Oil-resistant low-pressure-change skeleton oil seal material for reciprocating dynamic sealing
A skeleton oil seal and low-pressure change technology, applied in the field of skeleton oil seals, can solve the problems of difficult to meet the use requirements of oil seals, oil seals, oil resistance, acid and alkali resistance, and poor pressure change resistance, so as to increase the scope of use, reduce raw material costs, and reduce use. cost effect
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Embodiment 1
[0022] Embodiment 1 A kind of preparation method of toughening filler
[0023] A preparation method for toughening filler, comprising the following steps:
[0024] Calcinate 100 parts by weight of kaolin at 1050°C for 2 hours, take it out and cool it down naturally, and pulverize it into powder, soak it in hydrochloric acid with a mass percentage of 12% for 1 hour, then rinse it with distilled water until it is neutral, and mix it with 45 parts by weight of polyimide Mix the resin powder, stir and heat the reaction at 420°C for 2.5 hours, then add 12 parts by weight of silicon nitride, 15 parts by weight of barium metaborate, 5 parts by weight of carbon black, and 46 parts by weight of benzyltriphenylphosphine chloride after cooling. After stirring and mixing evenly, raise the temperature to 280°C, stir and heat for reaction for 1 hour, and after cooling, perform ultrafine pulverization to obtain the toughening filler.
Embodiment 2
[0025] Example 2 An oil-resistant and low-pressure variable skeleton oil seal material for reciprocating dynamic seals
[0026] A framework oil seal material resistant to oil and low pressure deformation for reciprocating dynamic seals, comprising the following components in parts by weight:
[0027] 220 parts by weight of EPDM rubber, 85 parts by weight of silicone rubber, 60 parts by weight of natural rubber, 45 parts by weight of fluororubber, 35 parts by weight of polyvinyl chloride resin, 15 parts by weight of ultra-high molecular weight polyethylene fiber, modified polymethyl 9 parts by weight of ethylene carbonate, 7 parts by weight of ultrafine polytetrafluoroethylene powder, 1 part by weight of nano-tungsten carbide, 3 parts by weight of zinc acrylate, 1 part by weight of rock wool fiber, 3 parts by weight of dimethyl phthalate, 1 part by weight of carbon steel fiber, 2 parts by weight of benzyltriphenylphosphine chloride, 3 parts by weight of sulfur, 1 part by weight...
Embodiment 3
[0032] Example 3 An oil-resistant and low-pressure variable skeleton oil seal material for reciprocating dynamic seals
[0033] A framework oil seal material resistant to oil and low pressure deformation for reciprocating dynamic seals, comprising the following components in parts by weight:
[0034] 220 parts by weight of EPDM rubber, 85 parts by weight of silicone rubber, 60 parts by weight of natural rubber, 45 parts by weight of fluororubber, 35 parts by weight of polyvinyl chloride resin, 15 parts by weight of ultra-high molecular weight polyethylene fiber, modified polymethyl 11 parts by weight of ethylene carbonate, 9 parts by weight of ultrafine polytetrafluoroethylene powder, 3 parts by weight of nano-tungsten carbide, 5 parts by weight of zinc acrylate, 3 parts by weight of rock wool fiber, 5 parts by weight of dimethyl phthalate, 3 parts by weight of carbon steel fiber, 4 parts by weight of benzyltriphenylphosphine chloride, 5 parts by weight of sulfur, 3 parts by w...
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