuttlecock feathers have low efficiency, resulting in excessively long detection times, which cannot meet the needs of mass production.
A rapid detection device for the elasticity of wool fabric was designed, comprising a clamping component and a pressing component. The clamping component fixes the wool fabric, the pressing component detects the elasticity of the wool fabric, and a pressure sensor is used to detect and record the elasticity value in real time, simplifying the detection process.
This shortened the testing time for feather elasticity, improved testing efficiency, ensured the accuracy and consistency of feather elasticity testing, and improved the quality of badminton shuttlecock production.
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Figure CN223691986U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of detecting the elasticity of feather pieces, in particular to an elastic quick detection device for feather pieces in shuttlecock production. BACKGROUND
[0002] The shuttlecock comprises a ball head, and a plurality of feather pieces are evenly arranged on the ball head along the circumferential direction. Figure 1 As shown in the structure of the feather piece, Figure 1 After a batch of feather pieces as shown in the structure are produced by cutting, the elasticity of each feather piece needs to be detected to determine whether the produced feather pieces are suitable for producing shuttlecocks.
[0003] A shuttlecock elasticity tester is disclosed in Chinese patent CN109655352B, which detects the elasticity of the feather piece by the following method: first, hold the conical sleeve 32 and push it backward to further compress the compression spring 33, so that the conical sleeve 32 is unlocked from the chuck 31-1, then insert the feather stem into the three chucks 31-1, and make the feather stem inserted into the threaded hole in the center of the chucking sleeve 31, when the insertion depth is moderate, release the conical sleeve 32, under the elastic restoring force of the compression spring 33, because the conical sleeve 32 is provided with a conical hole, and the three chucks 31-1 are cut from a central hole circular table body, so the three chucks 31-1 are clamped tightly under the constraint of the conical hole in the conical sleeve 32; then, turn the adjusting screw 34, so that the adjusting screw 34 pushes the tail of the feather stem, then rotate the limiting plate 41 to make the deep groove 41-1 on the limiting plate 41 parallel to the front end of the feather, and make the front end of the feather inserted into the deep groove 41-1, then start the push rod motor 21-1, which is a stepping motor, under the action of the push rod 21-3, make the moving plate 22 with the tail clamping mechanism 3 move along the cylindrical guide rod 12, then the front end of the feather acts on the pressure sensor at the bottom of the limiting plate deep groove.
[0004] Although the shuttlecock elasticity tester can detect the elasticity of the feather piece, it has many detection procedures, and the number of feather pieces to be detected per day is as high as hundreds, which takes a long time to detect all the feather pieces, and has the technical defect of low elasticity detection efficiency. Therefore, a detection device is needed to shorten the detection time of the elasticity of the feather piece and improve the elasticity detection efficiency of the feather piece. UTILITY MODEL CONTENTS
[0005] The utility model discloses a purpose in overcoming the defects of prior art, provide a shorten the detection time of the elasticity of feather piece, improve the elasticity detection efficiency's feather piece's elasticity quick detection device for shuttlecock production.
[0006] The utility model discloses a purpose to realize through following technical scheme: a feather piece's elasticity quick detection device for shuttlecock production, it includes work table, set up on the work table for the clamping component of the feather piece's feather stem of clamping, set up on the work table for the down pressure subassembly of down pressure feather piece, and down pressure subassembly is located at the right side of clamping component,
[0007] The clamping component includes the longitudinal setting arcuate beam, the boss of being fixed on the top surface of arcuate beam, the top surface of arcuate beam still is fixed with the front fixed seat and rear fixed seat of being located respectively in the front and rear side of boss, the sliding pressure plate of being slidably installed on the boss, and the first spring of being fixed between the rear end portion of sliding pressure plate and rear fixed seat, the front end portion on sliding pressure plate is equipped with the stop, and the stop is opposite and stands with front fixed seat front and rear;
[0008] The down pressure subassembly includes the vertical guide rail of being fixed on the end face of vertical guide rail, the slider of being slidably installed on vertical guide rail, the top surface of vertical guide rail is fixed with two L plates, the outer end face on two L plates is fixed with the second spring, and the lower end portion of two second springs is fixed on the front and rear outer end face of slider respectively, the top surface of slider is fixed with the leftward extension connecting plate, and the bottom surface on the extension end of connecting plate is fixed with pressure sensor, and the bottom of pressure sensor is fixed with the strip-shaped pressure block, and the recess is equipped on the bottom surface on strip-shaped pressure block.
