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Magnetic-aligned, magnetite-filled epoxy composites with enhanced thermal conductivity

机译:磁性排列,磁铁矿填充的环氧复合材料,具有增强的导热性

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摘要

This paper investigates the influence of magnetic field-assisted filler alignment technology on the morphology and the thermal conductivity of magnetite-filled epoxy composites. A magnetic field was applied during the solidification of the composite in order to change the position of the filler and its distribution in the polymer matrix. It is shown that the applied procedure leads to the filler being oriented along the direction of the magnetic field, and as a result, the thermal conductivity is improved by up to 120 % compared to a composite with randomly oriented filler obtained without the assistance of a magnetic field. This positive effect is caused by the appearance of conductive paths at a much lower content of the filler when the composite solidification is assisted by a magnetic field, relative to an equivalent isotropic sample. These morphological changes were confirmed by microscopic and X-ray microtomography imaging. The temperature dependences of thermal conductivity were also investigated over a broad temperature range for a magnetite-filled epoxy composite sample and compared to the bulk magnetite reference, showing that thermal behaviour of the magnetite-filled composite is stable, which is a promising result when considering the future application of the technology.
机译:本文研究了磁场辅助填料取向技术对磁铁矿填充环氧复合材料的形貌和导热性的影响。在复合物的固化过程中施加磁场,以改变填料的位置及其在聚合物基体中的分布。结果表明,所施加的过程导致填料沿磁场方向取向,结果,与无须助剂的情况下获得的具有随机取向填料的复合材料相比,导热率提高了120%磁场。相对于等效的各向同性样品,当通过磁场辅助复合固化时,在填充剂含量低得多时出现导电路径会产生这种积极效果。这些形态变化通过显微镜和X射线显微断层摄影术证实。还对磁铁矿填充的环氧复合材料样品在较宽的温度范围内的导热系数与温度的关系进行了研究,并将其与块状磁铁矿参比进行了比较,结果表明,磁铁矿填充的复合材料的热行为是稳定的,这在考虑时是有希望的结果该技术的未来应用。

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  • 来源
    《Journal of Materials Science》 |2015年第6期|2510-2516|共7页
  • 作者单位

    Faculty of Physics and Applied Computer Science AGH University of Science and Technology">(1);

    ABB Corporate Research Center">(2);

    ABB Corporate Research Center">(2);

    ABB Corporate Research Center">(2);

    Faculty of Physics and Applied Computer Science AGH University of Science and Technology">(1);

    Faculty of Physics and Applied Computer Science AGH University of Science and Technology">(1);

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