Cashmere sweater anti-pilling detection device
By designing a cashmere sweater anti-pilling detection device and using a fixing mechanism and a cylinder lifting mechanism to make the detection fabric rub against the cashmere sweater, the problem that the existing device cannot simultaneously detect the anti-pilling ability of multiple fabrics is solved, and the detection efficiency is improved.
Patent Information
- Application Number
- CN202421188401.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-05-28
- Publication Date
- 2025-09-12
- Estimated Expiration
- 2034-05-28
AI Technical Summary
Existing cashmere sweater anti-pilling detection devices are unable to simultaneously detect the anti-pilling capabilities of multiple different fabrics, resulting in low detection efficiency.
A cashmere sweater anti-pilling detection device was designed. The cashmere sweater and various test fabrics were fixed by a fixing mechanism. The test fabrics were rubbed against the cashmere sweater using a cylinder and a lifting mechanism to observe the pilling condition on the cashmere sweater surface.
It realizes the simultaneous detection of the anti-pilling ability of cashmere sweaters against a variety of different fabrics, thus improving the detection efficiency.
Smart Images

Figure CN223332868U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of cashmere sweater anti-pilling detection, in particular to a cashmere sweater anti-pilling detection device. Background Art
[0002] When a cashmere sweater is worn, friction will cause the fibers on the surface to entangle with each other, forming many small spherical particles. After the cashmere sweater is made, it needs to be tested for anti-pilling to detect the anti-pilling ability of the cashmere sweater. Different clothes rub against the cashmere sweater, and the pilling situation of the cashmere sweater will also be different. The cashmere sweater anti-pilling detection device in the prior art cannot simultaneously detect the anti-pilling ability of the cashmere sweater for multiple different fabrics, which reduces the detection efficiency. For this reason, the present application proposes a cashmere sweater anti-pilling detection device. Utility Model Content
[0003] The present application proposes a cashmere sweater anti-pilling detection device. By setting up a series of structures, it solves the problem that when a cashmere sweater is worn, friction will cause the fibers on the surface to entangle with each other, forming many small spherical particles. After the cashmere sweater is produced, it needs to be tested for anti-pilling ability to detect the anti-pilling ability of the cashmere sweater. Different clothes rub against the cashmere sweater, and the pilling situation of the cashmere sweater will also be different. The cashmere sweater anti-pilling detection device in the prior art cannot simultaneously detect the anti-pilling ability of the cashmere sweater for multiple different fabrics, thereby reducing the detection efficiency.
[0004] The present application proposes a cashmere sweater anti-pilling detection device, comprising a base, a fixing mechanism provided at the four corners of the top of the base, two lifting mechanisms symmetrically mounted on the base, the other ends of the two lifting mechanisms being commonly connected to a support plate, a plurality of sliding sleeves being uniformly slidably provided on the support plate, the plurality of sliding sleeves being interconnected by a moving mechanism, and a detection component being provided below the sliding sleeves;
[0005] The moving mechanism includes a cylinder fixed transversely to the top of the support plate, the output end of the cylinder is connected to a moving rod, and multiple sliding sleeves are connected to each other through the moving rod;
[0006] The detection component includes a connecting rod connected to the bottom of the sliding sleeve, the bottom of the connecting rod is connected to the detection block, a plurality of sliding grooves are opened on the side wall of the detection block, a first electric telescopic rod is fixed to the top of the inner cavity of the detection block, the other end of the first electric telescopic rod is downward and connected to the connecting disk, a plurality of fixing rods are evenly connected to the bottom of the connecting disk, the other end of the fixing rod is horizontally connected to the lifting plate, the other end of the lifting plate extends through the sliding groove to the outside of the detection block and is connected to a hook.
[0007] Furthermore, the fixing mechanism includes a groove formed on the top of the base, a transverse moving component is provided in the groove, and a fixing component is connected to the top of the transverse moving component.
[0008] Furthermore, the transverse moving component includes a first sliding rod fixed in the groove, a plurality of first limiting holes are opened on the first sliding rod, a first slider is slidably arranged on the first sliding rod, a first limiting hole is opened on the first slider, and also includes a first limiting rod, and the first limiting rod passes through the first limiting hole in sequence.
[0009] Furthermore, the fixing component includes a second sliding rod connected to the top of the first sliding rod, a first splint is connected to one side of the bottom of the second sliding rod, a plurality of second limiting holes are provided on the second sliding rod, a second sliding rod is slidingly arranged on the second sliding rod, a second limiting hole is provided on the second sliding rod, a second splint matching the first splint is connected to one side of the second slider, and also includes a second limiting rod, and the second limiting rod passes through the second limiting holes in sequence.
