Stretch-resistant elastic knitted garment

By setting tensile structures in key areas of knitwear and using the spiral winding and weaving of specific fibers and adhesive strips, the problem of knitwear losing elasticity after prolonged use is solved, achieving better tensile strength and resilience, and improving the fit and shaping effect of the garment.

CN224125300UActive Publication Date: 2026-04-17ZAOZHUANG DONGHENG CLOTHING CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ZAOZHUANG DONGHENG CLOTHING CO LTD
Filing Date
2025-04-09
Publication Date
2026-04-17

AI Technical Summary

Technical Problem

Existing knitwear tends to stretch and lose elasticity after prolonged use, resulting in an ill-fitting fit and a gradual loss of its shaping effect.

Method used

Tensile structures are incorporated into the collar, sleeves, body, and shoulders, including tensile collar strips, tensile chest and abdomen bands, tensile sleeve bands, and lifting shoulder straps. These structures utilize spiral twisting and knitting of materials such as nylon fibers, spandex fibers, latex strips, and rubber strips to provide additional tensile strength and resilience.

Benefits of technology

It effectively reduces stretching and deformation of knitwear in key areas, improves resilience, maintains the fit and shaping effect of the garment, and enhances wearing comfort and aesthetics.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224125300U_ABST
    Figure CN224125300U_ABST
Patent Text Reader

Abstract

The utility model relates to the technical field of knitted garments, in particular to a stretch-resistant elastic knitted garment which comprises a knitted garment body, the knitted garment body is a long-sleeve sweater and is provided with a collar, garment shoulders, sleeves and a garment body, a stretch-resistant collar strip is arranged at the position of the collar of the knitted garment body and comprises a cloth sleeve, and the cloth sleeve is arranged around the collar by a circle. A collar of the knitted garment body is folded inwards and fixed to form a ring shape, the cloth cover is located in the ring, and polyamide fiber bundles, spandex fiber bundles, latex strips and rubber strips are arranged in the cloth cover. According to the utility model, the tensile collar strip is arranged, and the fiber bundles and the adhesive tapes in the collar strip are used for providing tensile strength and resilience, so that the tensile deformation speed of the collar position of the knitted garment can be greatly reduced.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to the field of knitwear technology, specifically to a tensile-resistant elastic knitwear. Background Technology

[0002] Knitting is the process of using knitting needles to hook various raw materials and types of yarn into loops, and then connecting them to form knitted fabric. Knitted fabric is soft, has good wrinkle resistance and breathability, and has great stretch and elasticity, making it comfortable to wear. Currently, the elasticity of knitted garments mainly comes from the structure created by knitting. However, with prolonged use, this type of knitted garment will continuously stretch, becoming ill-fitting, and gradually losing its elasticity due to stretching. Utility Model Content

[0003] To achieve the above objectives, this utility model specifically adopts the following technical solution:

[0004] A tensile-resistant elastic knitted garment includes a knitted garment body, which is a long-sleeved pullover with a collar, shoulders, sleeves, and a body. The collar of the knitted garment body is provided with a tensile-resistant collar strip, which includes a fabric cover. The fabric cover is arranged around the collar. The collar of the knitted garment body is folded inward and fixed to form a loop, with the fabric cover located inside the loop. The fabric cover contains nylon fiber bundles, spandex fiber bundles, latex strips, and rubber strips.

[0005] Furthermore, the nylon fiber bundles, spandex fiber bundles, latex strips, and rubber strips are spirally twisted and fixed together. Compared to a straight-lay structure, spiral twisting and winding can achieve better mutual fixation, while also providing additional tensile strength and resilience.

[0006] Furthermore, the knitted garment body is provided with multiple tensile-resistant chest and abdominal bands, each consisting of an outer band, an inner band within the outer band, and needle-punched pads within the inner band. Multiple elastic bands are positioned between the needle-punched pads and the inner band. The elasticity of the elastic bands allows the knitted garment body to conform to the body, providing both shaping and tensile strength.

[0007] Furthermore, the tensile chest and abdominal bands are provided with at least three sections, located at the hem of the knitted garment body and at positions corresponding to the upper and lower chest cavities ergonomically. This fully considers ergonomics while also ensuring comfort during wear and reducing the feeling of restriction.

[0008] Furthermore, the sleeve cuffs of the knitted garment body are provided with tensile-resistant cuffs, which include knitted nylon yarn bundles and knitted composite yarn bundles, and are fixed together by knitting. Unlike the body of the garment, which is continuously stretched upon wearing, or the collar, which is subjected to greater stretching when worn, the sleeves are not subjected to tensile reinforcement by simple knitting, which can reduce production difficulty and cost.

