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RGO-Coated Polyurethane Foam/Segmented Polyurethane Composites as Solid–Solid Phase Change Thermal Interface Material

机译:Rgo涂覆的聚氨酯泡沫/分段聚氨酯复合材料作为固体相变热界面材料

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摘要

Thermal interface material (TIM) is crucial for heat transfer from a heat source to a heat sink. A high-performance thermal interface material with solid–solid phase change properties was prepared to improve both thermal conductivity and interfacial wettability by using reduced graphene oxide (rGO)-coated polyurethane (PU) foam as a filler, and segmented polyurethane (SPU) as a matrix. The rGO-coated foam (rGOF) was fabricated by a self-assembling method and the SPU was synthesized by an in situ polymerization method. The pure SPU and rGOF/SPU composite exhibited obvious solid–solid phase change properties with proper phase change temperature, high latent heat, good wettability, and no leakage. It was found that the SPU had better heat transfer performance than the PU without phase change properties in a practical application as a TIM, while the thermal conductivity of the rGOF/SPU composite was 63% higher than that of the pure SPU at an ultra-low rGO content of 0.8 wt.%, showing great potential for thermal management.
机译:热界面材料(TIM)对于从热源到散热器的热传递至关重要。制备具有固体固相变化性质的高性能热界面材料,通过使用还原的石墨烯(RGO) - 涂覆的聚氨酯(PU)泡沫作为填料,以及分段的聚氨酯(SPU),改善导热性和界面润湿性。一个矩阵。通过自组装法制造了Rgo涂覆的泡沫(RGOF),通过原位聚合方法合成SPU。纯SPU和RGOF / SPU复合材料表现出明显的固体相变性能,具有适当的相变温度,高潜热,良好的润湿性,无泄漏。结果发现,在实际应用中没有相变性能的PU具有更好的传热性能,在实际应用中作为摩擦,RGOF / SPU复合材料的导热率高于超出超出纯净的63%低rgo含量为0.8重量%,显示出热管理的巨大潜力。

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