Corrosion-resistant carbon fiber resin-based composite material used for pump
A carbon fiber resin-based, corrosion-resistant pump technology, applied in the field of polymer materials, can solve the problems of poor wear resistance, corrosion resistance and fatigue resistance, and higher and higher requirements, and achieve good product quality and good mechanical properties. , the effect of high specific strength
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Example Embodiment
[0016] Embodiment one
[0017] A carbon fiber resin-based composite material for corrosion-resistant pumps proposed by the present invention includes the following raw materials in parts by weight: 18 parts of ultra-high molecular weight polyethylene resin, 102 parts of novolak epoxy resin, 5 parts of fluorocarbon resin, 5 parts of carbon fiber, 1 , 1.2 parts of 6-hexanediol, 0.2 parts of nano titanium dioxide, 0.4 parts of nano silicon dioxide, and 6 parts of additives.
[0018] Among them, the auxiliary agent is composed of 12% coupling agent, 18% lubricant, 8% solubilizer, 12% flame retardant and the rest of the filler. The compatibilizer is maleic anhydride grafted polyethylene, and the filler is barium sulfate.
[0019] Its preparation method comprises the following steps:
[0020] S1. After heating and melting the ultra-high molecular weight polyethylene resin of the specific gravity at 70°C, cool down to 40°C for protection, add the novolac epoxy resin and fluorocarbon...
Example Embodiment
[0023] Embodiment two
[0024] A carbon fiber resin-based composite material for corrosion-resistant pumps proposed by the present invention includes the following raw materials in parts by weight: 20 parts of ultra-high molecular weight polyethylene resin, 15 parts of phenolic epoxy resin, 6 parts of fluorocarbon resin, 6 parts of carbon fiber, 1 , 0.8 parts of 6-hexanediol, 0.1 parts of nano-titanium dioxide, 0.3 parts of nano-silica, and 10 parts of additives.
[0025] Among them, the auxiliary agent is composed of 6% coupling agent, 15% lubricant, 15% solubilizer, 6% flame retardant and the rest of the filler. The compatibilizer is maleic anhydride grafted polyethylene, and the filler is calcium carbonate.
[0026] Its preparation method comprises the following steps:
[0027] S1. After heating and melting the ultra-high molecular weight polyethylene resin of the specific gravity at 60°C, cool down to 35°C for protection, add the novolac epoxy resin and fluorocarbon resin...
Example Embodiment
[0030] Embodiment Three
[0031] A carbon fiber resin-based composite material for corrosion-resistant pumps proposed by the present invention includes the following raw materials in parts by weight: 25 parts of ultra-high molecular weight polyethylene resin, 17 parts of phenolic epoxy resin, 7 parts of fluorocarbon resin, 7 parts of carbon fiber, 1 , 1 part of 6-hexanediol, 0.4 parts of nano-titanium dioxide, 0.1 part of nano-silica, and 8 parts of additives.
[0032] Among them, the auxiliary agent is composed of 9% coupling agent, 20% lubricant, 10% solubilizer, 8% flame retardant and the rest of filler, the compatibilizer is maleic anhydride grafted polyethylene, and the filler is talc powder.
[0033] Its preparation method comprises the following steps:
[0034] S1. After heating and melting the ultra-high molecular weight polyethylene resin of the specific gravity at 80°C, cool down to 30°C for protection, add the novolac epoxy resin and fluorocarbon resin of the speci...
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