High-rebounding composite pad
A composite pad and high resilience technology, applied in the field of composite pads, can solve the problems of easy adhesion of bacteria, no flame retardant effect, poor rebound effect, etc., and achieve good resilience, improve foot feel, and improve rebound effect. Effect
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Embodiment 1
[0018] The high resilience composite pad proposed by the present invention includes the following raw materials in parts by weight: 150 parts of styrene thermoplastic elastomer, 30 parts of polymer elastomer resin, 10 parts of polyester polyol, 15 parts of artificial latex, polypropylene 25 parts, 3 parts polyurethane, 3 parts foaming agent, 5 parts butyl rubber, 3 parts cross-linking agent, 3 parts coupling agent, 3 parts antioxidant, 2 parts dispersant, 1 part antibacterial agent, flame retardant 2 servings.
[0019] The high resilience composite pad provided by the present invention includes the following preparation steps:
[0020] S1: Mix the corresponding parts by weight of styrene-based thermoplastic elastomer, polymer elastomer resin, polyester polyol, artificial latex, polypropylene, polyurethane and butyl rubber with a mixer, and mix at a temperature of 45°C at 600r Stir for 80 min at a speed of 1 / min. After stirring, the mixture is stored at a temperature of 15°C to obt...
Embodiment 2
[0024] The high resilience composite pad proposed by the present invention includes the following raw materials in parts by weight: 175 parts of styrene thermoplastic elastomer, 35 parts of polymer elastomer resin, 15 parts of polyester polyol, 17.5 parts of artificial latex, polypropylene 27.5 parts, 5.5 parts of polyurethane, 4 parts of foaming agent, 7.5 parts of butyl rubber, 4 parts of crosslinking agent, 4 parts of coupling agent, 4 parts of antioxidant, 3.5 parts of dispersant, 1.5 parts of antibacterial agent, flame retardant 4 parts.
[0025] The high resilience composite pad provided by the present invention includes the following preparation steps:
[0026] S1: Mix the corresponding parts by weight of styrene-based thermoplastic elastomer, polymer elastomer resin, polyester polyol, artificial latex, polypropylene, polyurethane and butyl rubber with a mixer, and mix at a temperature of 45°C at 600r Stir for 80 min at a speed of 1 / min. After stirring, the mixture is store...
Embodiment 3
[0030] The high resilience composite pad proposed by the present invention includes the following raw materials in parts by weight: 200 parts of styrene thermoplastic elastomer, 40 parts of polymer elastomer resin, 20 parts of polyester polyol, 20 parts of artificial latex, polypropylene 30 parts, 8 parts polyurethane, 5 parts foaming agent, 10 parts butyl rubber, 5 parts cross-linking agent, 5 parts coupling agent, 5 parts antioxidant, 5 parts dispersant, 2 parts antibacterial agent, flame retardant 6 servings.
[0031] The high resilience composite pad provided by the present invention includes the following preparation steps:
[0032] S1: Mix the corresponding parts by weight of styrene-based thermoplastic elastomer, polymer elastomer resin, polyester polyol, artificial latex, polypropylene, polyurethane and butyl rubber with a mixer, and mix at a temperature of 45°C at 600r Stir for 80 min at a speed of 1 / min. After stirring, the mixture is stored at a temperature of 15°C to o...
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