[0009] The top surface on sliding pressure plate is fixed with the shift block.
[0010] The left end face on front fixed seat is fixed with the limit baffle, and the limit baffle is located at the left side of stop.
[0011] The front end face on connecting plate is fixed with handle.
[0012] The outer end face on two L plates is fixed with locking screw A, and the front and rear end face on slider is fixed with locking screw B, and the upper end portion of second spring is hung on locking screw A, and the lower end portion of second spring is hung on locking screw B.
[0013] The wiring head of pressure sensor is connected with controller through signal line.
[0014] The utility model has the advantages of shortening the detection time of the elasticity of feather piece, improving the elasticity detection efficiency of feather piece. ACCURACY OF DRAWINGS
[0015] Figure 1 It is the structural schematic diagram for feather piece.
[0016] Figure 2 The utility model discloses a structure schematic diagram;
[0017] Figure 3 It is Figure 2 The main view of;
[0018] Figure 4 It is Figure 2 The schematic diagram of in the removal of limit baffle;
[0019] Figure 5 It is Figure 4 The I partial close -up view of part;
[0020] Figure 6 It is the connection schematic diagram of arch beam, front fixed seat, rear fixed seat and sliding press plate;
[0021] Figure 7 It is the structure schematic diagram of sliding press plate;
[0022] Figure 8 It is the structure schematic diagram of strip-shaped press block;
[0023] Figure 9 It is the schematic diagram of tool fixed good piece;
[0024] Figure 10 It is Figure 9 The main view of;
[0025] Figure 11 It is Figure 9 The schematic diagram of in the removal of limit baffle;
[0026] Figure 12 It is Figure 11 The II partial close -up view of part;
[0027] In the drawing:
[0028] 1 - hair pole, 2 - feather;
[0029] 3 - workbench, 4 - clamping assembly, 5 - press-down assembly, 6 - arch beam, 7 - boss, 8 - front fixed seat, 9 - rear fixed seat, 10 - sliding press plate, 11 - first spring, 12 - stop opening;
[0030] 13 - vertical plate, 14 - vertical guide rail, 15 - sliding block, 16 - L plate, 17 - second spring, 18 - connecting plate, 19 - pressure sensor, 20 - strip-shaped press block, 21 - recess, 22 - limit column, 23 - shifting block, 24 - limit baffle, 25 - handle, 26 - locking screw A, 27 - locking screw B. DETAILED DESCRIPTION
[0031] The utility model discloses further describe below the attached drawing, the protection scope of the utility model is not limited to following described:
[0032] As Figures 2-8 The utility model discloses a quick detection device of elasticity of feather piece for badminton production, it includes work table 3, set up in the work table 3 for the clamping component 4 of the clamping feather piece of feather pole 1, set up in the work table 3 for the lower pressure component 5 of the lower pressure feather piece, and the lower pressure component 5 is located at the right side of clamping component 4.
[0033] The clamping component 4 includes the longitudinal setting of arcuate beam 6, the boss 7 of fixedly established on the top surface of arcuate beam 6, the top surface of arcuate beam 6 still fixedly established and located respectively before and after the boss 7 front fixed seat 8 and rear fixed seat 9, the boss 7 on slidingly installed sliding pressure plate 10, the top surface of sliding pressure plate 10 fixedly established has the knob 23, and the rear end portion of sliding pressure plate 10 is fixedly connected with the first spring 11 between rear fixed seat 9, and the front end portion of sliding pressure plate 10 is set up and has the stop 12, and the stop 12 is opposite and stands with front fixed seat 8 before and after.
