Anti-static cardigan
By using conductive fibers and metal buttons in the cardigan and combining the electrostatic removal components of the body and sleeves, the static problems of traditional cardigans in the fall and winter are solved, and effective static removal and protection are achieved.
Patent Information
- Application Number
- CN202422201955.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-09
- Publication Date
- 2025-06-06
- Estimated Expiration
- 2034-09-09
AI Technical Summary
Traditional cardigans are prone to static electricity when worn in autumn and winter, causing discomfort to the wearer and poor anti-static effect.
An anti-static cardigan was designed, using conductive fibers to sew evenly distributed metal buttons, and electrostatic removal components were installed on the body and sleeves, including anti-static linings, conductive fiber cloth strips, conductive fiber mesh and metal electrostatic absorption discs, through which static conduction and export.
Effectively prevent static electricity, avoid contact with the skin, improve the wearing experience, and enhance the anti-static effect.
Smart Images

Figure CN222941826U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of cardigans, in particular to an antistatic cardigan. Background Art
[0002] Cardigan is a loose-fitting top, usually a sweater. Traditional cardigans are usually long-sleeved, sleeveless, or 3 / 4-length, and have buttons on the front of the garment. There are also buttonless cardigans, which are designed so that the wearer only needs to open the front naturally.
[0003] Existing cardigans are generally woven with yarns with longer fabric fibers, which makes the appearance of the cardigan more beautiful. However, cardigans woven with yarns with longer fabric fibers are prone to generate static electricity when in contact with the skin when worn by users in autumn and winter. Users will feel uncomfortable and have a poor wearing experience. There is a problem of poor anti-static effect. For this reason, we propose an anti-static cardigan. Utility Model Content
[0004] The technical problem to be solved by the utility model is to overcome the existing defects and provide an anti-static cardigan which can effectively prevent the generation of static electricity and effectively solve the problems in the background technology.
[0005] To achieve the above-mentioned purpose, the utility model provides the following technical solutions: an anti-static cardigan, comprising a cardigan body and a cardigan body anti-static component;
[0006] Cardigan body: the front side is sewn with evenly distributed metal buttons through conductive fibers, and sleeve arm anti-static components are installed on the two sleeve arms on both sides of the cardigan body;
[0007] The static electricity removal component of the body comprises an antistatic lining, a conductive fiber cloth strip, a conductive fiber net and a metal static electricity absorption plate. The antistatic lining is sewn inside the body of the cardigan body, and conductive fiber cloth strips that are staggered are sewn between the antistatic lining and the body of the cardigan body. Two openings are arranged on the front side of the body of the cardigan body, and two corresponding conductive fiber nets are sewn inside the openings. The conductive fiber net on the back side is connected to the corresponding conductive fiber cloth strips, and the interior of the two conductive fiber nets is filled with a metal static electricity absorption plate. The static electricity on the body of the cardigan body is removed by arranging the static electricity removal component of the body.
[0008] Furthermore, the sleeve arm static electricity removal component includes a conductive metal wire, an outer wrapping cloth strip, a conductive metal ring and a flexible conductive cloth ring. Two corresponding outer wrapping cloth strips are sewn on the two sleeve arms on both sides of the cardigan body, and the conductive metal wire is arranged inside the outer wrapping cloth strip. Two openings are arranged on the two sleeve arms on both sides of the cardigan body, and flexible conductive cloth rings are fixed inside the openings. A conductive metal ring is fixed on the surface of the flexible conductive cloth ring, and the conductive metal ring is connected to the conductive metal wire. By setting the sleeve arm static electricity removal component, the static electricity on the two sleeve arms of the cardigan body is removed.
[0009] Furthermore, two pockets are arranged on the front side of the cardigan body, and the metal electrostatic absorption plate is located inside the pockets. The two pockets are provided to protect the metal electrostatic absorption plate.
[0010] Furthermore, a metal wire is fixed to the edge of the pocket, a metal zipper is provided at the opening, and the metal wire is connected to the metal zipper and the metal static absorption plate respectively. The static electricity on the body of the cardigan is conducted to the outside by providing the metal wire and the metal zipper.
[0011] Furthermore, it also includes two elastic tightening rings, which are respectively fixed to the lower ends of the two sleeve arms of the cardigan body. The sleeves of the cardigan body are tightened on the user's arms by setting the elastic tightening rings.
