Investigation of Track and Thermal Shock Crack Resistance in Outdoor Cycloaliphatic Electrical Insulating Materials Using Response Surface Methodology

Sadegh Ghanbar, Sedigheh Nazaripour, Marek Kornowski, Keaton Whitaker
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引用次数: 1

Abstract

Epoxy resin samples were prepared using cycloaliphatic resin and anhydride curing agents. Response Surface Methodology (RSM) was applied to determine the effect of five independent variables (Silbond W12EST, MoldXA400, CSR, PC1000 and BYK3701) at 5 levels on the dependent variables thermal shock crack resistance (TSR) and track resistance. 33 experimental samples were prepared according to experimental design made by RSM. It was observed that not only an increase in the amount of MoldX A400 in the compound improved the tracking, but also amount Silbond W12EST had positive effect on it. The results showed that if the total filler amount in the formulation is lower than 60% the time-to-track is less than 300 min, even with using a high amount of MoldXA400 (30%). Increasing the amount of Silbond W12EST as well as core-shell toughening agent (CSR) microparticles can improve the TSR because of crack propagation inhibition caused by particles. On the other hand, an increase in MoldX A400 deteriorated TSR due to the creating weak bonds with epoxy matrix.
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用响应面法研究室外环脂肪族电绝缘材料的轨道和热冲击抗裂性能
采用环脂肪族树脂和酸酐固化剂制备环氧树脂样品。采用响应面法(Response Surface Methodology, RSM)在5个水平上确定5个自变量(Silbond W12EST、MoldXA400、CSR、PC1000和BYK3701)对因变量热冲击抗裂性(TSR)和抗径迹性的影响。根据RSM法设计的试验方案,制备了33个试验样品。结果表明,随着MoldX A400用量的增加,复合材料的跟踪性能得到改善,Silbond W12EST用量的增加对跟踪性能也有积极影响。结果表明,当配方中填充剂总量低于60%时,即使使用大量的MoldXA400(30%),到轨时间也小于300 min。增加硅粘剂W12EST和核壳增韧剂(CSR)微粒的加入量可以改善TSR,因为微粒对裂纹扩展有抑制作用。另一方面,增加MoldX A400会导致TSR恶化,因为它会与环氧基形成弱键。
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