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The effect of particle size on the electrical and thermal properties of recycled copper filled polyester composites

机译:粒度对再生铜填充聚酯复合材料电学和热学性能的影响

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摘要

Due to high product value and some related environmental issues, recycled copper was used as filler in polyester system. The waste copper was collected from the milling machine. The effects of particle size distribution of recycled copper on properties of the polyester composites were studied based on the thermal stability, coefficient of thermal expansion (CTE), electrical conductivity and hardness. It was found that addition of recycled copper has improved the thermal stability of polyester. Incorporation of recycled copper has also decreased the CTE of the composites. From the aspect of different particle size distribution, monomodal distribution shows the most stabilised thermal behaviour with the highest degradation temperature of 314.41°C. However, insignificant effects of particle size distribution on the CTE values were found. In terms of electrical properties, recycled copper filled composites with average particle size of 16 nm exhibited the highest conductivity owing to better continuity provided by coarse particles. Meanwhile, composite with monomodal distribution has shown the highest hardness value due to more rapid collision of the particles and it distributes the stresses more effectively.
机译:由于高产品价值和一些相关的环境问题,再生铜被用作聚酯体系的填料。从研磨机收集废铜。基于热稳定性,热膨胀系数(CTE),电导率和硬度,研究了再生铜粒度分布对聚酯复合材料性能的影响。发现添加回收的铜改善了聚酯的热稳定性。回收铜的掺入也降低了复合材料的CTE。从不同粒度分布的方面来看,单峰分布显示出最稳定的热行为,最高降解温度为314.41°C。但是,发现粒度分布对CTE值的影响不明显。在电性能方面,由于粗颗粒提供了更好的连续性,平均粒径为16 nm的再生铜填充复合材料表现出最高的电导率。同时,具有单峰分布的复合材料由于颗粒碰撞更快而显示出最高的硬度值,并且可以更有效地分布应力。

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