A sweater
By using different yarn weaving methods and materials in different areas of the sweater to form a multi-layered structure, the problem of poor breathability and sweat absorption in sweaters is solved, achieving good breathability, antibacterial and deodorizing effects, and improving the comfort and aesthetics of wearing the sweater.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- ZHUHAI WISEMAN FASHION CO LTD
- Filing Date
- 2025-09-10
- Publication Date
- 2026-07-21
AI Technical Summary
While existing sweaters are highly elastic and shrink easily, they have poor breathability and sweat absorption, making it inconvenient for sweat absorption and antibacterial treatment, thus affecting the skin's breathability and antibacterial effect.
Different yarns and weaving methods and materials are used in different regions, including blends of cotton yarn, velvet yarn and nylon fiber. Through weaving structures such as semi-perforated honeycomb, sesame dots, twisted rope, four-line stitch and ribbed stripe, a multi-layered structure of garment body and sleeves is formed to improve breathability, antibacterial and deodorizing effects.
It achieves skin-friendly, comfortable, antibacterial, and deodorizing functions in different parts of the sweater, improves breathability and antibacterial properties, reduces static electricity caused by dry skin, and enhances the comfort and aesthetics of wearing it.
Smart Images

Figure CN224522409U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of clothing and accessories technology, and more specifically, to a sweater. Background Technology
[0002] Soft and comfortable, sweaters are increasingly favored by consumers. With economic development and rising living standards, people's demands for sweaters are also increasing.
[0003] While existing sweaters are characterized by high elasticity and large shrinkage, they also have the drawback of poor breathability and sweat absorption. This makes it difficult for existing sweaters to absorb sweat and perform antibacterial treatment, which in turn makes it difficult for the skin to breathe and inhibit bacteria. Utility Model Content
[0004] The present invention aims to solve the above-mentioned problems existing in the prior art and provide a sweater that has both good elasticity and good antibacterial and breathable properties.
[0005] To solve the above problems, this utility model provides a sweater, including: a garment body, the garment body having a neckline and a hem, the garment body being formed by sewing together a front piece and a back piece;
[0006] The front piece includes a first region connected to the neckline and a second region located between the first region and the hem. The first region includes a first layer woven from cotton yarn and a second layer woven from velvet yarn. The second region includes alternating first and second knitting structures. The first knitting structure is woven from cotton yarn, and the second knitting structure is woven from velvet yarn.
[0007] The back piece includes a third region disposed opposite to the first region and a fourth region disposed opposite to the second region. The third region is woven from a second composite yarn, and the fourth region is woven from a first composite yarn.
[0008] The first composite yarn is formed by blending the pike yarn and nylon fiber, and the second composite yarn is formed by twisting the pike yarn and nylon fiber together.
[0009] Furthermore, the first layer is located on the outer layer of the garment body, and the second layer is located on the inner layer of the garment body. The first layer is woven from the cotton yarn using a semi-perforated honeycomb knitting method, and the second layer is woven from the plywood yarn using a sesame dot knitting method.
[0010] Furthermore, the first braided structure is a twisted rope structure, and the second braided structure is a semi-perforated honeycomb structure. The semi-perforated honeycomb structure is woven by a semi-perforated honeycomb weaving method, and the first braided structure and the second braided structure are stitched together.
[0011] Furthermore, the third region is woven from the second composite yarn using a four-needle knitting method, and the fourth region is woven from the first composite yarn using a half-hole honeycomb knitting method.
[0012] Furthermore, the bottom of the first region extends into the second region in a V-shape, the first region and the second region are connected by stitching, and the connection between the first region and the second region forms the edge of the V-shape.
[0013] Furthermore, the bottom of the third region extends into the fourth region in a V-shape, the third region and the fourth region are connected by stitching, and the connection between the third region and the fourth region forms the edge of the V-shaped structure.
[0014] Furthermore, the neckline includes a first knitted structure and a third knitted structure sewn together; the hem includes a first knitted structure and a third knitted structure sewn together.
[0015] The first weave structure is made of cotton yarn, and the third weave structure is a ribbed weave structure, which is made of velour yarn using a ribbed weave method.
[0016] Furthermore, it also includes sleeves, two of which are respectively connected to both sides of the garment body, and the ends of the sleeves are provided with cuffs, the cuffs including a first knitted structure and a third knitted structure sewn together.
[0017] Furthermore, the sleeves are woven from the second composite yarn using a four-stitch knitting method.
[0018] Furthermore, each sleeve and the garment body is provided with an underarm ventilation section, which is woven from the first composite yarn using a semi-perforated honeycomb knitting method.
