One-way wicking and abrasion resistant knit glove

CN224734774UActive Publication Date: 2026-09-11JIANGSU HANVO SAFETY PROD CO LTD
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Patent Information

Application Number
CN202522110999.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-30
Publication Date
2026-09-11
Estimated Expiration
2035-09-30

AI Technical Summary

Technical Problem

[0002]手套是手部保暖或劳动保护用品,也有用于装饰的,其种类繁多,其中包括有针织手套,传统的针织手套多由毛线编织而成,较为柔软并具有保暖性,但是长时间佩戴内部潮湿且耐磨的性能较差,这直接限制了针织手套的应用场合,使得针织手套的使用范围较小,不利于针织手套的发展;

Benefits of technology

在针织手套的内外壁设置第一低吸水层和第二高吸水层,第一低吸水层和第二高吸水层之间形成吸湿梯度差,从而形成单向导湿结构,且吸水率差异与纱线自有属性有关,不会因为洗涤次数的增加而失效,同时通过耐磨层来提高耐磨性,耐磨层为发泡浸胶层,增加耐磨性能的同时,还能通过发泡气孔来增强透气性;

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a one -way moisture -permeable wear -resisting knitted gloves relates to the technical field of knitted gloves, especially one -way moisture -permeable wear -resisting knitted gloves. The traditional knitted gloves are knitted by wool yarn, are relatively soft and have the warmth -retaining property, but the inside is damp and the wear -resisting performance is poor for long -term wearing, which directly limits the application occasion of knitted gloves, makes the use range of knitted gloves be smaller, is unfavorable to the development of knitted gloves. Including knitted gloves main part, knitted gloves main part includes the first low water absorption layer of inner layer and the second high water absorption layer of outer layer, and the water absorption rate of first low water absorption layer is lower than second high water absorption layer, and the wear -resisting layer is established to knitted gloves main part body still. The one -way moisture -permeable wear -resisting performance of knitted gloves is improved through first low water absorption layer, second high water absorption layer and wear -resisting layer, and the moisture -permeable wear -resisting performance of knitted gloves is better.
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Description

Technical Field

[0001] This utility model relates to the field of knitted glove technology, and in particular to a one-way moisture-wicking and abrasion-resistant knitted glove. Background Technology

[0002] Gloves are used for hand warmth or labor protection, and some are also used for decoration. There are many types of gloves, including knitted gloves. Traditional knitted gloves are mostly made of wool, which are relatively soft and warm. However, they tend to get damp inside after long-term wear and have poor abrasion resistance. This directly limits the application of knitted gloves, making their use range small and hindering their development. Existing cotton / polyester-cotton gloves dry slowly after absorbing moisture, and the inner layer remains damp for a long time, which easily breeds bacteria and produces odors; gloves with post-treatment hydrophilic / hydrophobic coatings lose more than 50% of their function after 5-10 washes; while three-layer film or laminated composite gloves can wick away moisture, they have poor breathability, high cost, and cannot be woven in one piece. Utility Model Content

[0003] The purpose of this invention is to provide a unidirectional moisture-wicking and abrasion-resistant knitted glove. By using a first low-absorbency layer, a second high-absorbency layer, and an abrasion-resistant layer, the unidirectional moisture-wicking and abrasion-resistant properties of the knitted glove are improved, resulting in better moisture-wicking and abrasion-resistant performance.

[0004] The above-mentioned technical objective of this utility model is achieved through the following technical solution: A one-way moisture-wicking and abrasion-resistant knitted glove includes a knitted glove body, which includes an inner first low absorbency layer and an outer second high absorbency layer. The water absorption rate of the first low absorbency layer is lower than that of the second high absorbency layer. An abrasion-resistant layer is also provided on the outside of the knitted glove body.

[0005] By adopting the above technical solution, a first low absorbent layer and a second high absorbent layer are set on the inner and outer walls of the knitted gloves. A moisture absorption gradient difference is formed between the first low absorbent layer and the second high absorbent layer, thereby forming a one-way moisture-wicking structure. Moreover, the difference in water absorption rate is related to the inherent properties of the yarn and will not become ineffective due to the increase in the number of washing cycles. At the same time, the abrasion resistance is improved by the abrasion-resistant layer, thereby improving the moisture-wicking and abrasion-resistant performance of the knitted gloves.

[0006] Furthermore, the wear-resistant layer covers the inside of the finger.

[0007] By adopting the above technical solutions, the wear resistance and anti-slip performance of the inner side of the fingers are improved, and the partial coverage method reduces the cost of raw materials and the breathability of areas with less hand friction.

[0008] Furthermore, the wear-resistant layer covers the palm.

[0009] By adopting the above technical solutions, the wear resistance and anti-slip performance of the palm are improved, while the partial coverage method reduces the cost of raw materials and improves the breathability of areas with less hand friction.

[0010] Furthermore, the wear-resistant layer is a foamed impregnation layer.

