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以多官能度的聚甲基甲氧基硅氧烷(PMOS)作为大分子交联剂,与端羟基聚硅氧烷橡胶通过室温水解缩合反应而固化.多官能度的PMOS在硅橡胶中原位生成了大量高密度多官能度的PMOS相,使硅橡胶的交联密度增大.热重法(TG)测试表明,多官能度的PMOS交联硅橡胶500 ℃的质量残留率为66%,计算得出热降解反应级数为0.974、热降解反应表现活化能为78.0 kJ/mol.X射线光电子能谱分析(XPS)表明多官能度的PMOS相阻碍了硅橡胶的热降解反应,提高了硅橡胶的耐热性能.

Polymethylmethoxysiloxane(PMOS)was employed as the crosslinking agent of polydimethylsiloxane (PDMS). High-crosslinked PMOS phases were in-situ formed and the average crosslink density increased as the loading of PMOS went up. The residual mass at 500 ℃ was 66 %, the pyrolysis reaction order was 0.974 and the activation energy for degradation was 78.0 kJ/mol. It was detected that dense PMOS phases can reduce the pyrolysis of polydimethylsiloxane at elevated temperature.

参考文献

[1] Coons JE;McKay MD;Hamada MS .A Bayesian analysis of the compression set and stress-strain behavior in a thermally aged silicone foam[J].Polymer Degradation and Stability,2006(8):1824-1836.
[2] Mogon Patel;Mark Soames;Anthony R. Skinner;Thomas S. Stephens .Stress relaxation and thermogravimetric studies on room temperature vulcanised polysiloxane rubbers[J].Polymer Degradation and Stability,2004(1):111-116.
[3] Chang TC.;Liao CL.;Lin ST.;Wang GP.;Wu KH. .Thermo-oxidative degradation of siloxane-containing polyimide and unmodified polyimide[J].Polymer Degradation and Stability,1998(2):299-305.
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