Mechanical and thermophysical properties of energetic crystals: evaluation methods and recent achievements

Justin Darku Quansah, Xuexue Zhang, Qazi Wasiullah, Qilong Yan
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引用次数: 6

Abstract

The mechanical properties of energetic crystals (ECs) are relevant to the safety and performance of ammunitions and propellants. Several experimental and theoretical investigations have been conducted on different ECs to study their mechanical properties and effects on sensitivity and stability. Using evaluation methods such as nanoindentation, Raman spectroscopy, and molecular dynamic simulations, a significant amount of helpful information on this topic has emerged, some of which are summarized herein. The overall safety and performance of energetic materials depend on the properties of the energetic crystalline ingredients. Properties such as the thermostability and sensitivity of such crystals have been greatly improved using methods such as cocrystallization, recrystallization, coating, and intercalation. The overall strength and, thus, the safety of formulations largely depend on the quality and mechanical strength of included ECs. Therefore, it is essential to investigate the mechanical strengths of the modified ECs. This review also summarizes various theoretical and experimental methods to study the mechanical properties of pure ECs. As a proposal, additional research on the mechanical strength of modified hybrid ECs with improved energy density and sensitivity is necessary to ascribe the inherent mechanisms.

Abstract Image

高能晶体的力学和热物理性质:评价方法和最新成果
高能晶体的力学性能关系到弹药和推进剂的安全性和性能。对不同的EC进行了几项实验和理论研究,以研究其力学性能以及对灵敏度和稳定性的影响。使用纳米压痕、拉曼光谱和分子动力学模拟等评估方法,已经出现了关于该主题的大量有用信息,其中一些信息在本文中进行了总结。高能材料的整体安全性和性能取决于高能晶体成分的性质。通过共结晶、再结晶、涂层和插层等方法,这些晶体的热稳定性和灵敏度等性能得到了极大的改善。配方的总体强度以及安全性在很大程度上取决于所含EC的质量和机械强度。因此,研究改性EC的机械强度是至关重要的。本文还总结了研究纯EC力学性能的各种理论和实验方法。作为一项建议,有必要对具有改进的能量密度和灵敏度的改性混合EC的机械强度进行额外的研究,以确定其固有机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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