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Synthesis and Characterization of Room Temperature Vulcanized Silicone Rubber Using Methoxyl-Capped MQ Silicone Resin as Self-Reinforced Cross-Linker

机译:甲氧基封端的MQ有机硅树脂为自增强交联剂的室温硫化硅橡胶的合成与表征

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摘要

Methoxyl-capped MQ silicone resin (MMQ) was first synthesized by the hydrosilylation of vinyl-containing MQ silicone resin and trimethoxysilane and then used in condensed room-temperature vulcanized (RTV) silicone rubber as a self-reinforced cross-linker. Results show that modified silicone rubber exhibits good light transmission. Compared with unmodified silicone rubber, the hardness, tensile strength and elongation of MMQ at the break are increased by 26.4 A, 2.68 MPa and 65.1%, respectively. In addition, the characteristic temperature of 10% mass loss is delayed from 353.5 °C to 477.1 °C, the temperature at maximum degradation rate is also delayed from 408.9 °C to 528.4 °C and the residual mass left at 800 °C is increased from 1.2% to 27.7%. These improved properties are assigned to the synergistic effect of the rigid structure of MMQ, the formation of a dense cross-linking structure in polymers and the uniform distribution of MMQ cross-linking agent in RTV silicone rubber.
机译:甲氧基封端的MQ硅树脂(MMQ)首先通过含乙烯基的MQ硅树脂和三甲氧基硅烷的氢化硅烷化反应合成,然后在缩合的室温硫化(RTV)硅橡胶中用作自增强交联剂。结果表明,改性硅橡胶具有良好的透光性。与未改性的硅橡胶相比,MMQ断裂时的硬度,拉伸强度和伸长率分别提高了26.4 A,2.68 MPa和65.1%。此外,质量损失10%的特征温度从353.5°C延迟到477.1°C,最大降解速率下的温度也从408.9°C延迟到528.4°C,并且在800°C时残留的残留物增加从1.2%升至27.7%。这些改善的性能归因于MMQ刚性结构,在聚合物中形成致密的交联结构以及RTV硅橡胶中MMQ交联剂的均匀分布的协同效应。

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