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Functional composites with core-shell fillers: I. Particle synthesis and thermal conductivity measurements

机译:具有核-壳填料的功能性复合材料:I.颗粒合成和热导率测量

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摘要

Filled epoxy composites are broadly used in electronic and power devices as an electrical insulation. It is of importance to achieve efficient heat dissipation in such devices due to fact that thermal properties have a strong influence on their proper operation. For this reason, the modification of standard filler materials, such as silica or alumina, can give a promising solution. In this work, a novel core-shell material has been proposed and manufactured by means of a carbothermal reduction and nitridation process. The obtained fillers are made of a standard material which is covered by the high thermally conductive shell. The synthesized fillers were characterized by means of X-ray diffraction, and scanning electron microscopy coupled with elemental analysis. The composite samples based on epoxy resin filled with the manufactured core-shell fillers have been investigated in order to determine their effective thermal conductivity. The obtained composite samples exhibited a significant improvement in the thermal conductivity, represented by a 63 % relative increase. The obtained results show the potential for the novel core-shell fillers to be applied for the electrical insulation with the enhanced thermal conductivity.
机译:填充的环氧复合材料广泛用作电子和电力设备中的电绝缘材料。由于热特性对它们的正常运行有很大的影响,因此在这样的设备中实现有效的散热非常重要。因此,对标准填料(例如二氧化硅或氧化铝)进行改性可以提供一种有前途的解决方案。在这项工作中,已经提出并通过碳热还原和氮化工艺制造了一种新颖的核-壳材料。所获得的填料由被高导热壳覆盖的标准材料制成。合成的填料通过X射线衍射,扫描电子显微镜和元素分析进行​​表征。为了确定其有效的热导率,已经对基于环氧树脂的复合样品进行了研究,并填充了制造的核壳填料。所获得的复合材料样品的导热率显着提高,相对提高了63%。所获得的结果表明,新型核-壳填充物可以用于具有增强的导热性的电绝缘。

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