触变剂对环氧树脂基复合泡沫介质性能的影响

R. Gerlach, Diego Machetti, Martin Willems, R. Puffer
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引用次数: 0

摘要

电感式中压互感器的磁芯变形会导致测量误差,因此需要弹性补偿层。这些变形是由环氧树脂基绝缘系统的制造相关机械应力引起的。另外,可压缩充气聚合物中空微球可以嵌入环氧树脂基体中以增加弹性。通过使用这种被称为合成泡沫的复合材料,可以避免昂贵的缓冲层。然而,目前实验室规模的制造过程需要一个复杂的模具旋转,以防止空心微球沉积在固化材料中。为了使合成泡沫更易于工业应用,研究了触变剂对中空微球均匀分布的影响。采用不同填充度的两种制造工艺(模具旋转和触变剂)制备样品,并根据其空心微球的分布和介电性能进行比较。考虑到测量结果的微小差异和简化的制造过程,建议使用触变剂来避免环氧树脂基复合泡沫的沉淀。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
On the Effect of a Thixotropic Agent on the Dielectric Properties of Epoxy Resin-based Syntactic Foams
Deformations of magnetic cores of inductive medium-voltage instrument transformers can lead to measurement errors and therefore require elastic compensation layers. These deformations occur due to manufacturing-related mechanical stresses of epoxy resin-based insulating systems. Alternatively, compressible gas-filled polymer hollow microspheres can be embedded in the epoxy resin matrix to increase elasticity. By using this composite material known as syntactic foam, costly cushioning layers can be avoided. However, current laboratory-scale manufacturing processes require of a complex mold rotation to prevent sedimentation of the hollow microspheres in the cured material. In order to make syntactic foam more accessible for industrial applications, the effect of a thixotropic agent to homogenize the distribution of hollow microspheres was investigated. Specimens using both manufacturing processes (mold rotation and thixotropic agent) with varying filling degrees were prepared and compared on the basis of their hollow microspheres’ distribution and dielectric properties. Given the minor differences of measurement results and the simplified manufacturing process, the use of thixotropic agents for avoiding sedimentation in epoxy resin-based syntactic foams is recommended.
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