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Graphene–graphite hybrid epoxy composites with controllable workability for thermal management

机译:具有可控制的可加工性的石墨烯-石墨杂化环氧复合材料用于热管理

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摘要

The substantial heat generation in highly dense electronic devices requires the use of materials tailored to facilitate efficient thermal management. The design of such materials may be based on the loading of thermally conductive fillers into the polymer matrix applied – as a thermal interface material – on the interface between two surfaces to reduce contact resistance. On the one hand, these additives enhance the thermal conductivity of the composite, but on the other hand, they increase the viscosity of the composite and hence impair its workability. This in turn could negatively affect the device–matrix interface. To address this problem, we suggest a tunable composite material comprising a combination of two different carbon-based fillers, graphene nanoplatelets (GNPs) and graphite. By adjusting the GNP:graphite concentration ratio and the total concentration of the fillers, we were able to fine tune the thermal conductivity and the workability of the hybrid polymer composite. To facilitate the optimal design of materials for thermal management, we constructed a ‘concentration–thermal conductivity–viscosity phase diagram’. This hybrid approach thus offers solutions for thermal management applications, providing both finely tuned composite thermal properties and workability. We demonstrate the utility of this approach by fabricating a thermal interface material with tunable workability and testing it in a model electronic device.
机译:高密度电子设备中大量热量的产生需要使用专门为促进高效热管理而定制的材料。此类材料的设计可能基于将导热填料加载到两个表面之间的界面(作为热界面材料)上的聚合物基体中,以降低接触电阻。一方面,这些添加剂增强了复合材料的导热性,但另一方面,它们增加了复合材料的粘度并因此损害了其可加工性。反过来这可能会对设备矩阵接口产生负面影响。为了解决这个问题,我们建议一种可调谐的复合材料,该材料包括两种不同的碳基填料,石墨烯纳米片(GNP)和石墨的组合。通过调节GNP:石墨的浓度比和填充剂的总浓度,我们能够微调杂化聚合物复合材料的导热性和可加工性。为了简化热管理材料的优化设计,我们构建了“浓度-导热系数-粘度相图”。因此,这种混合方法为热管理应用提供了解决方案,同时提供了经过微调的复合材料热性能和可加工性。我们通过制造具有可调可加工性的热界面材料并在模型电子设备中对其进行测试来证明该方法的实用性。

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