[0019] The sweater described in this utility model features a double-layer structure in the first area connected to the neckline, ensuring privacy and safety during wear. The first layer, woven from cotton yarn, and the second layer, woven from nylon yarn, are not only comfortable and skin-friendly but also provide antibacterial and deodorizing properties. The second area is formed by alternating layers of two different weave structures: the first weave, made from cotton yarn, offers excellent moisture absorption and breathability, while the second weave, made from nylon yarn, provides antibacterial and deodorizing effects. This alternation enhances the breathability and antibacterial properties of the second area, as well as its design and aesthetics. The third area is woven from a second composite yarn formed by twisting nylon yarn and nylon fibers. This second composite yarn offers both excellent moisture absorption and wicking properties, as well as antibacterial and deodorizing effects, further improving the overall quality of the third area. The first layer wicks away moisture, preventing excessive sweating on the back from affecting comfort and effectively inhibiting bacterial growth and odor. The second layer uses a first composite yarn made of a blend of nylon and velvet fibers. This first composite yarn has good elasticity, moisture absorption, and breathability, as well as antibacterial and deodorizing properties, improving the elasticity of the back and waist area, reducing the feeling of constriction, and enhancing the antibacterial and comfort aspects of the back and waist area. The third layer uses a second composite yarn made of a twisted blend of nylon and velvet fibers. This second composite yarn has good moisture absorption and wicking properties, as well as antibacterial and deodorizing properties, further improving the moisture wicking effect of the fourth layer, preventing excessive sweating on the waist from affecting comfort, and effectively inhibiting bacterial growth and odor. The sweater provided by this utility model uses different yarns in different parts, which makes the sweater have multiple functions such as skin-friendly, comfortable, antibacterial and deodorizing. In addition, each area has downy yarn, which also helps to improve the skin's moisturization and reduce or avoid static electricity caused by dry skin. Attached Figure Description
[0020] Figure 1 This is a structural diagram of the sweater provided in the embodiment of the present utility model, where D is the front of the sweater and E is the back of the sweater;
[0021] Figure 2 This is a schematic diagram of the structure of a semi-perforated honeycomb structure woven by the semi-perforated honeycomb weaving method provided in this embodiment of the present invention.
[0022] Figure 3 This is a schematic diagram of the structure of the sesame dot weaving method provided in the embodiment of this utility model.
[0023] Figure 4 This is a schematic diagram of the structure of the twisted rope structure woven by the twisted rope weaving method provided in the embodiment of this utility model.
[0024] Figure 5This is a schematic diagram of a four-flat stitch structure woven using the four-flat stitch knitting method provided in this embodiment of the utility model.
[0025] Figure 6 This is a schematic diagram of the weave structure of the ribs produced by the rib weaving method provided in this embodiment of the utility model.
[0026] Figure 7 This is a schematic diagram of the structure of the second composite yarn formed by twisting nylon yarn and cotton fibers together in an embodiment of the present invention. Detailed Implementation
[0027] The technical solution of this utility model will now be described clearly and in detail with reference to the accompanying drawings. In the description of this utility model, it should be noted that the terms "center," "longitudinal," "lateral," "length," "width," "thickness," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," and "outer," etc., indicating the orientation or positional relationship shown in the accompanying drawings, are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model. Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of indicated technical features. Thus, features defined with "first" and "second" may explicitly or implicitly include one or more of the stated features.
[0028] In this specification, the term "based on the above embodiments" means that a specific feature, structure, material, or characteristic described in connection with that embodiment or example is included in at least one preferred embodiment or example of the present invention. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same implementation or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples.
[0029] Combination Figures 1 to 7 As shown, this embodiment provides a sweater, including: a body, the body having a neckline 5 and a hem 6, the body being formed by sewing together a front piece and a back piece;
[0030] The front piece includes a first region 1 and a second region 2. The first region 1 is connected to the neckline 5. The second region 2 is located between the first region 1 and the hem 6. The first region 1 includes a first layer woven from cotton yarn and a second layer woven from velvet yarn. The second region 2 includes an alternating first knitting structure A and a second knitting structure B. The first knitting structure A is woven from cotton yarn, and the second knitting structure B is woven from velvet yarn.
[0031] The back piece includes a third region 3 and a fourth region 4. The third region 3 is set opposite to the first region 1, and the fourth region 4 is set opposite to the second region 2. The third region 3 is woven with a second composite yarn, and the fourth region 4 is woven with a first composite yarn.
