Sports sock inspection device
By designing a sports sock inspection device that includes inspection wheels and abrasion resistance inspection components, the elasticity, tensile strength, and abrasion resistance of sports socks can be automatically detected. This solves the problems of low inspection efficiency and inability to inspect abrasion resistance in existing technologies, thereby improving inspection efficiency and reducing labor intensity.
Patent Information
- Application Number
- CN202422573294.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-24
- Publication Date
- 2025-12-19
- Estimated Expiration
- 2034-10-24
AI Technical Summary
Existing sports sock testing equipment can only test tensile properties and cannot effectively test abrasion resistance. Furthermore, manual testing is inefficient and labor-intensive.
A sports sock testing device was designed, comprising a testing frame, a protective cover, a testing wheel, a servo motor, a tensioning component, and an abrasion resistance testing component. The servo motor drives the testing wheel to rotate and the friction block to rub, automatically detecting the elasticity, tensile strength, and abrasion resistance of the sports socks.
It enables automatic detection of the elasticity, tensile strength, and abrasion resistance of sports socks, improving detection efficiency and reducing labor intensity.
Smart Images

Figure CN223692149U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the technical field of sports socks inspection, and relates to an inspection device, in particular to a sports socks inspection device. BACKGROUND
[0002] Sports socks are articles needed in people's daily life, are dress articles worn on feet, and are formed by directly weaving silk threads. In the production process of sports socks, the produced sports socks need to be detected after production to check whether the sports socks have large defects.
[0003] The inspection of sports socks is generally achieved by manually pulling the sports socks and then observing, but this method needs workers to pull each sports sock to effectively observe. On the one hand, the workers are prone to missing detection when pulling and observing, and on the other hand, the workers need to use force when pulling the sports socks, and in the process of long-time pulling, the workers are prone to hand fatigue, are prone to weakness, are not conducive to long-time work, and have low detection efficiency.
[0004] After retrieval, a sports sock inspection device is disclosed in Chinese patent documents
Application Number: 202320219162.9; Publication Number: CN219369543U
[0005] Although the sports sock inspection device has high detection efficiency, the patent can only detect the stretchability of sports socks. Since sports socks are continuously rubbed against the inner wall of shoes during movement, the sports socks are prone to wear, so it is necessary to detect the wear resistance of the sports socks. UTILITY MODEL CONTENTS
[0006] The utility model aims at the above problems existing in the prior art and provides a sports sock inspection device. The utility model aims to solve the technical problem of how to detect not only the elasticity and stretchability of sports socks but also the structure and wear resistance of sports socks.
[0007] The utility model can be realized by the following technical solutions.
[0008] The utility model provides a kind of sports socks inspection device, test frame, fixed shield on test frame, rotatingly connected with test wheel in the shield, fixed servo motor one in test frame, the output of servo motor one is coaxially fixed connection with test wheel, sports socks tensioning assembly is set on test wheel, and sliding seat is slidably connected in test frame, and control component is arranged in test frame to control sliding seat to slide, fixed test rod is on sliding seat, and wear resistance test component is set on test rod.
[0009] The working principle of the utility model is: sports socks can be opened by sports socks tensioning assembly, to test the elasticity and tensile strength of sports socks, and the service life of sports socks can be tested by reciprocating sports socks with sports socks tensioning assembly, and the structure of sports socks can be tested by wear resistance test component, and the service life of sports socks can be tested.
[0010] The sports socks tensioning assembly includes a pair of tensioning arms slidably connected on the test wheel, a bidirectional screw rod rotatably connected in the test wheel, the two tensioning arms are threadedly connected with the bidirectional screw rod, and a transmission gear is coaxially fixedly connected on the bidirectional screw rod, a driving motor one is fixed in the test wheel, a driving gear is coaxially fixedly connected to the output end of the driving motor one, and the driving gear is engaged with the transmission gear.
[0011] With the above structure, the driving motor one can drive the driving gear to rotate, the driving gear can drive the transmission gear to rotate after rotating, the transmission gear can drive the bidirectional screw rod to rotate after rotating, and the bidirectional screw rod can drive the two tensioning arms to open after rotating.
[0012] The control component includes a control screw rod rotatably connected in the test frame and a driving motor two fixed in the test frame, the output end of the driving motor two is coaxially fixedly connected with the control screw rod, and the sliding seat is threadedly connected with the control screw rod.
[0013] With the above structure, the driving motor two can drive the control screw rod to rotate, the sliding seat can move after the control screw rod rotates, and the test rod can move after the sliding seat moves, so that the wear resistance test component contacts the sports socks, to wear the sports socks and test the service life and wear resistance.