[0009] Furthermore, in the tensile cuff, a knitted composite yarn bundle is spaced apart from every three knitted nylon yarn bundles. Knitted composite yarn bundles offer higher tensile strength, elasticity, and washability, but also increase cost. The spaced arrangement reduces the amount of composite yarn bundles used, thereby controlling costs.

[0010] Furthermore, the knitted garment body has lifting shoulder straps on both shoulders. Each lifting shoulder strap includes a shaping strip, with lifting bands connected to both ends. The lifting bands consist of three machine-woven yarns: one (cotton yarn 1), one (Lycra yarn 1), one (cotton yarn 2), and one (Lycra yarn 2). The first and second machine-woven cotton yarns are vertically parallel, while the second and third machine-woven cotton yarns are horizontally parallel. These yarns are woven using a warp and weft knitting process. The shaping strip is a strip-shaped shoulder pad. The shaping strip, combined with the lifting bands, can lift and shape the area from the shoulders to the upper chest. When used with an anti-tension chest and abdomen belt, it can enhance the shaping effect.

[0011] Furthermore, the shaping strip has a C-shaped cross-section and is placed upside down on both shoulders of the knitted garment. Two woven Lycra threads are spaced apart every four woven cotton threads, and two woven Lycra threads are spaced apart every four woven cotton threads. The warp and weft knitting structure is simple, the weaving difficulty is low, and the overall cost can be controlled.

[0012] The beneficial effects of this utility model are as follows:

[0013] 1. This utility model provides tensile strength and resilience by setting up tensile collar strips and utilizing the fiber bundles and adhesive strips within the collar strips, which can significantly slow down the stretching deformation rate of the collar area of ​​knitted garments.

[0014] 2. In this utility model, anti-tensile chest and abdominal bands are set at the upper and lower chest cavities of the human body and at the hem of the garment, which can provide additional anti-tensile effect at the garment body and provide reliable elasticity for the knitted garment.

[0015] 3. In this utility model, a tensile-resistant cuff is provided at the cuff position to reinforce the cuff position, improve the tensile strength, and slow down the stretching deformation rate of the cuff position.

[0016] 4. This utility model can shape the shoulders by setting a shaping strip at the shoulder position, thereby improving the appearance of the garment. At the same time, the lifting strap is used in conjunction with the anti-tension chest and abdomen belt to give the knitted garment a certain shaping effect. Attached Figure Description

[0017] Figure 1 This is a perspective view of the present invention;

[0018] Figure 2 This is a schematic diagram of the tensile collar strip in this utility model;

[0019] Figure 3 This is a cross-sectional view of the tensile collar strip in this utility model;

[0020] Figure 4 This is a schematic diagram of the tensile-resistant chest and abdominal belt in this utility model;

[0021] Figure 5 This is a schematic diagram of the tensile sleeve structure in this utility model;

[0022] Figure 6 This is a schematic diagram of the lifting shoulder strap structure in this utility model;

[0023] Figure 7 This is a schematic diagram of the lifting strap in this utility model.

[0024] Attached labels: 1. Knitted garment body; 2. Tension-resistant collar strip; 21. Fabric cover; 22. Nylon fiber bundle; 23. Spandex fiber bundle; 24. Latex strip; 25. Rubber strip; 3. Tension-resistant chest and abdomen band; 31. Outer strip; 32. Inner strip; 33. Needle-punched padding strip; 34. Elastic band; 4. Tension-resistant sleeve band; 41. Knitted nylon yarn bundle; 42. Knitted composite yarn bundle; 5. Lifting shoulder strap; 51. Shaping strip; 52. Lifting strap; 53. Woven cotton yarn one; 54. Woven Lycra yarn one; 55. Woven cotton yarn two; 56. Woven Lycra yarn two. Detailed Implementation

[0025] 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.

[0026] This application provides a tensile-resistant elastic knitted garment, mainly addressing the problem that knitted garments lose elasticity after prolonged use due to stretching, and provides the following technical solution, which will be discussed in conjunction with... Figures 1-7 Please provide a detailed explanation:

[0027] A tensile-resistant elastic knitted garment includes a garment body 1, which is knitted using knitting needles. The garment body 1 is a long-sleeved pullover with a collar, shoulders, sleeves, and body. A tensile-resistant collar strip 2 is provided at the collar position of the garment body 1.

[0028] The tensile collar strip 2 includes a fabric cover 21, which is set around the collar. The collar of the knitted garment body 1 is folded inward and fixed to form a loop. The fabric cover 21 is located inside the loop. The fabric cover 21 contains nylon fiber bundles 22, spandex fiber bundles 23, latex strips 24 and rubber strips 25. The nylon fiber bundles 22, spandex fiber bundles 23, latex strips 24 and rubber strips 25 are spirally twisted and fixed together. The fabric cover 21 is made of cotton.