[0010] Furthermore, the lifting mechanism includes a first electric telescopic rod, one end of a second electric telescopic rod is fixed to the top of the base, and the other end of the second electric telescopic rod is connected to the bottom of the support plate.
[0011] Furthermore, rubber pads are provided on the sides of the first and second clamping plates that are close to each other.
[0012] It can be seen from the above technical solution that when in use, the cashmere sweater that needs to be tested for pilling resistance is spread flat on the base, and then the cashmere sweater is fixed by the fixing mechanisms arranged at the four corners of the top of the base. At the same time, a variety of different test cloths are fixed to the bottoms of a plurality of test blocks respectively. Specifically, it should be noted here that holes matching the hooks are provided on the test cloths. At this time, the test cloth is located under the test block and the holes provided on the test cloth are hung on the hooks respectively. Then the first electric telescopic rod is started. The first electric telescopic rod drives the connecting plate to move upward, and at the same time drives the fixing rod to move upward, and finally drives the lifting plate to move upward in the slide slot, so that the test cloth can be tightly attached to the bottom of the test block. At this time, the test cloth has been fixed, and then the test cloth is moved up by starting the lifting mechanism. The height of the component is adjusted so that the detection cloth fixed at the bottom of the detection block contacts the cashmere sweater laid flat on the base, and finally the cylinder is started. The cylinder drives multiple sliding sleeves to slide back and forth on the support plate through the connecting rod, so that the different detection cloths fixed at the bottom of the multiple detection blocks rub against the cashmere sweater, and the balloon condition on the surface of the cashmere sweater is observed. This solves the problem that during the wearing process of the cashmere sweater, friction will cause the fibers on the surface to entangle with each other, forming many small spherical particles. After the cashmere sweater is made, it needs to be tested for anti-pilling ability to detect the anti-pilling ability of the cashmere sweater. Different clothes rub against the cashmere sweater, and the pilling situation of the cashmere sweater will also be different. The cashmere sweater anti-pilling detection device in the prior art cannot simultaneously detect the anti-pilling ability of the cashmere sweater for multiple different fabrics, thereby reducing the detection efficiency.
[0013] Compared with the prior art, the beneficial effects of the present invention are:
[0014] 1. The present application sets a series of structures to simultaneously detect the anti-pilling ability of cashmere sweaters for multiple different fabrics. Specifically, the cashmere sweater is laid flat on the base and fixed by a fixing mechanism. At the same time, multiple different detection cloths are respectively fixed on the bottom of multiple detection blocks. It should be noted here that the detection cloths are each provided with holes matching the hooks. At this time, the holes opened on the detection cloths are respectively hung on the hooks, and then the first electric telescopic rod is started, which eventually drives the lifting plate to move upward so that the detection cloths are tightly attached to the bottom of the detection block. Then, by starting the lifting mechanism, the detection cloth fixed on the bottom of the detection block contacts the cashmere sweater laid flat on the base. By starting the cylinder, the different detection cloths fixed on the bottom of the multiple detection blocks are rubbed against the cashmere sweater to observe the balloon condition on the surface of the cashmere sweater. This solves the problem that the cashmere sweater anti-pilling ability of the prior art cashmere sweater cannot be detected simultaneously for multiple different fabrics, thereby reducing the detection efficiency. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] In order to more clearly illustrate the technical solution of this application, the following is a brief introduction to the drawings required for the implementation cases. Obviously, for ordinary technicians in this field, other drawings can be obtained based on these drawings without any creative work.
[0016] Figure 1 This is a structural schematic diagram of a cashmere sweater anti-pilling detection device proposed by the utility model;
[0017] Figure 2 This is an enlarged schematic diagram of point A in the cashmere sweater anti-pilling detection device proposed by the present invention;
[0018] Figure 3 This is an enlarged schematic diagram of point B in the cashmere sweater anti-pilling detection device proposed by the present invention;
[0019] Figure 4 This is a supplementary structural diagram of a cashmere sweater anti-pilling detection device proposed in the utility model;
[0020] Illustration:
[0021] Among them: 1. base, 2. support plate, 3. sliding sleeve, 4. cylinder, 5. moving rod, 6. connecting rod, 7. detection block, 9. first electric telescopic rod, 10. connecting plate, 11. fixing rod, 13. lifting plate, 14. hook, 15. groove, 16. first sliding rod, 17. first limiting hole, 18. first slider, 19. first limiting rod, 20. second sliding rod, 21. first splint, 22. second limiting hole, 23. second slider, 24. second splint, 25. second limiting rod, 26. second electric telescopic rod, 27. rubber pad, 28. detection cloth, 29. hole. DETAILED DESCRIPTION
[0022] In order to enable people skilled in the art to better understand the technical solutions in the present application, the technical solutions in the embodiments of the present application will be clearly and completely described below in conjunction with the accompanying drawings.