[0034] The lower pressure component 5 includes the vertical guide rail 14 of fixedly established on the left end surface of vertical guide rail 14, the vertical guide rail 14 on slidingly installed sliding block 15, the top surface of the vertical guide rail 14 on fixedly established two L plates 16, two L plates 16's outer end surface is fixedly established with second spring 17, and the lower end portion of two second springs 17 is fixedly established on the front and rear outer end surface of sliding block 15, the top surface of sliding block 15 is fixedly established with the leftward extension connecting plate 18, and the bottom surface of the extension end of connecting plate 18 is fixedly established with pressure sensor 19, and the wiring head of pressure sensor 19 is connected with controller through signal line, and the bottom of pressure sensor 19 is fixedly established with strip-shaped pressure block 20, and the bottom surface of strip-shaped pressure block 20 is set up with recess 21;The right below of sliding block 15 still is provided with the limiting post 22 of fixedly established on the table surface of work table 3.
[0035] The left end surface of front fixed seat 8 is fixedly established with limiting baffle 24, and limiting baffle 24 is located at the left side of stop 12.The front end surface of connecting plate 18 is fixedly established with handle 25.Two L plates 16's outer end surface is fixedly established with locking screw A 26, and the front and rear end surface of sliding block 15 is fixedly established with locking screw B 27, and the upper end portion of second spring 17 is hung on locking screw A 26, and the lower end portion of second spring 17 is hung on locking screw B 27.
[0036] The working process of the utility model is as follows:
[0037] S1, the jig of the feather piece to be detected is fixed, and the specific operation steps are as follows:
[0038] S11. The worker moves the lever 23 on the sliding pressure plate 10 backward by hand. The lever 23 drives the sliding pressure plate 10 to move backward, and the sliding pressure plate 10 compresses the first spring 11 backward.
[0039] S12, The worker takes out a... Figure 1 The blank shown is inserted from right to left into the stop 12 of the sliding pressure plate 10, with the left end of the blank rod 1 abutting against the limiting baffle 24. Then, the worker releases the lever 23, and under the elastic restoring force of the first spring 11, the sliding pressure plate 10 moves forward. Under the elastic force of the first spring 11, the left end of the blank rod 1 is just fixed between the front fixed seat 8 and the stop 12 of the sliding pressure plate 10, thus achieving the tooling fixation of the blank to be tested. Figures 9-12 As shown, at this time, the right end of the piece is directly below the groove 21 of the strip-shaped pressing block 20;
[0040] S2. The worker presses down on the handle 25, which moves the connecting plate 18 downward. The connecting plate 18 then moves the slider 15 downward along the vertical guide rail 14. The slider 15 stretches the second spring 17 downward. Simultaneously, the connecting plate 18 also moves the pressure sensor 19 and the strip pressure block 20 downward in sync. The strip pressure block 20 gradually presses down on the right end of the felt, causing the felt's rod 1 to gradually bend downward. During the downward bending process, the felt transmits the force it receives to the pressure sensor 19, which then transmits the detected force value to the controller in real time. The force value transmitted to the controller is the real-time elasticity of the felt. When the slider 15 is blocked by the limit post 22, the worker records the final force value fed back to the controller. This final force value is the elasticity value of the felt. If the elasticity value is within the design range, the felt is considered a qualified product; if the elasticity value is outside the design range, the felt is considered a defective product. This completes the test of the elasticity of the first felt.
[0041] S3. Removal of the tested strip: The worker releases the handle 25. Under the elastic restoring force of the second spring 17, the slider 15 moves upward along the vertical direction. The slider 15 drives the connecting plate 18 to move upward. The connecting plate 18 drives the pressure sensor 19 and the strip pressure block 20 to move upward. The strip pressure block 20 separates from the strip. Then the worker moves the lever 23 backward to make the sliding pressure plate 10 move backward. The left end of the strip's strip rod 1 is no longer fixed between the front fixed seat 8 and the sliding pressure plate 10. Then the worker removes the strip.
[0042] S4. Workers can repeat steps S1 to S3 multiple times to complete the test of the elasticity of multiple pieces of fabric.