[0029] Since pullovers are put on and taken off starting from the head, and most people's head circumference is significantly larger than their neck circumference, the collar area is the first to be stretched and becomes larger with repeated putting on and taking off. This embodiment adds a fabric cover 21 to the collar area and sets two fiber bundles and two rubber strips inside the fabric cover 21. The nylon fiber bundles 22 and spandex fiber bundles 23 utilize the tensile and elastic properties of the fabric fibers themselves, while the latex strips 24 and rubber strips 25 utilize their own properties to provide better tensile and elastic performance. When used together, they comprehensively increase the tensile and elastic properties of the collar area of ​​the knitted garment body 1, which is prone to stretching and deformation.

[0030] Meanwhile, the nylon fiber bundle 22, spandex fiber bundle 23, latex strip 24 and rubber strip 25 are spirally twisted and fixed together. On the one hand, they can form mutual restraint and fixation, avoiding looseness that would affect the overall tensile strength and resilience. On the other hand, based on the properties of the materials themselves, the spiral structure can obtain additional elasticity.

[0031] Among them, spandex, scientifically known as polyurethane fiber, has high elasticity and can be stretched 6 to 7 times its original length, but it can quickly return to its initial state as the tension is removed. Its molecular structure is a chain-like, soft and stretchable polyurethane, which enhances its properties by being linked with hard segments. Nylon, also known as polyamide fiber, belongs to a class of highly polar polymer materials. It has excellent mechanical properties, hydrophilicity, lubricity, wear resistance, corrosion resistance, and is easy to process and mold. It has good oil resistance, strong barrier properties, and is non-toxic and odorless. There are a large number of highly strong hydrogen bonds between nylon molecules, which gives it good mechanical properties, wear resistance, and corrosion resistance.

[0032] Latex has excellent tensile resilience and softness. Although rubber's tensile resilience is not as good as latex's, it has higher stability, pressure resistance, and low deformation rate. When used together, they can provide stable and good tensile resilience performance.

[0033] In some embodiments, the knitted garment body 1 is provided with a plurality of tensile chest and abdominal bands 3. The tensile chest and abdominal bands 3 include an outer strip 31, the outer strip 31 being made of cotton, an inner strip 32 being provided inside the outer strip 31, the inner strip 32 being made of nylon, a needle-punched pad 33 being provided inside the inner strip 32, and a plurality of elastic bands 34 being provided between the needle-punched pad 33 and the inner strip 32. The needle-punched pad 33 is made of cotton wadding, polyester wadding and nylon wadding compounded by needle punching. The tensile chest and abdominal bands 3 are provided with at least three, respectively located at the hem of the garment body and at the corresponding ergonomic positions of the chest cavity and lower chest cavity.

[0034] For people with well-developed chest muscles or more fat, the chest area is also a region where clothing is severely stretched. After wearing it for a long time, the fabric fibers in the chest area will be visibly stretched, and the hem will hang loosely, which will greatly reduce the overall appearance.

[0035] The anti-tension chest and abdomen band 3 specifically enhances the tensile strength of the upper and lower chest cavity and the hem. It uses the inner strip 32 and the needle-punched pad 33 to provide the main tensile strength, and the elastic band 34 to provide the main rebound. When used together, it can comprehensively increase the tensile strength and rebound effect around the installation position of the knitted garment body 1, and can fit the garment body well against the upper body.

[0036] In some embodiments, the cuff of the sleeve of the knitted garment body 1 is provided with a tensile sleeve band 4. The tensile sleeve band 4 includes knitted nylon yarn bundles 41 and knitted composite yarn bundles 42. The knitted nylon yarn bundles 41 and the knitted composite yarn bundles 42 are fixed together by knitting. A knitted composite yarn bundle 42 is provided every three knitted nylon yarn bundles 41.

[0037] The width of the palm is also significantly larger than that of a typical cuff, causing the cuff area to be constantly stretched. Additionally, if the wearer has a habit of rolling up their sleeves, the thicker forearm will exacerbate the stretching at the cuff area. The cuff area is further reinforced by anti-tension cuffs 4, which provide fluffiness and elasticity through knitting technology and provide tensile strength through the fiber properties of two knitted yarn bundles, thus reducing the stretching deformation at the cuff area.