[0014] The wear resistance test component includes a friction block rotatably connected on the test rod, and anti-skid lines are formed on the surface of the friction block.
[0015] With the above structure, the friction block can contact the sports socks, and the entire test wheel can be driven to rotate by the servo motor one, so that the sports socks continuously contact the friction block, to automatically test the service life and wear resistance of the sports socks.
[0016] A second servo motor is fixed inside the inspection rod, and the output end of the second servo motor is coaxially fixedly connected to the friction block.
[0017] With the above structure, the friction block can be actively driven to rotate by the servo motor, so that it rotates in the opposite direction to the inspection wheel, thereby increasing friction and improving the inspection intensity of sports socks.
[0018] Compared with existing technologies, this sports sock inspection device has the following advantages:
[0019] 1. By stretching the sports socks using the sock stretching component, the elasticity and tensile strength of the sports socks can be tested. Furthermore, by repeatedly expanding and contracting the sports socks using the stretching component, the lifespan of the sports socks can be tested.
[0020] 2. The structure and abrasion resistance of the sports socks are tested using abrasion resistance testing components, and the service life of the sports socks is also tested. Attached Figure Description
[0021] Fig. 1 This is a schematic diagram of the structure of this utility model.
[0022] Fig. 2 This is a schematic diagram of the internal structure of the inspection rack in this utility model.
[0023] Fig. 3 This is a schematic diagram of the internal structure of the inspection wheel in this utility model.
[0024] In the diagram, 1. Inspection frame; 2. Protective cover; 3. Inspection wheel; 4. Servo motor one; 5. Sliding seat; 6. Inspection rod; 7. Tensioning arm; 8. Two-way lead screw; 9. Transmission gear; 10. Drive motor one; 11. Drive gear; 12. Adjustment lead screw; 13. Drive motor two; 14. Friction block; 15. Anti-slip texture; 16. Servo motor two. Detailed Implementation
[0025] The following are specific embodiments of the present invention, which are described in conjunction with the accompanying drawings. However, the present invention is not limited to these embodiments.
[0026] like Figs. 1-3 As shown, a sports sock inspection device includes an inspection frame 1, a protective cover 2 fixed on the inspection frame 1, an inspection wheel 3 rotatably connected inside the protective cover 2, a servo motor 4 fixed inside the inspection frame 1, the output end of the servo motor 4 being coaxially fixedly connected to the inspection wheel 3, a sports sock tensioning component being provided on the inspection wheel 3, a sliding seat 5 being slidably connected inside the inspection frame 1, an adjustment component for controlling the sliding of the sliding seat 5 being provided inside the inspection frame 1, an inspection rod 6 being fixed on the sliding seat 5, and an abrasion resistance inspection component being provided on the inspection rod 6.
[0027] The sports socks can be stretched by the sports socks tightening assembly to test the elasticity and tensile strength of the sports socks, and the sports socks can be expanded and contracted reciprocatingly by the sports socks tightening assembly to test the service life of the sports socks, and the structure of the sports socks can be tested by the wear resistance testing assembly, and the service life of the sports socks can be tested.
[0028] The sports socks tightening assembly comprises a pair of tightening arms 7 slidingly connected on the testing wheel 3, a bidirectional screw rod 8 rotationally connected in the testing wheel 3, the two tightening arms 7 are threadedly connected with the bidirectional screw rod 8, and the bidirectional screw rod 8 is coaxially fixedly connected with a transmission gear 9, a driving motor 10 is fixed in the testing wheel 3, an output end of the driving motor 10 is coaxially fixedly connected with a driving gear 11, and the driving gear 11 is engaged with the transmission gear 9.
[0029] With the above structure, the driving motor 10 can drive the driving gear 11 to rotate, the driving gear 11 can drive the transmission gear 9 to rotate after rotating, the transmission gear 9 can drive the bidirectional screw rod 8 to rotate after rotating, and the bidirectional screw rod 8 can drive the two tightening arms 7 to expand after rotating.
[0030] The control assembly comprises a control screw rod 12 rotationally connected in the testing frame 1 and a driving motor 13 fixed in the testing frame 1, an output end of the driving motor 13 is coaxially fixedly connected with the control screw rod 12, and the sliding seat 5 is threadedly connected with the control screw rod 12.
[0031] With the above structure, the driving motor 13 can drive the control screw rod 12 to rotate, the control screw rod 12 can drive the sliding seat 5 to move after rotating, and the sliding seat 5 can drive the testing rod 6 to move, so that the wear resistance testing assembly contacts the sports socks, the sports socks are worn, and the service life and wear resistance of the sports socks are tested.
