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Paraffin wax microsphere embedded epoxy composites for potential thermal management in electronic devices

机译:石蜡蜡微球嵌入式环氧复合材料,用于电子设备中的潜在热管理

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Miniaturization of electronic devices with more computing power has created a challenging set of aspects in thermal management. Present work is based on phase change materials microsphere and its incorporation in the epoxy network to develop a new class of potting material facilitating thermal management for miniaturized electronic devices. A facile and scalable method was implemented to synthesize paraffin wax microspheres (PMPs). It was dispersed into a room temperature curing epoxy network to fabricate the epoxy composite with high latent heat of fusion and high thermal stability. PMPs obtained have spherical morphology with an average diameter of approximately 5 mu m. The PMP/epoxy composite can store 34.34 and 49.3 J g(-1) of latent heat energy at 30 and 40 wt% PMP loading, respectively. Leakage test reveals that leaching declined as the size of PMP is reduced. Incorporation of PMP into the epoxy network reduces the compressive strength, but still resilient enough to protect electronic devices. This is an added advantage over the potential to mitigate the issue of hot spot in electronic devices as demonstrated by infrared thermography. The application of such composite is not limited only as electronic potting materials but also has the potential for other thermal energy storage applications.
机译:具有更多计算能力的电子设备的小型化在热管理中创造了一个具有挑战性的方面。目前的工作是基于相变材料微球及其在环氧网络中的掺入,开发一种新型盆栽材料,促进小型化电子设备的热管理。实施一种容易和可伸缩的方法以合成石蜡微球(PMP)。将其分散在室温固化环氧网络中,以制造具有高潜热和高热稳定性的高潜热的环氧树脂复合材料。得到的PMP具有球形形态,平均直径约为5μm。 PMP /环氧复合材料可以分别在30和40wt%PMP加载下存储34.34和49.3Jg(-1)潜热能。泄漏测试显示,随着PMP的尺寸减少,浸出率下降。将PMP掺入环氧树脂网络降低了抗压强度,但仍然足以保护电子设备。这是对通过红外热成像所证明的电子设备中的热点问题的额外优势。这种复合材料的应用不仅限于电子灌封材料,而且还具有其他热能储存应用的可能性。

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