首页> 外文期刊>Journal of Applied Polymer Science >Influence of Molecular Orientation Direction on the In-plane Thermal Conductivity of Polymer/Hexagonal Boron Nitride Composites
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Influence of Molecular Orientation Direction on the In-plane Thermal Conductivity of Polymer/Hexagonal Boron Nitride Composites

机译:分子取向方向对聚合物/六方氮化硼复合材料面内导热系数的影响

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摘要

The effect of the molecular orientation direction of a polymer matrix on the in-plane thermal conductivity (TC) of injection-molded polymer/hexagonal boron nitride (h-BN) composites is investigated. In this system, the h-BN platelets align in the in-plane direction owing to injection shear flow. Three molecular orientations (perpendicular, random, and parallel to the h-BN plane) are achieved using liquid crystalline polyesters and the in-plane TCs are compared. Although a parallel orientation of the polymer chains provides the highest TC of the matrix in the injection direction, the TC of the composites is the lowest of the three systems for this orientation. The highest in-plane TC is found in the perpendicularly oriented system, irrespective of the in-plane direction. These results reveal that perpendicularly oriented molecular chains serve as effective heat paths between h-BN platelets that are arranged one above the other, and consequently, a continuous thermal network is created in the in-plane direction.
机译:研究了聚合物基体的分子取向方向对注塑成型的聚合物/六方氮化硼(h-BN)复合材料的面内导热系数(TC)的影响。在该系统中,由于注射剪切流,h-BN血小板在平面内方向对齐。使用液晶聚酯可实现三个分子取向(垂直,无规和平行于h-BN平面),并比较了面内TC。尽管聚合物链的平行取向在注射方向上提供了基质的最高TC,但复合材料的TC在该取向的三个系统中却是最低的。不论面内方向如何,在垂直取向的系统中都可以找到最高的面内TC。这些结果表明,垂直取向的分子链充当h-BN血小板之间相互排列的有效热通道,因此,在面内方向上创建了连续的热网络。

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