[0032] The first composite yarn is formed by blending velvet yarn and nylon fiber, and the second composite yarn 600 is formed by twisting velvet yarn and nylon fiber together.
[0033] The sweater provided in this embodiment features a double-layer structure in the first area connected to the neckline, ensuring privacy and safety during wear. The first layer, woven from cotton yarn, and the second layer, woven from velvet yarn, are not only comfortable and skin-friendly but also provide antibacterial and deodorizing properties. The second area is formed by alternating layers of two different weave structures. The first weave, made of cotton yarn, has excellent moisture absorption and breathability, while the second weave, made of velvet yarn, provides antibacterial and deodorizing effects. This alternation enhances the breathability and antibacterial properties of the second area, as well as its design and aesthetics. The third area uses velvet yarn... The third area is woven from a second composite yarn formed by twisting nylon and nylon fibers. This second composite yarn has excellent moisture absorption and wicking properties, as well as antibacterial and deodorizing effects, improving the moisture wicking function of the third area and preventing excessive sweating on the back from affecting wearing comfort. It also effectively inhibits bacterial growth and odor. The fourth area is woven from a first composite yarn formed by blending nylon and velvet yarn. This first composite yarn has excellent elasticity, moisture absorption, and breathability, as well as antibacterial and deodorizing effects, improving the elasticity of the waist area, reducing the feeling of restriction in the waist area, and enhancing the antibacterial and comfort of the waist area. The sweater provided in this embodiment uses different yarns in different parts, giving it multiple functions such as skin-friendly, comfortable, antibacterial, and deodorizing properties. The presence of nylon yarn in each area also helps to improve skin hydration and reduce or prevent static electricity caused by dry skin.
[0034] The velvet yarn used in this embodiment is also known as velvet fleece. This velvet yarn can be, for example, the velvet yarn sold by Qingdao Xinsente Marine Technology Innovation Co., Ltd. This velvet yarn offers exceptional skin-friendly comfort, low skin irritation, and possesses antibacterial, deodorizing, and skin-moisturizing properties. It also boasts durable functionality and is safe and environmentally friendly, providing a lasting comfortable experience. Velvet yarn can also be made from other companies' products and / or products; examples are not provided here.
[0035] In this embodiment, the nylon fiber can be the nylon fiber sold by Dongguan Dalang Tongzhan Yarn Shop. This nylon fiber has high strength and abrasion resistance, elasticity and resilience, as well as good moisture absorption and breathability. Nylon fibers produced and / or sold by other companies can also be used; however, examples are not provided here.
[0036] In this embodiment, the nylon fiber can be the nylon fiber sold by Dongguan Dalang Rongxin Textile Trading Company. This nylon fiber has good moisture-wicking and quick-drying properties, is hygienic and antibacterial, abrasion-resistant, and deformation-resistant. Nylon fiber can also be produced and / or sold by other companies, which will not be listed here.
[0037] In this embodiment, the cotton yarn, nylon yarn, and nylon fiber can all be commercially available products. The manufacturers of each of the above yarns will not be listed here.
[0038] Based on the above embodiments, as an optional implementation, the first layer is located on the outer layer of the garment, and the second layer is located on the inner layer of the garment. The first layer is woven from cotton yarn using a semi-perforated honeycomb knitting method, and the second layer is woven from plywood yarn using a sesame dot knitting method. Figure 2 As shown, it illustrates a schematic diagram of a semi-perforated honeycomb structure 100 woven using a semi-perforated honeycomb weaving method. Figure 3 As shown, a schematic diagram of the structure of the sesame dot tissue 200 woven using the sesame dot weaving method is presented. The outer layer is woven with cotton yarn using a semi-perforated honeycomb weaving method, creating multiple breathable pores and improving the breathability and moisture wicking of the first area 1. The inner layer is woven with fleece yarn using the sesame dot weaving method, further enhancing the breathability of the first area 1 and the comfort in direct contact with the skin. It also directly inhibits the growth of bacteria and the emission of odors on the skin surface. This double-layered structure of the first area 1 not only ensures the privacy of the chest area but also enables bidirectional temperature regulation, guaranteeing both warmth and breathability in the chest area.
