Ultrathin glove fabric
By using fine denier nylon filaments and spandex filaments combined with a single-sided plain knit structure and loop knitting process, an ultra-thin, breathable, and durable medical glove fabric was developed, solving the problems of nylon gloves being heavy and lacking breathability, and achieving high fit and operational flexibility.
Patent Information
- Application Number
- CN202520357570.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-04
- Publication Date
- 2026-03-03
- Estimated Expiration
- 2035-03-04
AI Technical Summary
Existing nylon gloves are heavy and lack breathability, making it difficult to meet the medical needs for ultra-thin, highly fitted, and flexible operation.
Using 5-10D/1-24F fine denier nylon filament and 10-15D fine denier spandex filament as base yarns, combined with a single-sided plain knit structure and a 2-way loop knitting process per cycle, the fabric thickness is controlled at 0.05mm-0.12mm. The addition of spandex filament improves elasticity, and the weight design achieves 45-80g/m2 to ensure durability.
It achieves the lightweight, breathable, and elastic properties of ultra-thin glove fabric, improving operational flexibility and durability, and meeting the protection needs of medical scenarios.
Smart Images

Figure CN223963656U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of knitting weft knitting, and in particular to an ultra-thin glove fabric. Background Technology
[0002] Currently, medical gloves are mainly made of polypropylene or nylon, with nylon gloves dominating due to their light weight, high tensile strength, and abrasion resistance (accounting for approximately 60%-70%). Traditional nylon gloves are mostly manufactured through thermoforming or extrusion molding processes, but these have two major drawbacks: thermoplastic processing results in a lack of breathability, leading to sweat buildup on the hands with prolonged wear; and to meet protection requirements, the finished product thickness is generally greater than or equal to 0.15mm, making it difficult to balance operational flexibility with precise tactile feedback.
[0003] Existing technologies attempt to use knitted nylon fabric to make gloves, but the minimum thickness of conventional knitted nylon fabric is 0.4mm, resulting in gloves that are heavy and have limited elasticity, failing to meet the requirements of ultra-thin and highly fitted applications in medical settings. Therefore, there is an urgent need to develop an ultra-thin glove fabric that overcomes thickness limitations while ensuring protective performance, and simultaneously improves breathability and dexterity. Utility Model Content
[0004] The purpose of this utility model is to provide an ultra-thin glove fabric that, while ensuring its ultra-thinness, is also durable, breathable, and has good elasticity.
[0005] In a first aspect, this utility model provides an ultra-thin glove fabric, including a fabric body, wherein the fabric body is a single-sided plain knit structure with two yarns weft-knitted per cycle, wherein the yarn materials of the two yarns are 5-10D / 1-24F fine denier nylon filament and 10-15D fine denier spandex filament, and the thickness of the fabric body is 0.05mm-0.12mm.
[0006] Furthermore, the yarn arrangement of the fabric body is a 2-way cycle, and the needle arrangement of the fabric body during knitting is: AB needles arranged in a cylinder.
[0007] Furthermore, the fabric body satisfies the following characteristics: both the first and second threads are loop structures.
[0008] Furthermore, the nylon filament yarn of the 100-gauge type has a length of 14.5-17cm, and the spandex filament yarn of the 100-gauge type has a length of 6-7cm.
[0009] Furthermore, the finished weight of the fabric is 45-80 g / m². 2 .
[0010] Furthermore, the surface layer of the fabric is provided with a planar pattern layer or a three-dimensional pattern layer printed on it.
[0011] Secondly, this utility model provides a glove, including a glove made of the ultra-thin glove fabric as described in the first aspect.
[0012] The beneficial effects of this invention are as follows: Using 5-10D ultra-fine denier nylon filament and 10-15D ultra-fine denier spandex filament as base yarns, combined with a single-sided plain knit structure, the fabric thickness is reduced to a breakthrough of 0.05mm-0.12mm, achieving medical-grade thickness, only 1 / 8 to 1 / 3 the thickness of traditional nylon knitted fabrics; through a loop-forming knitting process with two passes per cycle and control of yarn feed, uneven weaving stress is eliminated, ensuring fabric smoothness and structural uniformity and stability; the elasticity of the spandex filament gives the fabric both ultra-thin performance and good elasticity, while maintaining a thickness of 45-80g / m². 2 The weight design maintains its ultra-thin characteristics while also possessing good durability. Attached Figure Description
[0013] Figure 1 This is a weaving diagram of the fabric structure of this utility model. Detailed Implementation
[0014] The present invention will be further described below with reference to the accompanying drawings.
