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A kind of preparation method of anti-collision glove

A glove and anti-collision technology, which is applied in gloves, protective clothing, and other household appliances, can solve the problems of stainless steel wire with low elasticity, poor cushioning performance, and easy fatigue when wearing, so as to achieve less human injury, enhance cushioning performance, and improve anti-corrosion. The effect of bump function

Active Publication Date: 2020-05-01
SHANDONG XINGYU GLOVES
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] At present, ordinary stainless steel wire gloves are used as anti-collision gloves. Although they have part of the anti-collision function, due to the small elasticity of stainless steel wire, poor air permeability, hard texture, and the use of stainless steel wire interweaving and dense, the cushioning performance is poor. Wearing is easy to fatigue and has poor grip, so it is not suitable for workplaces that require finer details
[0004] In addition, there are existing anti-collision gloves made of physical foaming. Although the soft texture and good air permeability have improved many of the shortcomings of the above-mentioned stainless steel wire gloves, the cushioning performance is poor and cannot be used for a long time. Therefore, it is urgent to develop a A kind of anti-collision gloves with superior cushioning performance, long-term use and good anti-collision function

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0028] The present embodiment provides a kind of preparation method of anti-collision glove, specifically comprises the following steps:

[0029] S00. Prepare bead glue on the back of the hand and bead glue on the palm.

[0030] Specifically, the preparation method of the above-mentioned dorsal bead glue comprises the following steps:

[0031] a1, 1000 parts of natural rubber latex are pre-vulcanized by a sulfur vulcanization system to obtain pre-vulcanized latex. Among them, during the pre-vulcanization process, the natural latex molecular chains are partially vulcanized, and the natural latex molecules are quickly cross-linked to form a network structure. This process is carried out inside the natural latex particles, so that the natural latex corresponding Geophysical changes and chemical changes, thereby improving its physical and mechanical properties. The swelling index (that is, the Q value, representing the degree of crosslinking, the higher the Q value, the lower th...

Embodiment 2

[0047] The present embodiment provides a kind of preparation method of anti-collision glove, specifically comprises the following steps:

[0048] S00. Prepare bead glue on the back of the hand and bead glue on the palm.

[0049] Specifically, the preparation method of the above-mentioned dorsal bead glue comprises the following steps:

[0050] a1, 800 parts of natural rubber latex were pre-vulcanized by thiuram vulcanization system to obtain pre-vulcanized latex. The Q value of the prevulcanized latex finally obtained is 5.5, the mechanical stability is greater than 2000s, the viscosity reaches 75MPa s, the 300% modulus stress reaches 0.95MPa, the tensile strength reaches 28MPa, and the elongation at break reaches 800%. Process requirements.

[0051] a2. Add 8 parts of sodium dodecylbenzenesulfonate to the prevulcanized latex obtained in step a1, and mix it evenly by stirring or vibrating.

[0052] a3. Add 10 parts of sodium bicarbonate to the mixed solution obtained in ste...

Embodiment 3

[0063] The present embodiment provides a kind of preparation method of anti-collision glove, specifically comprises the following steps:

[0064] S00. Prepare bead glue on the back of the hand and bead glue on the palm.

[0065] Specifically, the preparation method of the above-mentioned dorsal bead glue comprises the following steps:

[0066] a1. 950 parts of natural rubber latex were pre-vulcanized by a resin vulcanization system to obtain pre-vulcanized latex. The Q value of the prevulcanized latex finally obtained is 5.0, the mechanical stability is greater than 3200s, the viscosity reaches 80MPa s, the 300% modulus stress reaches 0.99MPa, the tensile strength reaches 30MPa, and the elongation at break reaches 880%. Process requirements.

[0067] a2. Add 6 parts of sodium dodecylbenzene sulfonate and 9 parts of Pingpingjia to the prevulcanized latex obtained in step a1, and mix them evenly by stirring or shaking.

[0068] a3. Add 20 parts of sodium carbonate and 15 part...

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Abstract

The invention relates to a preparation method of an anti-collision glove. The preparation method includes the following steps of S1, hand back dotting, wherein the hand back portion of a glove blank is subjected to frictioning through hand back dotting glue; S2, foaming, wherein the glove blank obtained after frictioning in S1 is subjected to heating foaming; S3, vulcanization, wherein the foamedglove blank obtained in S2 is vulcanized, an anti-collision glue layer is formed on the hand back portion of the glove blank, and the anti-collision glove is obtained. The hand back dotting glue is prepared from, by mass, 800-1,200 parts of natural latex, 8-20 parts of surfactant, 10-50 parts of foaming agent and 15-60 parts of thickener. The foaming agent is one or a combination of sodium carbonate, sodium bicarbonate, benzenesulfonyl, dinitroso-pentamethyltetramine and diazobenzene aniline. The anti-collision glove prepared through the preparation method has excellent buffering performance,can be used for a long time, and has a good anti-collision function.

Description

technical field [0001] The invention belongs to the technical field of labor protection products, and in particular relates to a preparation method of anti-collision gloves. Background technique [0002] Protective gloves refer to protective products that protect workers' hands from physical, chemical, and biological factors during labor. There are many types of protective gloves. Protective gloves with various functions such as heat radiation, fire resistance and flame retardant. Among them, anti-collision gloves are mainly used in occasions where the operator needs to defend against external impacts. When encountering an impact, the operator generally uses the back of the hand to resist to achieve the purpose of defense. Therefore, when performing impact defense, the back of the hand mainly bears the impact force, so it is very important to protect the back of the hand. [0003] At present, ordinary stainless steel wire gloves are used as anti-collision gloves. Although ...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): A41D19/015C08J9/08C08J9/10C08L7/02C08L13/02C08L11/02C08K5/42C08K5/41B29D99/00
CPCA41D19/01523B29D99/0067C08J9/0033C08J9/0061C08J9/08C08J9/10C08J9/105C08J9/107C08J2203/02C08J2203/04C08J2203/18C08J2203/20C08J2307/02C08J2311/02C08J2313/02C08J2433/02C08K5/41C08K5/42
Inventor 周星余王垂文
Owner SHANDONG XINGYU GLOVES
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