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Globally reinforced mechanical, electrical, and thermal properties of nonlinear conductivity composites by surface treatment of varistor microspheres

机译:通过压敏电阻微球的表面处理来整体增强非线性电导率复合材料的机械,电气和热性能

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The composite filled with zinc oxide (ZnO) varistor microspheres display promising nonlinear conductivity properties and can be used for grading electric field in electrical equipment. However, the mechanical properties of composites containing ZnO varistor microspheres are seriously degraded, so how to balance the mechanical and electrical performances of electric field grading materials is a key issue for practical applications. In this work, concurrent reinforcement effect of surface-treated ZnO varistor microspheres on the mechanical, electrical, and thermal properties of silicone rubber (SR) composites are studied. 3-Aminopropyltriethoxysilane, a silane coupling agent, is used for surface functionalization of ZnO varistor microspheres, which are then used as a filler in SR to prepare an electric field grading material. Mechanical tensile tests reveal that the tensile strength and initial modulus of the composite incorporated with surface-treated filler are markedly improved and the thermal conductivity of this composite is also increased compared with a composite with untreated filler. Meanwhile, the composites with surface-treated filler displays more stable nonlinear electrical properties under mechanical deformation than those with untreated filler. This method would lead to electric field grading composite materials with excellent comprehensive properties towards practical applications in cable insulation, insulators, terminal accessories, etc.
机译:填充有氧化锌(ZnO)压敏电阻微球的复合材料显示出有希望的非线性电导特性,可用于在电气设备中分级电场。然而,含ZnO压敏电阻微球的复合材料的机械性能严重下降,因此如何平衡电场分级材料的机械和电气性能是实际应用中的关键问题。在这项工作中,研究了表面处理的ZnO压敏电阻微球对硅橡胶(SR)复合材料的机械,电气和热性能的同时增强作用。 3-氨基丙基三乙氧基硅烷(一种硅烷偶联剂)用于ZnO压敏电阻微球的表面功能化,然后将其用作SR中的填料以制备电场分级材料。机械拉伸试验表明,与未处理填料的复合材料相比,掺入了表面处理过的填料的复合材料的拉伸强度和初始模量得到了显着改善,并且该复合材料的导热率也得到了提高。同时,与未处理的填料相比,经表面处理的填料的复合材料在机械变形下显示出更稳定的非线性电性能。这种方法将导致电场综合性能优异的复合材料达到电缆绝缘,绝缘子,端子附件等的实际应用。

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