[0012] Compared with the prior art, the beneficial effects of the utility model are: the anti-static cardigan has the following advantages:
[0013] 1. By setting up the anti-static component on the body, the static electricity generated by the body of the cardigan will be blocked by the anti-static lining when in use, and the static electricity will be prevented from contacting the user's skin. The static electricity generated by the body of the cardigan will be conducted to the two conductive fiber nets on the rear side through the evenly distributed conductive fiber strips, and then conducted to the two metal wires. The static electricity on the two metal wires will be conducted out through the two metal zippers. In this case, the static electricity on the body of the cardigan can be removed to prevent it from harming the user.
[0014] 2. By setting up the sleeve anti-static components, the anti-static lining inside the two sleeves of the cardigan body will also block static electricity when in use, and the static electricity generated by the sleeves will be conducted to the conductive metal ring by the conductive metal wire and the flexible conductive cloth ring. In this way, the static electricity on the sleeves of the cardigan body can be prevented from damaging the user. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 This is a schematic diagram of the front structure of the utility model;
[0016] Figure 2This is a schematic diagram of the structure of the conductive fiber ring of the utility model;
[0017] Figure 3 This is a schematic diagram of the structure of the static electricity removal component of the sleeve arm of the utility model;
[0018] Figure 4 This is a schematic diagram of the structure of the static electricity removal component of the garment body of the present invention.
[0019] In the figure: 1 cardigan body, 2 sleeve arm anti-static component, 21 conductive metal wire, 22 outer wrapping cloth strip, 23 conductive metal ring, 24 flexible conductive cloth ring, 3 body anti-static component, 31 anti-static lining, 32 conductive fiber cloth strip, 33 conductive fiber mesh, 34 metal static absorption plate, 4 pocket, 5 metal wire, 6 metal zipper, 7 metal button, 8 elastic tightening ring. DETAILED DESCRIPTION
[0020] The following will be combined with the drawings in the embodiments of the utility model to clearly and completely describe the technical solutions in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all of the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the utility model.
[0021] See also Figure 1-4 , This embodiment provides a technical solution: an anti-static cardigan, comprising a cardigan body 1 and a cardigan body anti-static component 3;
[0022] Cardigan body 1: The front side is sewn with evenly distributed metal buttons 7 through conductive fibers, and sleeve arm anti-static components 2 are installed on the two sleeves on both sides of the cardigan body 1. The sleeve arm anti-static components 2 include conductive metal wires 21, outer wrapping cloth strips 22, conductive metal rings 23 and flexible conductive cloth rings 24. Two corresponding outer wrapping cloth strips 22 are sewn on the two sleeves on both sides of the cardigan body 1, and conductive metal wires 21 are arranged inside the outer wrapping cloth strips 22. Two openings are arranged on the two sleeves on both sides of the cardigan body 1, and flexible conductive cloth rings 24 are fixed inside the openings. Conductive metal rings 23 are fixed on the surface of the flexible conductive cloth rings 24, and the conductive metal rings 23 are connected to the conductive metal wires 21. Static electricity on the two sleeves of the cardigan body 1 is removed by arranging the sleeve arm anti-static components 2;
[0023] The body anti-static component 3 includes an anti-static lining 31, a conductive fiber cloth strip 32, a conductive fiber mesh 33 and a metal static absorption plate 34. The anti-static lining 31 is sewn inside the body of the cardigan body 1, and staggered conductive fiber cloth strips 32 are sewn between the anti-static lining 31 and the body of the cardigan body 1. Two openings are arranged on the front side of the body of the cardigan body 1, and two corresponding conductive fiber meshes 33 are sewn inside the openings. The conductive fiber mesh 33 on the back side is connected to the corresponding conductive fiber cloth strips 32, and the interior of the two conductive fiber meshes 33 is filled with a metal static absorption plate 34. The static electricity on the body of the cardigan body 1 is removed by setting the body anti-static component 3.
[0024] Wherein: the front side of the cardigan body 1 is provided with two pockets 4, and the metal electrostatic absorption plate 34 is located inside the pockets 4. The two pockets 4 are provided to protect the metal electrostatic absorption plate 34.