[0023] See also Figures 1-4 .
[0024] When a cashmere sweater is worn, friction will cause the fibers on the surface to entangle with each other, forming many small spherical particles. After the cashmere sweater is made, it needs to be tested for anti-pilling to detect the anti-pilling ability of the cashmere sweater. Different clothes rub against the cashmere sweater, and the pilling situation of the cashmere sweater will also be different. The cashmere sweater anti-pilling detection device in the prior art cannot simultaneously detect the anti-pilling ability of the cashmere sweater for a variety of different fabrics, which reduces the detection efficiency. To this end, the application proposes a cashmere sweater anti-pilling detection device, comprising a base 1, a fixing mechanism is provided at the four corners of the top of the base 1, two lifting mechanisms are symmetrically installed on the base 1, and the other ends of the two lifting mechanisms are commonly connected to a support plate 2, a plurality of sliding sleeves 3 are uniformly provided on the support plate 2 for sliding, and the plurality of sliding sleeves 3 are connected to each other by a moving mechanism, and a detection component is provided below the sliding sleeve 3;
[0025] The moving mechanism includes a cylinder 4 fixed laterally to the top of the support plate 2. The output end of the cylinder 4 is connected to a moving rod 5. The multiple sliding sleeves 3 are connected to each other through the moving rod 5. Specifically, by starting the cylinder 4, the cylinder 4 drives the multiple sliding sleeves 3 to slide back and forth on the support plate 2 through the connecting rod 6, so that the detection component rubs against the cashmere sweater to observe the balloon condition on the cashmere sweater surface.
[0026] The detection component includes a connecting rod 6 connected to the bottom of the sliding sleeve 3, the bottom of the connecting rod 6 is connected to the detection block 7, the side wall of the detection block 7 is provided with a plurality of slide grooves, and a first electric telescopic rod 9 is fixed to the top of the inner cavity of the detection block 7, and the other end of the first electric telescopic rod 9 is downward and connected to a connecting disk 10, and a plurality of fixing rods 11 are evenly connected to the bottom of the connecting disk 10, and the other end of the fixing rod 11 is horizontally connected to a lifting plate 12, and the other end of the lifting plate 12 extends through the slide groove to the outside of the detection block 7 and is connected to a hook 14. Specifically, the cashmere sweater is laid flat on the base 1 and then fixed by a fixing mechanism. At the same time, a variety of different detection cloths 28 are respectively fixed to the bottoms of the plurality of detection blocks 7. Specifically, it should be noted here that the detection cloths 28 are provided with holes 29 that match the hooks 14. At this time, The detection cloth 28 is located below the detection block 7 and the holes 29 opened on the detection cloth 28 are hung on the hooks 14 respectively, and then the first electric telescopic rod 9 is started. The first electric telescopic rod 9 drives the connecting plate 10 to move upward, and at the same time drives the fixing rod 11 to move upward, and finally drives the lifting plate 12 to move upward in the slide groove, so that the detection cloth 28 can be tightly fitted to the bottom of the detection block 7. At this time, the detection cloth 28 has been fixed. Then, by starting the lifting mechanism, the height of the detection component is adjusted so that the detection cloth 28 fixed at the bottom of the detection block 7 contacts the cashmere sweater laid flat on the base 1, and finally the cylinder 4 is started. The cylinder 4 drives multiple sliding sleeves 3 to slide back and forth on the support plate 2 through the connecting rod 6, so that the different detection cloths 28 fixed at the bottom of multiple detection blocks 7 rub against the cashmere sweater to observe the balloon condition on the surface of the cashmere sweater.
[0027] Furthermore, the fixing mechanism includes a groove 15 opened at the top of the base 1, a transverse moving component is arranged in the groove 15, and the top of the transverse moving component is connected to a fixing component. Specifically, the setting of the transverse moving component enables it to adapt to cashmere sweaters of different sizes, and the setting of the fixing component enables it to adapt to cashmere sweaters of different thicknesses.
[0028] Furthermore, the transverse moving component includes a first sliding rod 16 fixed in the groove 15, and a plurality of first limiting holes 17 are provided on the first sliding rod 16. A first slider 18 is slidably provided on the first sliding rod 16, and the first limiting hole 17 is provided on the first slider 18. It also includes a first limiting rod 19, and the first limiting rod 19 passes through the first limiting hole 17 in sequence. Specifically, for cashmere sweaters of different sizes, the first slider 18 can be slid to a suitable position by sliding the first slider 18, and then the first limiting rod 19 is passed through the first limiting hole 17 provided on the first slider 18 and the first sliding rod 16 in sequence to fix the position of the fixed component.