[0032] The wear resistance testing assembly comprises a friction block 14 rotationally connected on the testing rod 6, and anti-skid lines 15 are formed on the surface of the friction block 14.
[0033] With the above structure, the friction block 14 can contact the sports socks, and the entire testing wheel 3 can be driven to rotate by the servo motor 4, so that the sports socks continuously contact the friction block 14, and the service life and wear resistance of the sports socks are automatically tested.
[0034] The testing rod 6 is fixedly connected with a servo motor 16, and an output end of the servo motor 16 is coaxially fixedly connected with the friction block 14.
[0035] With the above structure, the servo motor 16 can drive the friction block 14 to rotate, so that the friction block 14 rotates in the opposite direction of the testing wheel 3, the friction force is increased, and the testing strength of the sports socks is improved.
[0036] The working principle of the utility model is: through the movement socks on two tight arms 7, at this time through the drive motor 10 drive gear 11 rotation, drive gear 11 rotation will drive gear 9 rotation, drive gear 9 rotation will drive bidirectional screw 8 rotation, bidirectional screw 8 rotation will drive two tight arms 7 to open the action of movement socks, so as to test the elasticity and tensile strength of movement socks, and can be through tight arms 7 reciprocating to movement socks are unfolded and contraction movement, realize the service life of the test movement socks, through the drive motor 13 drive control screw 12 rotation, control screw 12 rotation will drive sliding seat 5 movement, sliding seat 5 drive test rod 6 movement, so that the friction block 14 contact movement socks, again through servo motor 4 drive the whole test wheel 3 rotation, make movement socks constantly contact friction block 14, so as to automatically test the service life and wear resistance of movement socks, in this process can be through servo motor 16 drive friction block 14 rotation, make opposite rotation with test wheel 3, increase friction, improve the test strength of movement socks.
[0037] Summarize, through the movement socks tight component and open the movement socks, so as to test the elasticity and tensile strength of movement socks, and can be through the movement socks tight component reciprocating to movement socks are unfolded and contraction movement, realize the service life of the test movement socks, and through the wear resistance test component to the structural property of movement socks are tested, and test the service life of movement socks.
[0038] The specific embodiments described herein are merely illustrative of the spirit of the utility model. The skilled in the art to which the utility model belongs can make various modifications or supplements to the described specific embodiments or replace with similar ways, but will not deviate from the spirit of the utility model or beyond the scope defined by the appended claims.
Claims
1. A hosiery inspection apparatus comprising an inspection stand (1), a protective cover (2) fixed to the inspection stand (1), characterized in that, The protective cover (2) is rotatably connected with a test wheel (3), the test frame (1) is fixed with a servo motor (4), the output end of the servo motor (4) is coaxially fixedly connected with the test wheel (3), the test wheel (3) is provided with a sports sock tightening assembly, and the test frame (1) is slidably connected with a sliding seat (5), the test frame (1) is provided with a control assembly for controlling the sliding of the sliding seat (5), the sliding seat (5) is fixed with a test rod (6), and the test rod (6) is provided with a wear resistance test assembly.
2. An athletic sock inspection device according to claim 1, wherein, The sports sock tightening assembly includes a pair of tightening arms (7) slidably connected to the test wheel (3), a bidirectional screw (8) rotatably connected to the test wheel (3), the two tightening arms (7) are threadedly connected with the bidirectional screw (8), and the bidirectional screw (8) is coaxially fixedly connected with a transmission gear (9), the test wheel (3) is fixed with a drive motor (10), the output end of the drive motor (10) is coaxially fixedly connected with a drive gear (11), and the drive gear (11) is engaged with the transmission gear (9).
3. An athletic sock inspection device according to claim 1, wherein, The control assembly includes a control screw (12) rotatably connected in the test frame (1), and a drive motor (13) fixed in the test frame (1), the output end of the drive motor (13) is coaxially fixedly connected with the control screw (12), and the sliding seat (5) is threadedly connected with the control screw (12).
4. An athletic sock inspection device according to claim 1, wherein, The wear resistance test assembly includes a friction block (14) rotatably connected to the test rod (6), and the surface of the friction block (14) is provided with anti-skid lines (15).
5. An athletic sock inspection device according to claim 4, wherein, The test rod (6) is fixed with a servo motor (16), and the output end of the servo motor (16) is coaxially fixedly connected with the friction block (14).
Citation Information
Patent Citations
Sports sock inspection device
CN219369543U