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Experimental investigation of micro-sized aluminium oxide reinforced epoxy composites for microelectronic applications

机译:微型铝氧化铝增强环氧复合材料对微电子应用的实验研究

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摘要

The present work aims at developing a class of particulate filled polymer composites consisting of epoxy as base matrix reinforced with micro-sized aluminium oxide (A12O3) particles. A set of composites, with A12O3 content ranging from 0 to 25 vol% have been fabricated by hand lay-up technique. Density (pc), effective thermal conductivity (k_(eff)), glass transition temperature (T_g), coefficient of thermal expansion (CTE) and dielectric constant (ε_c) of these composites are measured experimentally. The measure values of k_(eff) are then compared with the values obtained from few established theoretical model and with the values calculated using the mathematical correlation developed by the authors. It is seen that the values obtained from the correlation developed by the authors fit well with measured conductivity values. Inclusion of A12O3 in resin increases the k_(eff) and T_g whereas CTE of composite decreases favourably. The dielectric constant of the composite also found to get modified with filler content.
机译:本作者旨在开发一类颗粒状填充聚合物复合材料,该组合物由环氧树脂作为基础基质加强,用微尺寸的氧化铝(A12O3)颗粒增强。一组复合材料,通过手动叠层技术制造了1203个内容,从0到25克拉%制造。实验测量密度(PC),有效导热率(K_(EFF)),玻璃化转变温度(T_G),热膨胀系数(CTE)和介电常数(ε_c)。然后将K_(EFF)的测量值与从少数建立的理论模型中获得的值进行比较,并且使用作者开发的数学相关性计算的值。可以看出,由作者开发的相关性获得的值适合测量的电导率值。将A12O3的树脂包含在树脂中增加K_(EFF)和T_G,而COCHESE的CTE可有利地降低。复合材料的介电常数也发现以填充物含量进行改性。

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