[0011] By adopting the above technical solution, the foam impregnation not only increases the wear resistance, but also enhances the air permeability through the foam pores.

[0012] Furthermore, the first low-absorbency layer uses polypropylene high-elastic yarn as the yarn.

[0013] By adopting the above technical solution, the greater the difference in water absorption rate between the two yarns selected for the first low-absorbency layer and the second high-absorbency layer, the better the water transfer effect. The first low-absorbency layer uses polypropylene high-elastic yarn as yarn, which makes it easy to achieve its low water absorption rate.

[0014] Furthermore, the second superabsorbent layer is made of superabsorbent polyester yarn.

[0015] By adopting the above technical solution, the greater the difference in water absorption rate between the two yarns selected for the first low absorbency layer and the second high absorbency layer, the better the water transfer effect. The second high absorbency layer uses high absorbency polyester yarn, which makes it easier to achieve its high absorbency.

[0016] Furthermore, the first low-absorbency layer uses non-absorbent filaments as yarn.

[0017] By adopting the above technical solution, the greater the difference in water absorption rate between the two types of yarns selected for the first low absorbent layer and the second high absorbent layer, the better the moisture transfer effect. The first low absorbent layer uses non-absorbent filaments as yarn, which can stably achieve the moisture absorption gradient between the first low absorbent layer and the second high absorbent layer.

[0018] Furthermore, the yarn of the first low-absorbency layer includes one of polyethylene fiber, ordinary polyester, and polypropylene filament.

[0019] By adopting the above technical solution, the non-absorbent property of the first low-absorbent layer is achieved, and the moisture absorption gradient between the first low-absorbent layer and the second high-absorbent layer is stably realized.

[0020] Furthermore, the yarn of the second superabsorbent layer comprises one of unmodified or modified polyester, nylon, or cotton.

[0021] By adopting the above technical solution and combining it with the non-absorbent properties of the first low-absorbent layer, a stable moisture absorption gradient between the first low-absorbent layer and the second high-absorbent layer is achieved.

[0022] In summary, this utility model has the following beneficial effects: A first low absorbent layer and a second high absorbent layer are set on the inner and outer walls of the knitted gloves. A moisture absorption gradient difference is formed between the first low absorbent layer and the second high absorbent layer, thereby forming a one-way moisture-wicking structure. The difference in water absorption rate is related to the inherent properties of the yarn and will not become ineffective due to the increase of washing times. At the same time, the abrasion resistance is improved by the abrasion-resistant layer. The abrasion-resistant layer is a foamed impregnation layer, which not only increases the abrasion resistance but also enhances the breathability through the foamed pores. The greater the difference in water absorption rate between the two yarns used in the first low-absorbency layer and the second high-absorbency layer, the better the moisture transfer effect. The first low-absorbency layer uses polypropylene high-elastic yarn as the yarn, and the second high-absorbency layer uses high-absorbency polyester yarn to facilitate the achievement of its high water absorption rate. The first low-absorbency layer can also use non-absorbent filament yarn as the yarn, and the yarn of the second high-absorbency layer includes one of unmodified or modified polyester, nylon or cotton, so as to stably achieve the moisture absorption gradient between the first low-absorbency layer and the second high-absorbency layer and ensure the one-way moisture wicking effect. Attached Figure Description

[0023] To more clearly illustrate the embodiments of this utility model, the drawings used in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0024] Figure 1 This is a schematic diagram of the overall structure of a unidirectional moisture-wicking and abrasion-resistant knitted glove according to this utility model; Figure 2 This is a schematic diagram illustrating the single-line moisture absorption principle of the first low-absorbency layer and the second high-absorbency layer in a unidirectional moisture-wicking abrasion-resistant knitted glove of this utility model.

[0025] In the diagram, 1 is the main body of the knitted glove; 2 is the first low absorbency layer; 3 is the second high absorbency layer; and 4 is the abrasion-resistant layer. Detailed Implementation

[0026] The specific embodiments of this utility model will be further described below with reference to the accompanying drawings. These embodiments do not constitute a limitation on this utility model. Based on the embodiments in this application, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of this application.

[0027] A type of one-way moisture-wicking and abrasion-resistant knitted glove, such as Figure 1 and Figure 2 As shown, the glove body 1 includes an inner first low absorbency layer 2 and an outer second high absorbency layer 3. The absorbency of the first low absorbency layer 2 is lower than that of the second high absorbency layer 3. The unidirectional moisture-wicking structure is achieved by using yarns with different absorbency rates for the inner and outer layers, and the glove body 1 can be knitted in one go. Specifically, in some embodiments, two yarns with different water absorption rates are used as the main yarn and the secondary yarn, respectively, and knitted directly using double-sided knitting or other methods to ensure that the low water absorption yarn fabric layer (first low water absorption layer 2) is the side in contact with the skin when worn, thus completing the knitting production of the inner first low water absorption layer 2 and the outer second high water absorption layer 3. The inner and outer layers can also be composited using methods such as dot matrix adhesive bonding. A moisture absorption gradient difference is formed between the first low-absorbency layer 2 and the second high-absorbency layer 3, thus forming a one-way moisture-wicking structure. The difference in water absorption rate is related to the inherent properties of the yarn and will not fail due to the increase in the number of washes. According to the GB / T 21655.2-2019 standard test, the measured grade of the sample improved after 5 washes, and the one-way transfer index O reached level 5 (>300.0).