[0015] Please see Figure 1 As shown, this utility model provides an embodiment: an ultra-thin glove fabric, comprising a fabric body, wherein the fabric body is a single-sided plain knit structure with two yarns weft-knitted per cycle, the two yarns being 5-10D / 1-24F fine denier nylon filaments and 10-15D fine denier spandex filaments, and the fabric body having a thickness of 0.05mm-0.12mm. The fabric of this utility model, using ultra-fine denier nylon filaments and spandex filaments, and a plain knit structure, controls the fabric thickness within the range of 0.05mm-0.12mm, achieving an ultra-thin fabric effect.
[0016] Please continue reading. Figure 1 As shown, in one embodiment of this utility model, the yarn arrangement of the fabric body is 2-way per cycle, and the needle arrangement of the fabric body during knitting is: needle cylinder arrangement AB knitting needles.
[0017] Please continue reading. Figure 1 As shown, in one embodiment of this utility model, the fabric body satisfies the following characteristics: both the first and second rows are loop weaves. The yarns of the first and second rows form loop weave structures in the same cycle, thus forming a single-sided plain knit structure. Through this combined weaving method, along with ultra-fine denier nylon filaments and spandex filaments, the fabric structure becomes uniform and stable, lightweight while also possessing good elasticity.
[0018] Please continue reading. Figure 1As shown, in one embodiment of this utility model, the length of the 100-needle nylon filament yarn is 14.5-17cm, and the length of the 100-needle spandex filament yarn is 6-7cm.
[0019] Please continue reading. Figure 1 As shown in one embodiment of this utility model, the finished weight of the fabric is 45-80 g / m². 2 It achieves both a slim and lightweight design and the durability required for comfortable wear.
[0020] Please continue reading. Figure 1 As shown in one embodiment of the present invention, the surface layer of the fabric is provided with a planar pattern layer or a three-dimensional pattern layer, thereby giving the fabric a richer visual and tactile effect.
[0021] Please continue reading. Figure 1 As shown in one embodiment of this utility model, a glove includes a glove made of the ultra-thin glove fabric described in the above embodiment. Utilizing the ultra-thin and soft properties of the fabric, it provides a more comfortable, breathable, soft, lightweight, and pressure-free wearing experience.
[0022] The main body of this ultra-thin glove fabric is woven from ultra-fine denier nylon filaments and spandex filaments, giving the fabric its ultra-thin characteristics. At the same time, the single-sided plain knit structure and controlled yarn feed ensure a uniform and stable fabric structure. Combined with the elastic spandex filaments, it guarantees both ultra-thin performance and good elasticity. The weight design makes the fabric both lightweight and durable.
[0023] The above description is only a preferred embodiment of the present utility model and should not be construed as a limitation of this application. All equivalent changes and modifications made within the scope of the patent application of the present utility model should be included in the scope of the present utility model.
Claims
1. An ultra-thin glove fabric, characterized by: The fabric body is a single surface flat knitting structure with 2 yarns per cycle, the 2 yarns are 5-10D / 1-24F fine denier nylon filament and 10-15D fine denier spandex filament, and the thickness of the fabric body is 0.05-0.12mm.
2. The ultra-thin glove fabric of claim 1, wherein: The yarn arrangement of the fabric body is 2 yarns per cycle, and the needle arrangement of the fabric body during knitting is: needle cylinder arrangement AB knitting needle.
3. The ultra-thin glove fabric of claim 1, wherein: The fabric body satisfies the following characteristics: the first and second yarns are both looped stitches.
4. The ultra-thin glove fabric of claim 1, wherein: The nylon filament yarn length of 100 needles is 14.5-17cm, and the spandex filament yarn length of 100 needles is 6-7cm.
5. The ultra-thin glove fabric of claim 1, wherein: The finished fabric has a weight of 45-80 g / m 2 .
6. The ultra-thin glove fabric of claim 1, wherein: A planar pattern layer is arranged on the surface layer of the fabric, or a three-dimensional pattern layer is printed on the surface layer of the fabric.
7. A glove characterized in that, A glove made of the ultra-thin glove fabric according to any one of claims 1-6.