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Remarkable Thermal Conductivity of Epoxy Composites Filled with Boron Nitride and Cured under Pressure

机译:填充氮化硼的环氧复合材料的显着导热性并在压力下固化

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摘要

This work demonstrates that the application of even moderate pressures during cure can result in a remarkable enhancement of the thermal conductivity of composites of epoxy and boron nitride (BN). Two systems have been used: epoxy-thiol and epoxy–diamine composites, filled with BN particles of different sizes and types: 2, 30 and 180 μm platelets and 120 μm agglomerates. Using measurements of density and thermal conductivity, samples cured under pressures of 175 kPa and 2 MPa are compared with the same compositions cured at ambient pressure. The thermal conductivity increases for all samples cured under pressure, but the mechanism responsible depends on the composite system: For epoxy–diamine composites, the increase results principally from a reduction in the void content; for the epoxy–thiol system with BN platelets, the increase results from an improved matrix-particle interface; for the epoxy–thiol system with BN agglomerates, which has a thermal conductivity greater than 10 W/mK at 44.7 vol.% filler content, the agglomerates are deformed to give a significantly increased area of contact. These results indicate that curing under pressure is an effective means of achieving high conductivity in epoxy-BN composites.
机译:这项工作表明,在固化过程中甚至适度压力的应用可以显着提高环氧树脂和氮化硼(BN)的复合材料的导热率。已经使用了两种系统:环氧-硫醇和环氧二胺复合材料,填充有不同尺寸和类型的BN颗粒:2,30和180μm血小板和120μm附聚物。使用密度和导热率的测量,与在环境压力下固化的相同组合物的压力下固化的样品。对于在压力下固化的所有样品的导热率增加,但负责的机制取决于复合系统:对于环氧二胺复合材料,主要原因的增加结果是由于空隙含量的降低;对于具有BN血小板的环氧树脂 - 硫醇系统,来自改进的基质粒子界面的增加结果;对于具有BN附聚物的环氧树脂 - 硫醇系统,其在44.7体积%的填充物含量下具有大于10w / mk的导热率,聚集酯变形以产生显着增加的接触面积。这些结果表明,在压力下固化是在环氧-BN复合材料中实现高导电性的有效手段。

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