[0028] like Figure 1 As shown, the main body 1 of the knitted glove is also provided with an abrasion-resistant layer 4 to improve abrasion resistance. The abrasion-resistant layer 4 covers the inside of the fingers and the entire palm to improve the abrasion resistance and anti-slip performance of the frequently rubbed parts. Other parts are not covered to reduce the cost of raw materials and improve the breathability of areas with less friction. Among them, the wear-resistant layer 4 is a foamed impregnation layer. The foamed impregnation increases the wear resistance and also enhances the air permeability through the foam pores. In some embodiments, the wear-resistant layer 4 can also be selected from other wear-resistant materials or functional materials.

[0029] like Figure 2 As shown, to ensure the unidirectional moisture-wicking function, the greater the difference in water absorption rate between the two yarns used in the first low-absorbency layer 2 and the second high-absorbency layer 3, the better the moisture transfer effect. For example, in this embodiment, the first low-absorbency layer 2 uses polypropylene high-elastic yarn as yarn, and the second high-absorbency layer 3 uses high-absorbency polyester yarn. The high-absorbency polyester can be polyester modified with water-absorbing masterbatch to further improve its water absorption rate. The two yarns are directly knitted on the inner and outer layers respectively to achieve the difference in moisture absorption between the inner and outer sides, thereby realizing the unidirectional moisture transfer function. In some embodiments, the first low absorbency layer 2 is directly made of non-absorbent filaments, such as polyethylene fiber, ordinary polyester, polypropylene filaments, etc. The yarn of the second high absorbency layer 3 can be selected from unmodified or modified polyester, nylon or cotton yarns with good water absorption. Modification treatment can better improve its water absorption or other capabilities, and stably realize the moisture absorption gradient between the first low absorbency layer 2 and the second high absorbency layer 3.

[0030] Working principle: A first low absorbency layer 2 and a second high absorbency layer 3 are provided on the inner and outer walls of the knitted gloves. A moisture absorption gradient difference is formed between the first low absorbency layer 2 and the second high absorbency layer 3. The first low absorbency layer 2 is made of polypropylene high elastic yarn, and the second high absorbency layer 3 is made of high absorbency polyester yarn, thus forming a one-way moisture-wicking structure. The difference in water absorption rate is related to the inherent properties of the yarn and will not become ineffective due to the increase of washing times. At the same time, the abrasion resistance is improved by the abrasion resistance layer 4. The abrasion resistance layer 4 is a foamed impregnation layer, which increases the abrasion resistance and enhances the breathability through the foam pores.

[0031] The above description is merely a preferred embodiment of the present utility model and is not intended to limit the present utility model. Those skilled in the art can make various modifications or equivalent substitutions to the present utility model within its substance and protection scope, and such modifications or equivalent substitutions should also be considered to fall within the protection scope of the present utility model's technical solution.

Claims

1. A one-way wicking, abrasion-resistant knit glove characterized by: The glove body includes a knitted glove body, which consists of an inner first low absorbency layer and an outer second high absorbency layer. The absorbency of the first low absorbency layer is lower than that of the second high absorbency layer. The glove body also has an abrasion-resistant layer on its exterior.

2. The unidirectional moisture-wicking abrasion-resistant knitted glove according to claim 1, characterized in that: The wear-resistant layer covers the inside of the fingers.

3. The unidirectional moisture-wicking abrasion-resistant knitted glove according to claim 1 or 2, characterized in that: The wear-resistant layer covers the palm.

4. The unidirectional moisture-wicking abrasion-resistant knitted glove according to claim 1, characterized in that: The wear-resistant layer is a foamed impregnation layer.

5. The uni-directional wicking, abrasion resistant knit glove of claim 1, wherein: The first low-absorbency layer uses polypropylene high-elastic yarn as the yarn.

6. The unidirectional moisture-wicking abrasion-resistant knitted glove according to claim 1 or 5, characterized in that: The second superabsorbent layer is made of superabsorbent polyester yarn.

7. The uni-directional wicking, abrasion resistant knit glove of claim 1, wherein: The first low absorbency layer uses non-absorbent filaments as yarn.

8. The uni-directional wicking, abrasion resistant knit glove of claim 7, wherein: The yarn of the first low-absorbency layer includes one of polyethylene fiber, ordinary polyester, and polypropylene filament.

9. The unidirectional moisture-wicking abrasion-resistant knitted glove according to claim 7 or 8, characterized in that: The yarn of the second superabsorbent layer comprises one of unmodified or modified polyester, nylon, or cotton.