High-elastic anti-static sole and preparation method thereof
A ballistic and static electricity technology, applied in the direction of shoe soles, footwear, clothing, etc., can solve the problems that affect the wear resistance of shoes, the sole cannot be applied, and the requirements are not up to standard, etc., to achieve small deformation, small average pore size, fine and uniform pores Effect
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[0031] A preparation method of a high-elasticity anti-static sole, comprising the following steps:
[0032] Step 1, the laurylamine polyoxyethylene ether is prepared into a solution with a mass fraction of 1.6%, and then uniformly sprayed on the mica powder, and dried to form the modified mica powder;
[0033] Step 2, mix the modified mica powder obtained in step 1 with polyvinyl chloride, mica powder, acetylene carbon black, carbon fiber, zinc oxide, foaming agent, di-tert-butyl peroxy cumene, epoxidized soybean oil, Antioxidant and sodium lauryl sulfate are mixed and placed in the mold;
[0034] Step 3, heating the upper mold of the mold to 180-200°C, heating the lower mold to 150-160°C, holding for 2-3 minutes, cooling and shaping for more than 2 minutes, and demoulding to obtain the outsole;
[0035] Step 4, prepare the midsole;
[0036] Step 5, apply shoe glue on the outsole prepared in step 3, and then compound the prepared midsole on the outsole to form the high-elast...
Embodiment 1
[0043] The utility model relates to a high-bounce anti-static sole, which is composed of an outsole and a midsole.
[0044] The outsole is composed of the following raw materials by weight: 85 parts of polyvinyl chloride, 5 parts of mica powder, 4 parts of acetylene carbon black, 3 parts of carbon fiber, 5 parts of zinc oxide, 6 parts of foaming agent, bis-tert-butyl peroxyisopropyl 5 parts of base benzene, 5 parts of epoxidized soybean oil, 1 part of 2-tert-butyl-4-methylphenol, 8 parts of sodium lauryl sulfate, 1 part of laurylamine polyoxyethylene ether; wherein, the foaming agent is composed of P-toluenesulfonyl hydrazide, sodium bicarbonate and polyethylene glycol are composed in a mass ratio of 1:0.65:0.25.
[0045] The midsole is composed of the following raw materials by weight: 60 parts of ethylene-vinyl acetate copolymer, 40 parts of styrene-butadiene rubber, 5 parts of azobisisobutyronitrile, 3 parts of magnesium bicarbonate, 5 parts of dibenzoyl peroxide, 3 parts ...
Embodiment 2
[0058] The utility model relates to a high-bounce anti-static sole, which is composed of an outsole and a midsole.
[0059] The outsole is composed of the following raw materials by weight: 100 parts of polyvinyl chloride, 10 parts of mica powder, 2 parts of acetylene carbon black, 6 parts of carbon fiber, 2 parts of zinc oxide, 10 parts of foaming agent, bis-tert-butyl peroxyisopropyl 8 parts of base benzene, 2 parts of epoxidized soybean oil, 2 parts of 2-tert-butyl-4-methylphenol, 3 parts of sodium lauryl sulfate, 3 parts of laurylamine polyoxyethylene ether; wherein, the foaming agent is composed of P-toluenesulfonyl hydrazide, sodium bicarbonate and polyethylene glycol are composed in a mass ratio of 1:0.78:0.36.
[0060] The midsole is composed of the following raw materials by weight: 70 parts of ethylene-vinyl acetate copolymer, 30 parts of styrene-butadiene rubber, 7 parts of azobisisobutyronitrile, 2 parts of magnesium bicarbonate, 8 parts of dibenzoyl peroxide, 1 p...
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