[0029] Furthermore, the fixing component includes a second slide bar 20 connected to the top of the first slider 18, a first splint 21 is connected to one side of the bottom of the second slide bar 20, a plurality of second limiting holes 22 are opened on the second slide bar 20, a second slide bar 23 is slidably provided on the second slide bar 20, a second limiting hole 22 is opened on the second slide bar 23, a second splint 24 matching the first splint 21 is connected to one side of the second slide bar 23, and a second limiting rod 25 is further included. The second limiting rod 25 passes through the second limiting hole 22 in sequence. Specifically, according to the different sizes of sheep After the position of the horizontally movable part of the cashmere sweater is fixed, the four corners of the cashmere sweater are placed on the four first plywood 21 respectively, and the second plywood 24 is moved toward the first plywood 21 by sliding the second slider 23 until the cashmere sweater is fixed. Then the second limiting rod 25 is passed through the second limiting hole 22 opened on the second slider 23 and the second slide bar 20 in turn to fix the cashmere sweater. It should also be noted here that by setting the second slider 23, the second slide bar 20, and the second limiting rod 25, cashmere sweaters of different thicknesses can be fixed.
[0030] Furthermore, the lifting mechanism includes a first electric telescopic rod 9, one end of the second electric telescopic rod 26 is fixed to the top of the base 1, and the other end of the second electric telescopic rod 26 is connected to the bottom of the support plate 2. Specifically, by starting the second electric telescopic rod 26, the height of the detection component can be adjusted, and finally the detection cloth 28 fixed at the bottom of the detection block 7 is brought into contact with the cashmere sweater laid flat on the base 1.
[0031] Furthermore, a rubber pad 27 is provided on the side where the first and second plywood 21 and 24 are close to each other. Specifically, by providing the rubber pad 27, the cashmere sweater can be prevented from being deformed due to the mutual clamping of the first and second plywood 21 and 24.
[0032] As can be seen from the above technical solution, when in use, the cashmere sweater that needs to be tested for anti-pilling ability is laid flat on the base 1, and then the cashmere sweater is fixed by the fixing mechanism provided at the four corners of the top of the base 1. Specifically, for cashmere sweaters of different sizes, the first slider 18 can be slid to a suitable position by sliding the first slider 18, and then the first limiting rod 19 is passed through the first limiting hole 17 provided on the first slider 18 and the first slide rod 16 in sequence, so that the position of the fixing component can be fixed. Furthermore, after the position of the horizontal moving component is fixed according to the cashmere sweaters of different sizes, the four corners of the cashmere sweater are respectively placed on the four first plywoods. 21, by sliding the second slider 23, the second clamping plate 24 moves toward the first clamping plate 21 until the cashmere sweater is fixed, and then the second limiting rod 25 is sequentially passed through the second slider 23 and the second limiting hole 22 opened on the second slide bar 20 to fix the cashmere sweater. It should be noted here that by providing the second slider 23, the second slide bar 20, and the second limiting rod 25, cashmere sweaters of different thicknesses can be fixed, and a rubber pad 27 is provided on the side where the first clamping plate 21 and the second clamping plate 24 are close to each other, which can prevent the cashmere sweater from being deformed due to the mutual clamping of the first clamping plate 21 and the second clamping plate 24;
[0033] At the same time, a plurality of different detection cloths 28 are respectively fixed to the bottom of a plurality of detection blocks 7. Specifically, it should be noted here that holes 29 matching the hooks 14 are opened on the detection cloths 28. At this time, the detection cloth 28 is located below the detection block 7 and the holes 29 opened on the detection cloth 28 are hung on the hooks 14 respectively. Then, the first electric telescopic rod 9 is started. The first electric telescopic rod 9 drives the connecting plate 10 to move upward, and at the same time drives the fixing rod 11 to move upward, and finally drives the lifting plate 12 to move upward in the slide groove, so that the detection cloth 28 can be tightly attached to the bottom of the detection block 7. At this time, the detection cloth 28 has been fixed. Then, by starting the second electric telescopic rod 26, the height of the detection component is adjusted so that the bottom of the detection block 7 is fixed. The detection cloth 28 contacts the cashmere sweater laid flat on the base 1, and finally the cylinder 4 is started. The cylinder 4 drives multiple sliding sleeves 3 to slide back and forth on the support plate 2 through the connecting rod 6, so that the different detection cloths 28 fixed at the bottom of the multiple detection blocks 7 are rubbed with the cashmere sweater, and the balloon condition on the surface of the cashmere sweater is observed. This solves the problem that the fibers on the surface of the cashmere sweater will be entangled with each other during the wearing process, forming many small spherical particles. After the cashmere sweater is made, it needs to be tested for its anti-pilling ability to detect the anti-pilling ability of the cashmere sweater. Different clothes will cause different pilling conditions of the cashmere sweater when rubbed against the cashmere sweater. The cashmere sweater anti-pilling detection device in the prior art cannot simultaneously detect the anti-pilling ability of the cashmere sweater for multiple different fabrics, thereby reducing the detection efficiency.
