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Graphene-Based Composites for the Thermal Decomposition of Energetic Materials

机译:基于石墨烯的复合材料,用于热分解能量材料

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摘要

Owing to its remarkable mechanical, electrical and thermal properties, graphene has been a hot area of composites research in the past decade, including the field of energetic materials. Graphene has been widely applied in enhancing the physical properties of energetic materials, such as solid composite propellants. Through the way of adding different forms of graphene into the matrix of solid propellants, their thermal decomposition performance can be effectively improved. In this paper, we reviewed the status and challenges of the application of graphene in the thermal decomposition of composite solid propellant. Moreover, the main preparation methods and material structures of graphene are reviewed. We can conclude that graphene and its derivatives can enhance the catalytic effect remarkably, which can be attributed to the large specific surface area of graphene that makes the uniformly dispersed catalyst particles and the more catalyst active sites. Meanwhile, graphene possesses the high thermal conductivity, making the rapider heat diffusion, which can promote the decomposition reactions of the energetic components in solid propellants. Graphene and catalyst work synergistically in their thermal decomposition. More than this, the main methods to improve the thermal decomposition of energetic components of composite propellants and their effects on decomposition temperature reduction are systematically summarized, respectively.
机译:由于其卓越的机械,电气和热性能,Graphene在过去十年中一直是复合材料的热门区域,包括能量材料领域。石墨烯已广泛应用于增强能量材料的物理性质,例如固体复合推进剂。通过将不同形式的石墨烯添加到固体推进剂的基质中,可以有效地改善其热分解性能。在本文中,我们审查了石墨烯在复合固体推进剂热分解中施用的现状和挑战。此外,回顾了石墨烯的主要制备方法和材料结构。我们可以得出结论,石墨烯及其衍生物可以显着提高催化效果,其可归因于石墨烯的大比表面积,其使均匀分散的催化剂颗粒和更催化剂活性位点。同时,石墨烯具有高导热率,使得耐克热扩散,可以促进固体推进剂中的能量组分的分解反应。石墨烯和催化剂在热分解中协同作用。不仅仅是改善复合推进剂的热分解的主要方法及其对分解温度降低的对分解温度降低的影响。

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