Effect of BN Nanosheet Orientation on Thermal Conductivity and Insulation Properties of BN/Epoxy Resin Composite

Shijie Bi, Zhe Li, G. Sheng
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引用次数: 1

Abstract

Boron nitride (BN) is widely used for the preparation of epoxy resin composites with high thermal conductivity. Substantial increase of thermal conductivity needs high degree of BN concentration, it can lead to difficulty in material preparation and decrease insulation properties. Applying electric field during the curing process can increase orientation degree of BN and improve the thermal conductivity of composites at a lower degree of BN concentration. It is necessary to study the change of BN alignment, thermal conductivity and dielectric properties with different level of electric field strength. In this paper, DC electric field strength applied during the curing process of 25wt% BN/epoxy composite preparation is from 0 to 16.67kV/m. The orientation of BN is determined based on scanning electron microscope (SEM). The effect of the BN orientation on thermal conductivity and insulation properties is studied through thermal conductivity and dielectric spectral testing. With increase of the strength of applied electric field, the direction of BN in the composite is more parallel to the direction of electric field, the thermal conductivity is improved up to 4.1 times than that of pure epoxy, the dielectric constant and electrical conductivity increase. The results of the study show the impact of the electric field through the measurement of the BN alignment, thermal conductivity and insulation properties. The alignment of nano sheet is obvious. the thermal conductivity is higher and insulation properties are better compared with pure epoxy.
BN纳米片取向对BN/环氧树脂复合材料导热性能和绝缘性能的影响
氮化硼(BN)广泛用于制备高导热环氧树脂复合材料。导热系数的大幅度提高需要较高的BN浓度,这会导致材料制备困难,降低绝缘性能。在固化过程中施加电场可以提高BN的取向度,并在较低BN浓度下提高复合材料的导热性。研究不同电场强度下BN取向、导热系数和介电性能的变化是必要的。在本文中,25wt% BN/环氧复合材料制备过程中施加的直流电场强度为0 ~ 16.67kV/m。利用扫描电子显微镜(SEM)确定了氮化硼的取向。通过导热系数和介电光谱测试,研究了BN取向对导热系数和绝缘性能的影响。随着外加电场强度的增加,复合材料中BN的方向与电场方向更加平行,导热系数比纯环氧提高了4.1倍,介电常数和电导率提高。研究结果通过对BN取向、导热系数和绝缘性能的测量显示了电场的影响。纳米片的排列明显。与纯环氧树脂相比,导热系数更高,绝缘性能更好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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