[0043] Wherein, from steps S1-S2, the worker only needs to move the sliding pressing plate 10 backward with hands first, then embeds the left end of the feather rod 1 of the feather piece into the stop opening 12 of the sliding pressing plate 10, then releases the sliding pressing plate 10 to complete the fixing of the feather piece tool; then the worker presses the handle 25 downward with hands to make the sliding block 15 abut against the top surface of the limiting column 22; finally, the final force value fed back on the controller is read to complete the detection of the elasticity of the feather piece. Thus, compared with the existing feather elasticity tester, the detection device greatly simplifies the elasticity detection process, realizes the detection of all the feather pieces in the workshop within a short time, and greatly improves the detection efficiency of the elasticity of the feather pieces.
[0044] In addition, by detecting the elasticity of the feather piece under the fixed deformation variable, the detection of the elasticity is quantified, and a batch of feather pieces with consistent elasticity is selected, which helps to improve the production quality of the shuttlecock.
[0045] Finally, it should be noted that: the above only describes the preferred embodiments of the present application and is not used to limit the present application, although the present application has been described in detail with reference to the foregoing embodiments, for those skilled in the art, the technical solutions recorded in the foregoing embodiments can still be modified, or some technical features can be replaced. Any modification, equivalent replacement, improvement, etc. within the spirit and principles of the present application shall be included in the protection scope of the present application.
Claims
1. A rapid elasticity testing device for badminton shuttlecock production feathers, characterized in that: It includes workbench (3), set up on workbench (3) for clamping the clamping assembly (4) of the sliver of the sliver (1), set up on workbench (3) for pressing down the pressing down assembly (5) of the sliver, and the pressing down assembly (5) is located at the right side of the clamping assembly (4); The clamping assembly (4) includes an arched beam (6) arranged longitudinally, a boss (7) fixed on the top surface of the arched beam (6), a front fixed seat (8) and a rear fixed seat (9) respectively located on the front and rear sides of the boss (7) are also fixed on the top surface of the arched beam (6), a sliding pressure plate (10) is slidingly installed on the boss (7), a first spring (11) is fixed between the rear end of the sliding pressure plate (10) and the rear fixed seat (9), a stop opening (12) is formed on the front end of the sliding pressure plate (10), and the stop opening (12) is opposite to the front fixed seat (8) front and back. The pressing down assembly (5) includes a vertical guide rail (14) fixed on the left end face of the vertical guide rail (14), a sliding block (15) slidingly installed on the vertical guide rail (14), two L plates (16) are fixed on the top surface of the vertical guide rail (14), two second springs (17) are fixed on the outer end faces of the two L plates (16), the lower ends of the two second springs (17) are respectively fixed on the front and rear outer end faces of the sliding block (15), a connecting plate (18) extending to the left is fixed on the top surface of the sliding block (15), a pressure sensor (19) is fixed on the bottom surface of the extending end of the connecting plate (18), a strip-shaped pressing block (20) is fixed on the bottom of the pressure sensor (19), and a groove (21) is formed on the bottom surface of the strip-shaped pressing block (20). A limiting column (22) fixed on the table top of the workbench (3) is further arranged below the sliding block (15).
2. The device for quickly detecting the elasticity of a feather piece for shuttlecock production according to claim 1, characterized in that: A top surface of the sliding pressure plate (10) is fixed with a knob (23).
3. The device for quickly detecting the elasticity of a feather piece for shuttlecock production according to claim 1, characterized in that: A limiting baffle (24) is fixed on the left end face of the front fixed seat (8), and the limiting baffle (24) is located on the left side of the stop opening (12).
4. The device for quickly detecting the elasticity of a feather piece for shuttlecock production according to claim 1, characterized in that: A handle (25) is fixed on the front end face of the connecting plate (18).
5. The device for rapid detection of the elasticity of feather pieces for shuttlecock production according to claim 1, characterized in that: Locking screws A (26) are fixed on the outer end faces of the two L plates (16), locking screws B (27) are fixed on the front and rear end faces of the sliding block (15), the upper ends of the second springs (17) are hung on the locking screws A (26), and the lower ends of the second springs (17) are hung on the locking screws B (27).
6. The device for rapid detection of the elasticity of feather pieces for shuttlecock production according to claim 1, characterized in that: The wiring head of the pressure sensor (19) is connected with a controller through a signal line.
Citation Information
Patent Citations
A feather elasticity tester
CN109655352B