[0038] In some embodiments, lifting shoulder straps 5 are provided on both shoulders of the knitted garment body 1. Each lifting shoulder strap 5 includes a shaping strip 51 with a C-shaped cross-section. The shaping strip 51 is upside down on both shoulders of the knitted garment body 1. Each end of the shaping strip 51 is connected to a lifting band 52. The lifting band 52 includes a first woven cotton thread 53, a first woven Lycra thread 54, a second woven cotton thread 55, and a second woven Lycra thread 56. The first woven cotton thread 53 and the first woven Lycra thread 54 are vertically aligned. The woven cotton thread 255 and woven Lycra thread 26 are arranged in parallel. Every four woven cotton threads 153 are spaced apart by two woven Lycra threads 154, and every four woven cotton threads 255 are spaced apart by two woven Lycra threads 256. The woven cotton threads 153, woven Lycra threads 154, woven cotton threads 255 and woven Lycra threads 256 are woven by warp and weft knitting. The shaping strip 51 is a strip-shaped shaping shoulder pad made of polyester needle-punched cotton, sponge and polyester spray-bonded cotton through heat composite shaping.

[0039] The shaping strip 51 can shape the shoulders of the knitted garment body 1, making the shoulders smooth and beautiful after wearing. At the same time, the lifting strap 52 lifts the garment body upward. When used with the anti-tension chest and abdomen strap 3, it keeps the garment body very flat and has a good shaping effect after wearing.

[0040] The above description of the disclosed embodiments enables those skilled in the art to make or use the present invention. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of the present invention. Therefore, the present invention is not to be limited to the embodiments shown herein, but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.

Claims

1. A stretch-resistant elastic knitwear, comprising a knitwear body (1) which is a long-sleeved pullover having a collar, a shoulder, a sleeve and a body, characterized in that, The collar of the knitted garment body (1) is provided with a tensile collar strip (2). The tensile collar strip (2) includes a fabric cover (21). The fabric cover (21) is arranged around the collar. The collar of the knitted garment body (1) is folded inward and fixed to form a loop. The fabric cover (21) is located inside the loop. The fabric cover (21) contains nylon fiber bundles (22), spandex fiber bundles (23), latex strips (24), and rubber strips (25).

2. A stretch-resistant, elastic knitted garment according to claim 1, wherein, The nylon fiber bundle (22), spandex fiber bundle (23), latex strip (24), and rubber strip (25) are spirally twisted and fixed together.

3. The stretch-resistant, elastic knitted garment of claim 1, wherein, The knitted garment body (1) is provided with multiple tensile chest and abdominal bands (3). The tensile chest and abdominal bands (3) include an outer band (31), an inner band (32) is provided inside the outer band (31), a needle-punched pad (33) is provided inside the inner band (32), and multiple elastic bands (34) are provided between the needle-punched pad (33) and the inner band (32).

4. A stretch-resistant, elastic knitted garment according to claim 3, wherein, The tensile chest and abdomen band (3) is provided with at least three bands, which are respectively located at the hem of the knitted garment body (1) and at the corresponding ergonomic upper and lower chest cavity positions.

5. The stretch-resistant, elastic knitted garment of claim 1, wherein, The sleeve cuff of the knitted garment body (1) is provided with a tensile sleeve strap (4), which includes a knitted nylon filament bundle (41) and a knitted composite filament bundle (42). The knitted nylon filament bundle (41) and the knitted composite filament bundle (42) are fixed together by knitting.

6. A stretch-resistant, elastic knitted garment according to claim 5, wherein, In the tensile sleeve (4), every three knitted nylon yarn bundles (41) are spaced apart by a knitted composite yarn bundle (42).

7. The stretch-resistant, elastic knitted garment of claim 1, wherein, The knitted garment body (1) has lifting shoulder straps (5) on both sides of the shoulder. The lifting shoulder straps (5) include shaping strips (51). Both ends of the shaping strips (51) are connected to lifting straps (52). The lifting straps (52) include woven cotton thread one (53), woven Lycra thread one (54), woven cotton thread two (55), and woven Lycra thread two (56). Woven cotton thread one (53) and woven Lycra thread one (54) are arranged vertically parallel, and woven cotton thread two (55) and woven Lycra thread two (56) are arranged horizontally parallel. Woven cotton thread one (53), woven Lycra thread one (54), woven cotton thread two (55), and woven Lycra thread two (56) are woven by warp and weft knitting. The shaping strips (51) are strip-shaped shaping shoulder pads.

8. A stretch-resistant, elastic knitted garment according to claim 7, wherein, The shaping strip (51) has a C-shaped cross section. The shaping strip (51) is upside down on both sides of the shoulders of the knitted garment body (1). Two woven Lycra threads (54) are set at intervals between every four woven cotton threads (53), and two woven Lycra threads (56) are set at intervals between every four woven cotton threads (55).