[0039] Based on the above embodiments, as an optional implementation, the first braided structure A is a twisted rope structure, and the second braided structure B is a semi-perforated honeycomb structure. That is, the first braided structure A is formed by twisting cotton yarn using a twisted rope knitting method, and the second braided structure B is formed by knitting plywood yarn using a semi-perforated honeycomb knitting method. The first braided structure A and the second braided structure B are connected by stitching, and any two adjacent first braided structures A are connected by one second braided structure B, so that the first braided structures A and the second braided structures B are alternately spliced together. Figure 2 As shown, it illustrates a schematic diagram of a semi-perforated honeycomb structure 100 woven using a semi-perforated honeycomb weaving method. Figure 4 The diagram shows a schematic of a twisted rope structure 300 woven using a twisted rope weaving method. The first weaving structure A uses cotton yarn combined with a twisted rope structure, which improves the moisture absorption and breathability of the first weaving structure A, as well as its abrasion resistance and flexibility. The second weaving structure B uses plywood yarn combined with a semi-perforated honeycomb structure, which improves the antibacterial and deodorizing effects of the second weaving structure B, while also enhancing its breathability. The alternating arrangement of the first and second weaving structures A and B improves the structural stability and breathability of the second region 2.
[0040] Based on the above embodiments, as an optional implementation, the bottom of the first region 1 extends to the second region 2 in a V-shape. The first region 1 and the second region 2 are connected by stitching, and the connection between the first region 1 and the second region 2 forms the edge of the V-shape. Thus, the V-shape at the connection between the first region 1 and the second region 2 improves the connection strength between the two regions and reduces stress concentration. Furthermore, the V-shape visually lengthens the waist, achieving a concealed height-enhancing effect.
[0041] Based on the above embodiments, as an optional implementation, the third region 3 is woven from the second composite yarn 600 using a four-needle knitting method, and the fourth region 4 is woven from the first composite yarn using a semi-perforated honeycomb knitting method. Figure 5 The diagram shows a schematic of the structure of a four-knit fabric 400 knitted using a four-knit stitch method. Therefore, the third region 3 is knitted using a second composite yarn 600 in conjunction with the four-knit stitch method, giving it both comfort and skin-friendliness, good moisture absorption and wicking properties, as well as antibacterial and deodorizing effects, thus improving the comfort and antibacterial properties of the back area. The fourth region 4 is knitted using a first composite yarn in conjunction with a semi-perforated honeycomb knitting method, giving it multiple ventilation holes, enhancing its breathability, and providing elasticity, reducing the feeling of constriction in the waist area, and improving the breathability and comfort of the waist area.
[0042] Based on the above embodiments, as an optional implementation, the bottom of the third region 3 extends to the fourth region 4 in a V-shape. The third region 3 and the fourth region 4 are connected by stitching, and the connection between the third region 3 and the fourth region 4 forms the edge of the V-shape. Thus, the V-shape at the connection between the third region 3 and the fourth region 4 improves the connection strength between the three regions and reduces stress concentration. Furthermore, the V-shape visually lengthens the waist, creating a concealed height-enhancing effect.
[0043] Based on the above embodiments, as an optional implementation, the neckline 5 includes a first knitted structure A and a third knitted structure C sewn together; the hem 6 includes a first knitted structure and a third knitted structure sewn together; wherein, the first knitted structure A is a twisted rope structure formed by knitting cotton yarn using a twisted rope knitting method, and the third knitted structure C is a ribbed structure formed by knitting ribbed yarn using a ribbed knitting method. Figure 6 As shown, it illustrates the structural diagram of a ribbed weave 500 woven using a ribbed weave method. Thus, the neckline 5 and hem 6, constructed by splicing the first weave structure A and the third weave structure C, not only improve the abrasion resistance and flexibility of the neckline 5 and hem 6, reducing the feeling of restriction during neck, waist, and hip movements, but also better conform to and wrap around the neck, waist, and hips, preventing cold air from entering the garment. Simultaneously, the cotton yarn and fleece yarn enhance the comfort of direct contact between the neck and waist.
[0044] In this embodiment, in the neckline 5 and the hem 6, the first knitting structure A and the third knitting structure C can be spliced together in an alternating manner, or two first knitting structures A can be set between two adjacent third knitting structures C, or two third knitting structures C can be set between two adjacent first knitting structures A, or a combination of the above three methods can be used. Those skilled in the art can make the settings according to actual needs.
[0045] Based on the above embodiments, as an optional implementation, the sweater also includes sleeves 7, with two sleeves 7 respectively connected to both sides of the garment body. The ends of the sleeves 7 are provided with cuffs 71, which include a first knitted structure A and a third knitted structure C sewn together. Thus, the cuffs 71, formed by stitching together the first knitted structure A and the third knitted structure C, not only improve the abrasion resistance and flexibility of the cuffs 71, reducing the feeling of restriction during elbow movement, but also better conform to and wrap around the elbow, preventing cold air from entering the garment body. At the same time, the cotton yarn and fleece yarn enhance the comfort of direct contact with the elbow.