[0034] Those skilled in the art will readily appreciate other embodiments of the present application after considering the specification and practicing the application disclosed herein. This application is intended to cover any variations, uses, or adaptations of the present application that follow the general principles of this application and include common knowledge or customary techniques in the art not disclosed herein. The description and examples are to be considered merely as exemplary, and the true scope of this application is indicated by the claims.
[0035] It should be understood that the present application is not limited to the precise structure described above and shown in the drawings, and various modifications and changes can be made without departing from the scope thereof. The above-described embodiments of the present application do not constitute a limitation on the scope of protection of the present application.
Claims
1. A cashmere sweater anti-pilling detection device, characterized by: The invention comprises a base (1), wherein fixing mechanisms are provided at the four corners of the top of the base (1), two lifting mechanisms are symmetrically installed on the base (1), the other ends of the two lifting mechanisms are commonly connected to a support plate (2), a plurality of sliding sleeves (3) are uniformly slidably provided on the support plate (2), the plurality of sliding sleeves (3) are mutually connected via a moving mechanism, and a detection component is provided below the sliding sleeves (3); The moving mechanism comprises a cylinder (4) fixed transversely to the top of the support plate (2); the output end of the cylinder (4) is connected to a moving rod (5); and the plurality of sliding sleeves (3) are connected to each other via the moving rod (5); The detection component includes a connecting rod (6) connected to the bottom of the sliding sleeve (3), the bottom of the connecting rod (6) is connected to a detection block (7), a plurality of sliding grooves are provided on the side wall of the detection block (7), a first electric telescopic rod (9) is fixed to the top of the inner cavity of the detection block (7), the other end of the first electric telescopic rod (9) is downward and connected to a connecting disk (10), a plurality of fixed rods (11) are evenly connected to the bottom of the connecting disk (10), the other end of the fixed rod (11) is horizontally connected to a lifting plate (13), the other end of the lifting plate (13) passes through the sliding groove and extends to the outside of the detection block (7) and is connected to a hook (14).
2. The cashmere sweater anti-pilling detection device according to claim 1, characterized in that: The fixing mechanism comprises a groove (15) opened on the top of the base (1), a transverse moving component is arranged in the groove (15), and a fixing component is connected to the top of the transverse moving component.
3. The cashmere sweater anti-pilling detection device according to claim 2, characterized in that: The transverse moving component includes a first sliding rod (16) fixed in the groove (15), a plurality of first limiting holes (17) are provided on the first sliding rod (16), a first slider (18) is slidably provided on the first sliding rod (16), the first slider (18) is provided with the first limiting hole (17), and also includes a first limiting rod (19), the first limiting rod (19) passes through the first limiting hole (17) in sequence.
4. The cashmere sweater anti-pilling detection device according to claim 3, characterized in that: The fixing component includes a second slide bar (20) connected to the top of the first slide bar (18), a first clamping plate (21) is connected to one side of the bottom of the second slide bar (20), a plurality of second limiting holes (22) are provided on the second slide bar (20), a second slide bar (23) is slidably provided on the second slide bar (20), a second limiting hole (22) is provided on the second slide bar (23), a second clamping plate (24) matching the first clamping plate (21) is connected to one side of the second slide bar (23), and also includes a second limiting rod (25), and the second limiting rod (25) passes through the second limiting hole (22) in sequence.
5. The cashmere sweater anti-pilling detection device according to claim 1, characterized in that: The lifting mechanism comprises a second electric telescopic rod (26), one end of the second electric telescopic rod (26) is fixed to the top of the base (1), and the other end of the second electric telescopic rod (26) is connected to the bottom of the support plate (2).
6. The cashmere sweater anti-pilling detection device according to claim 4, characterized in that: A rubber pad (27) is provided on each side of the first clamping plate (21) and the second clamping plate (24) that are close to each other.