Shock-absorbing rubber-plastic composite

A composite material, rubber-plastic technology, applied in the field of rubber-plastic composite materials, can solve the problems of poor anti-ultraviolet aging performance, delamination, inability to bond, poor wear resistance, etc., to achieve excellent anti-ultraviolet aging performance, shorten viscosity Combined process, good shock absorption effect

Inactive Publication Date: 2016-03-02
JINJIANG CHENGCHANG SHOES
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The materials used above are either too heavy, such as metal springs, or because of the unsaturated bonds in the materials, the UV aging resistance and wear resistance are poor. At the same time, they are combined with other materials such as EVA foam composite materials. During vulcanization molding, it cannot be synchronized, resulting in delamination and cannot be bonded, and its application range is limited

Method used

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Examples

Experimental program
Comparison scheme
Effect test

specific Embodiment 1

[0023] A shock-absorbing rubber-plastic composite material, which is composed of rubber-plastic composite particles, fillers, foaming agents, foaming aids, lubricants, and crosslinking agents. The ratio of each component is:

[0024] Rubber-plastic composite particles: 100kg, the ratio is: 90kg hydrogenated styrene-butadiene copolymer, 5kg ethylene-octene copolymer, 5kg chlorinated polyethylene;

[0025] The filler is 10kg talcum powder or calcium carbonate;

[0026] The foaming agent adopts 2kg azo foaming agent, such as azodicarbonamide;

[0027] The foaming aid uses 0.6kg metal oxide ZnO;

[0028] The lubricant uses 0.7kg of stearic acid and 0.8kg of zinc stearate;

[0029] The crosslinking agent adopts 0.8kg dicumyl peroxide.

[0030] Its production process is as follows:

[0031] 1. Fully mix 100kg of rubber-plastic composite granules with 10kg of filler, 0.6kg of foaming aid, 0.7kg of stearic acid and 0.8kg of zinc stearate in an internal mixer;

[0032] 2. Knead th...

specific Embodiment 2

[0036] A shock-absorbing rubber-plastic composite material, which is composed of rubber-plastic composite particles, fillers, foaming agents, foaming aids, lubricants, and crosslinking agents. The ratio of each component is:

[0037] Rubber-plastic composite particles: 100kg, the ratio is: 60kg hydrogenated styrene-butadiene copolymer, 10kg ethylene-octene copolymer, 30kg chlorinated polyethylene;

[0038] The filler is 40kg talcum powder or calcium carbonate;

[0039] The foaming agent uses 3kg of azo foaming agent, such as azodicarbonamide;

[0040] The foaming aid uses 1kg metal oxide ZnO;

[0041] The lubricant uses 0.2kg of stearic acid and 1kg of zinc stearate;

[0042] The crosslinking agent adopts 0.4kg dicumyl peroxide.

[0043] Its production process is as follows:

[0044] 1. Fully mix 100kg of rubber-plastic composite granules with 40kg of filler, 1kg of foaming aid, 0.2kg of stearic acid and 1kg of zinc stearate in an internal mixer;

[0045] 2. Knead the mix...

specific Embodiment 3

[0049] A shock-absorbing rubber-plastic composite material, which is composed of rubber-plastic composite particles, fillers, foaming agents, foaming aids, lubricants, and crosslinking agents. The ratio of each component is:

[0050] Rubber-plastic composite particles: 100kg, the ratio is: 60kg hydrogenated styrene-butadiene copolymer, 30kg ethylene-octene copolymer, 10kg chlorinated polyethylene;

[0051] The filler is 30kg talcum powder or calcium carbonate;

[0052] Foaming agent adopts 5kg azo foaming agent, such as azodicarbonamide;

[0053] The foaming aid uses 3kg metal oxide ZnO;

[0054] The lubricant uses 1kg of stearic acid and 0.3kg of zinc stearate;

[0055] The cross-linking agent adopts 1kg dicumyl peroxide.

[0056] Its production process is as follows:

[0057] 1. Fully mix 100kg of rubber-plastic composite granules with 30kg of filler, 3kg of foaming aid, 1kg of stearic acid and 0.3kg of zinc stearate in an internal mixer;

[0058] 2. Knead the mixed mat...

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PUM

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Abstract

The invention relates a composite material, in particular to a rubber-plastic composite material especially used as shoe material and for components such as sporting goods, leather and the like. The composite material is obtained by proportionally mixing rubber-plastic composite particles, a filling agent, a blowing agent, a blowing promoter, a lubricating agent and a cross-linking agent, and the rubber-plastic composite particles are obtained by proportionally mixing hydrogenated styrene-butadiene copolymer, ethylene-octene copolymer and chlorinated polyethylene. The shock-absorbing rubber-plastic composite material provided by the invention has an excellent anti-ultraviolet performance, good wear-resisting and scratch resisting performances and low rebound resilience, and meanwhile is convenient for direct vulcanization shaping with EVA (ethylene-vinyl acetate copolymer) composite materials for bonding.

Description

【Technical field】 [0001] The invention relates to a composite material, especially a rubber-plastic composite material specially used for shoe materials, sporting goods, protective articles and other products. 【Background technique】 [0002] At present, the use of shock-absorbing buffer materials is more commonly the following: (1) utilize metal or plastic devices to absorb shock, such as installing spring columns on the heels of various sports shoes or placing air bags in the shoes to achieve shock absorption Cushioning effect; (2) Using foam material as shock absorbing material, mainly composed of brominated butyl rubber, hydrogenated isoprene-hydrogenated styrene, and isoprene-styrene as the main raw materials . The materials used above are either too heavy, such as metal springs, or because of the unsaturated bonds in the materials, the UV aging resistance and wear resistance are poor. At the same time, they are combined with other materials such as EVA foam composite m...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): C08L25/10C08L47/00C08L23/08C08L23/28C08L23/20C08K3/34C08K3/26C08K5/14C08K5/09C08K5/098C08J9/10
Inventor 李灿升
Owner JINJIANG CHENGCHANG SHOES
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