[0046] In this embodiment, in the cuff 71, the first knitting structure A and the third knitting structure C can be spliced together in an alternating manner, or two first knitting structures A can be set between two adjacent third knitting structures C, or two third knitting structures C can be set between two adjacent first knitting structures A, or a combination of the above three methods can be used. Those skilled in the art can make the settings according to actual needs.
[0047] Based on the above embodiments, as an optional implementation, the sleeve 7 is knitted from the second composite yarn 600 using a plain knitting method. Thus, by using the second composite yarn 600 in conjunction with a plain knitting method, the sleeve 7 is not only comfortable and skin-friendly, but also helps to improve the moisturizing effect on the arm area, reducing or preventing static electricity caused by dry skin on the arm.
[0048] Based on the above embodiments, as an optional implementation, each sleeve 7 is provided with an underarm ventilation section 8 between the sleeve and the body of the garment. The underarm ventilation section 8 is woven from a first composite yarn using a semi-perforated honeycomb knitting method. Thus, the underarm ventilation section 8, woven with the first composite yarn and using a semi-perforated honeycomb knitting method, has multiple ventilation holes, enhancing its breathability. This facilitates faster heat dissipation under the armpit and prevents odor and skin problems caused by bacterial growth due to underarm sweating. Furthermore, the first composite yarn also makes the underarm ventilation section 8 elastic, reducing the feeling of restriction during arm movement and improving the breathability and comfort of the underarm area.
[0049] Although the disclosure is as stated above, the scope of protection of this disclosure is not limited thereto. Those skilled in the art can make various changes and modifications without departing from the spirit and scope of this disclosure, and all such changes and modifications will fall within the protection scope of this utility model.
Claims
1. A sweater, characterized in that, include: The garment body has a neckline and a hem, and is made of a front piece and a back piece sewn together. The front piece includes a first region connected to the neckline and a second region located between the first region and the hem. The first region includes a first layer woven from cotton yarn and a second layer woven from velvet yarn. The second region includes alternating first and second knitting structures. The first knitting structure is woven from cotton yarn, and the second knitting structure is woven from velvet yarn. The back piece includes a third region disposed opposite to the first region and a fourth region disposed opposite to the second region. The third region is woven from a second composite yarn, and the fourth region is woven from a first composite yarn. The first composite yarn is formed by blending the pike yarn and nylon fiber, and the second composite yarn is formed by twisting the pike yarn and nylon fiber together.
2. The sweater according to claim 1, characterized in that, The first layer is located on the outer layer of the garment, and the second layer is located on the inner layer of the garment. The first layer is woven from cotton yarn using a semi-perforated honeycomb knitting method, and the second layer is woven from plywood yarn using a sesame dot knitting method.
3. The sweater according to claim 1, characterized in that, The first braided structure is a twisted rope structure, and the second braided structure is a semi-perforated honeycomb structure. The semi-perforated honeycomb structure is woven by a semi-perforated honeycomb weaving method, and the first braided structure and the second braided structure are stitched together.
4. The sweater according to claim 1, characterized in that, The third region is woven from the second composite yarn using a four-needle knitting method, and the fourth region is woven from the first composite yarn using a half-hole honeycomb knitting method.
5. The sweater according to claim 1, characterized in that, The bottom of the first region extends into the second region in a V-shape, and the first region and the second region are connected by stitching, with the connection between the first region and the second region forming the edge of the V-shape structure.
6. The sweater according to claim 1, characterized in that, The bottom of the third region extends into the fourth region in a V-shape, and the third region and the fourth region are connected by stitching, with the edge of the V-shaped structure formed at the connection between the third region and the fourth region.
7. The sweater according to claim 3, characterized in that, The neckline includes a first knitted structure and a third knitted structure sewn together; the hem includes a first knitted structure and a third knitted structure sewn together. The first weave structure is made of cotton yarn, and the third weave structure is a ribbed weave structure, which is made of velour yarn using a ribbed weave method.
8. The sweater according to claim 7, characterized in that, It also includes sleeves, two of which are respectively connected to both sides of the garment body. The ends of the sleeves are provided with cuffs, and the cuffs include a first knitted structure and a third knitted structure that are sewn together.
9. The sweater according to claim 8, characterized in that, The sleeves are woven from the second composite yarn using a four-stitch knitting method.
10. The sweater according to claim 8, characterized in that, Each sleeve and the garment body is provided with an underarm ventilation section, which is woven from the first composite yarn using a semi-perforated honeycomb knitting method.