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An efficient strategy for simultaneously improving tracking resistance and flame retardancy of addition-cure liquid silicone rubber

机译:同时提高加成固化液态硅橡胶的耐漏电起痕性和阻燃性的有效策略

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摘要

How to effectively improve tracking resistance and flame retardancy of silicone rubber is one of the key problems needed to be resolved in the development of high performance silicone rubber insulating materials. In this work, a novel functional silane containing hindered amine and urethane groups, named PPAS, was synthesized by using 1,2,2,6,6-pentamethyl-4-piperidinol, (3-isocyanatopropyl) triethoxysilane and allyl acohol via the nucleophilic substitution and trans-etherification. The effects of PPAS on the tracking resistance, flame retardancy and thermal stability of addition-cure liquid silicone rubber (ALSR) were investigated. It was found that PPAS could effectively enhance the tracking resistance and flame retardancy of ALSR simultaneously. When the content of PPAS was only 3.0 phr, ALSR/PPAS could pass the 1A4.5 kV level in the inclined plane (IP) test and had outstanding electrical erosion resistance, which showed great potential in exterior insulator. In particular, the limiting oxygen index (LOI) of the ALSR/PPAS was 30.0%, and it had a good self-extinguishing capability. Meanwhile, the risk of fire measured by cone calorimeter was also significantly reduced. The mechanism for these phenomena were further studied and revealed: PPAS could effectively quench the peroxyl radicals and suppress the oxidation degradation of Si-CH_3 groups, eliminate the Si-OH groups and promote the cross-linked reaction during the thermal degradation of ALSR.
机译:如何有效提高硅橡胶的耐漏电起痕性和阻燃性是开发高性能硅橡胶绝缘材料需要解决的关键问题之一。在这项工作中,通过使用1,2,2,6,6-五甲基-4-哌啶醇,(3-异氰酸根合丙基)三乙氧基硅烷和烯丙醇经亲核反应,合成了一种新的含受阻胺和氨基甲酸酯基团的官能硅烷,称为PPAS取代和反醚化。研究了PPAS对加成固化液态硅橡胶(ALSR)的耐电痕性,阻燃性和热稳定性的影响。发现PPAS可以同时有效地增强ALSR的耐漏电性和阻燃性。当PPAS含量仅为3.0 phr时,ALSR / PPAS在倾斜平面(IP)测试中可以通过1A4.5 kV的水平,并且具有出色的抗电腐蚀性能,这在外部绝缘子中显示出很大的潜力。特别是,ALSR / PPAS的极限氧指数(LOI)为30.0%,并且具有良好的自熄能力。同时,用锥形量热仪测量的着火危险也大大降低了。对这些现象的机理进行了进一步的研究和揭示:PPAS可以有效地抑制过氧自由基,抑制Si-CH_3基团的氧化降解,消除Si-OH基团并促进ALSR热降解过程中的交联反应。

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