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Computational Analysis of Ignition in Heterogeneous Energetic Materials

机译:异质精力充沛材料点火计算分析

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This paper focuses on the ignition of polymer-bonded explosives (PBXs) under conditions of non-shock loading. The analysis uses a recently developed ignition criterion [1] which is based on the quantification of the distributions of the sizes and temperatures of hotspots in loading events. This quantification is achieved by using a cohesive finite element method (CFEM) developed recently and the characterization by Tarver et al. [2] of the critical size-temperature threshold of hotspots required for chemical ignition of solid explosives. Calculations are performed on PBXs having monomodal grain size distributions with grain volume fractions varying between 0.72 and 0.90. The impact velocities considered vary between 100 and 200 ms~(-1). Results show that the average distance between the hotspots is dependent on the grain volume fraction. As the grain volume fraction increases, the time to criticality (t_c) decreases, signifying increases in the ignition sensitivity of PBX to impact loading. The microstructure-performance relations obtained can be used to design PBXs with tailored performance characteristics and safety envelopes.
机译:本文在非冲击载荷条件下侧重于聚合物键合炸药(PBX)的点火。该分析使用最近开发的点火标准[1],其基于装载事件中热点的大小和温度的分布的量化。通过使用最近开发的粘性有限元方法(CFEM)和Tarver等人的表征来实现这种量化。 [2]临界尺寸 - 温度温度阈值的固体炸药化学点火所需的热点。对具有单兆晶粒尺寸分布的PBX进行计算,其晶粒体积馏分在0.72和0.90之间变化。认为速度为100至200ms〜(-1)之间的变化。结果表明,热点之间的平均距离取决于谷物体积分数。随着谷物体积分数增加,临界时间(T_C)降低,表示PBX点火敏感性的增加,以冲击载荷。所获得的微观结构性能关系可用于设计具有量身定制的性能特性和安全信封的PBX。

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