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Mesoscale simulation of shock ignition in PBX explosives

机译:PBX爆炸物中震动点火的Messcale模拟

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摘要

To investigate the mechanism of shock ignition in heterogeneous explosives, mesoscale simulation of PBX explosives under shock loading was conducted. Through simulation of explosive particles pressing, mesoscale structure of PBX was obtained. Then the shock ignition of PBX explosives was calculated, and the coupled thermo-mechanics and self-heating reaction were considered, and the influence of explosive density, particle size and binder content on shock ignition were analyzed. The results show that hot spots focus on the interface between explosive particles and binder. The critical pressure of explosives in small particle size is higher than that in large particle size. The critical pressure of explosives in low density is higher than that of explosives in high density. In addition, binders play an important role in attenuating shock compression on explosive particles, and PBX explosives in high binder content are more insensitive than those in low binder content.
机译:为了研究异质爆炸物中的冲击点火机制,进行了在冲击载荷下的PBX炸药的MES尺度模拟。通过爆炸颗粒的仿真压制,获得了PBX的Mescle结构。然后计算PBX炸药的冲击点火,并考虑了耦合的热电机械和自加热反应,分析了爆炸密度,粒度和粘合剂含量对冲击点火的影响。结果表明,热点侧重于爆炸颗粒和粘合剂之间的界面。小粒径小的爆炸物的临界压力高于大粒径。低密度低爆炸物的临界压力高于高密度高爆炸物的压力。此外,粘合剂在爆炸性颗粒上衰减冲击压缩方面发挥着重要作用,并且在高粘合剂含量中的PBX爆炸性比低粘合剂含量更不敏感。

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