[0025] Wherein: a metal wire 5 is fixed to the edge of the pocket 4, a metal zipper 6 is arranged at the opening, the metal wire 5 is connected to the metal zipper 6 and the metal static absorption plate 34 respectively, and the static electricity on the cardigan body 1 is conducted to the outside by arranging the metal wire 5 and the metal zipper 6.
[0026] Among them: it also includes an elastic tightening ring 8, two elastic tightening rings 8 are provided, and the two elastic tightening rings 8 are respectively fixed to the lower ends of the two sleeve arms of the cardigan body 1. By setting the elastic tightening rings 8, the sleeves of the cardigan body 1 are tightened on the user's arms.
[0027] The working principle of an anti-static cardigan provided by the utility model is as follows: by arranging a static electricity removal component on the body of the cardigan, the static electricity generated on the body of the cardigan main body 1 will be blocked by the anti-static lining 31 when in use, and the static electricity will be prevented from contacting the user's skin after being blocked, and the static electricity generated on the body of the cardigan main body 1 will be conducted to the two conductive fiber meshes 33 on the rear side through the evenly distributed conductive fiber cloth strips 32, and then conducted to the two metal wires 5, and the static electricity on the two metal wires 5 will be conducted out through the two metal zippers 6, in this case, the static electricity on the body of the cardigan main body 1 can be removed, and the static electricity generated on the sleeve arm will be conducted to the conductive metal wire 21 and the flexible conductive cloth ring 24 to the conductive metal ring 23 for conduction, in this case, the static electricity on the sleeve arm of the cardigan main body 1 can be prevented from damaging the user.
[0028] The above description is only an embodiment of the present invention, and does not limit the patent scope of the present invention. Any equivalent structure or equivalent process transformation made by using the contents of the specification and drawings of the present invention, or directly or indirectly applied in other related technical fields, are also included in the patent protection scope of the present invention.
Claims
1. An anti-static cardigan, characterized in that: It comprises a cardigan body (1) and a cardigan body static electricity removal component (3); Cardigan body (1): the front side is sewn with evenly distributed metal buttons (7) through conductive fibers, and sleeve arm static electricity removal components (2) are installed on two sleeve arms on both sides of the cardigan body (1); The static electricity removal component (3) for the garment body comprises an antistatic lining (31), a conductive fiber cloth strip (32), a conductive fiber net (33) and a metal static electricity absorption plate (34). The antistatic lining (31) is sewn inside the garment body of the cardigan body (1), and conductive fiber cloth strips (32) distributed in an alternating manner are sewn between the antistatic lining (31) and the garment body of the cardigan body (1). Two openings are arranged on the front side of the garment body of the cardigan body (1), and two corresponding conductive fiber nets (33) are sewn inside the openings. The conductive fiber net (33) on the rear side is connected to the conductive fiber cloth strip (32) corresponding thereto, and the interiors of the two conductive fiber nets (33) are filled with metal static electricity absorption plates (34).
2. The antistatic cardigan according to claim 1, characterized in that: The sleeve arm static electricity removal component (2) comprises a conductive metal wire (21), an outer wrapping cloth strip (22), a conductive metal ring (23) and a flexible conductive cloth ring (24); two corresponding outer wrapping cloth strips (22) are sewn on the two sleeve arms on both sides of the cardigan body (1); the conductive metal wire (21) is arranged inside the outer wrapping cloth strip (22); two openings are arranged on the two sleeve arms on both sides of the cardigan body (1); the flexible conductive cloth ring (24) is fixed inside the opening; the conductive metal ring (23) is fixed on the surface of the flexible conductive cloth ring (24); and the conductive metal ring (23) is connected to the conductive metal wire (21).
3. The antistatic cardigan according to claim 1, characterized in that: Two pockets (4) are arranged on the front side of the cardigan body (1), and the metal static electricity absorption plate (34) is located inside the pockets (4).
4. The antistatic cardigan according to claim 3, characterized in that: A metal wire (5) is fixed to the edge of the pocket (4), a metal zipper (6) is provided at the opening, and the metal wire (5) is respectively connected to the metal zipper (6) and the metal electrostatic absorption plate (34).
5. The antistatic cardigan according to claim 1, characterized in that: It also comprises an elastic tightening ring (8), wherein two elastic tightening rings (8) are provided, and the two elastic tightening rings (8) are respectively fixed to the lower ends of the two sleeve arms of the cardigan body (1).