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Anticollision glove processing technology

A processing technology and glove technology, applied in the field of anti-collision gloves processing technology, can solve problems such as difficult to weave thick materials, insufficient elasticity, difficult to do, etc., to improve chemical resistance and oil resistance, and change softness and resilience, changing the effect of low temperature resistance

Inactive Publication Date: 2018-03-30
江苏瑞斯达安全防护用品有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

These protective gloves have the following disadvantages: the leather, cloth, and yarn cannot be made very thick to meet the protection of the opponent; they cannot be made very soft to meet the dexterity of the hands
Especially the protective block of drop plastic type will melt at high temperature and become brittle at low temperature, which can only meet the work at room temperature and is not elastic enough and relatively hard, which is easy to cause secondary injuries to hands
The reason for the disadvantage is: leather, limited by the animal's own conditions, can be made of soft and elastic leather, but it is difficult to make soft leather with a thickness of more than 8MM, because the thickness of the leather is generally zero. A few millimeters can be accumulated; cloth is limited by the yarn, and it is difficult to weave thick materials. His accumulation is made by superimposing layers of cloth. Although it can be thick, it cannot be soft and soft. Elastic thick material; yarn, limited by the yarn, can weave thick, soft and elastic thick material, but cannot weave the tightness and toughness like leather

Method used

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  • Anticollision glove processing technology

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0026] A kind of anti-collision glove processing technology, completes the anti-collision glove processing technology through the pasting, spraying and coating steps of anti-collision strips; the specific steps are as follows:

[0027] (1) Sticking of the anti-collision strip: the outside of the glove body is coated with an adhesive, and then the anti-collision strip is glued to the outer surface of the glove body. The anti-collision strip is a mixture of polyvinyl chloride and tripropylene polyethylene , the mixing mass ratio of polyvinyl chloride and tripropylene polyethylene is 70%: 30%;

[0028] (2) Drenching: the gloves with anti-collision strips are drenched once in a special slurry, and after the first drenching is completed, a second drenching is performed;

[0029] (3) Coating: Anti-slip treatment is performed on the palm of the glove after rinsing, that is, the immersion coating of the palm is performed on the glove after rinsing in the anti-slip solution.

[0030] ...

Embodiment 2

[0036] A kind of anti-collision glove processing technology, completes the anti-collision glove processing technology through the pasting, spraying and coating steps of anti-collision strips; the specific steps are as follows:

[0037] (1) Sticking of the anti-collision strip: the outside of the glove body is coated with an adhesive, and then the anti-collision strip is glued to the outer surface of the glove body. The anti-collision strip is a mixture of polyvinyl chloride and tripropylene polyethylene , the mixing mass ratio of polyvinyl chloride and tripropylene polyethylene is 70%: 30%;

[0038] (2) Drenching: the gloves with anti-collision strips are drenched once in a special slurry, and after the first drenching is completed, a second drenching is performed;

[0039] (3) Coating: Anti-slip treatment is performed on the palm of the glove after rinsing, that is, the immersion coating of the palm is performed on the glove after rinsing in the anti-slip solution.

[0040] ...

Embodiment 3

[0046] A kind of anti-collision glove processing technology, completes the anti-collision glove processing technology through the pasting, spraying and coating steps of anti-collision strips; the specific steps are as follows:

[0047] (1) Sticking of the anti-collision strip: the outside of the glove body is coated with an adhesive, and then the anti-collision strip is glued to the outer surface of the glove body. The anti-collision strip is a mixture of polyvinyl chloride and tripropylene polyethylene , the mixing mass ratio of polyvinyl chloride and tripropylene polyethylene is 70%: 30%;

[0048] (2) Drenching: the gloves with anti-collision strips are drenched once in a special slurry, and after the first drenching is completed, a second drenching is performed;

[0049] (3) Coating: Anti-slip treatment is performed on the palm of the glove after rinsing, that is, the immersion coating of the palm is performed on the glove after rinsing in the anti-slip solution.

[0050] ...

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PUM

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Abstract

The invention discloses an anticollision glove processing technology. The anticollision glove processing technology is completed by the steps of anticollision strip sticking, slurry spraying, and coating. According to the invention, the anticollision strip is sticked outside the glove body, is prepared in a high temperature die after mixing of polyvinyl chloride and tripropylene polyethylene, hasbetter softness, and is more suitable for ergonomic use. At the same time, antislip treatment is carried out on the palm part of the glove body, thus realizing slip resistance of the palm.

Description

technical field [0001] The invention relates to a processing technology of gloves, in particular to a processing technology of anti-collision gloves. Background technique [0002] Polyvinyl chloride (PVC) has a wide range of raw materials, low product cost, light weight, convenient construction and maintenance, and is the second most common plastic. However, PVC materials have disadvantages such as poor toughness and poor heat resistance, which restrict their development in fields with high performance requirements. [0003] Nitrile rubber is produced by emulsion polymerization of butadiene and acrylonitrile. Nitrile rubber is mainly produced by low-temperature emulsion polymerization. It has excellent oil resistance, high wear resistance, good heat resistance and strong adhesion. , its disadvantages are poor low temperature resistance, poor ozone resistance, poor insulation performance, and slightly lower elasticity. [0004] Due to the large difference in molecular struc...

Claims

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Application Information

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IPC IPC(8): B29C65/52B29C41/02A41D19/015A41D19/04C08L27/06C08L9/02C08L67/00C08K5/092
CPCB29C65/52A41D19/01505A41D19/04B29C41/02C08L9/02C08L27/06C08L2205/03C08L67/00C08K5/092
Inventor 裘耀明
Owner 江苏瑞斯达安全防护用品有限公司