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Ignition thresholds of aluminized HMX-based polymer-bonded explosives

机译:铝化HMX基聚合物粘结炸药的点火阈值

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The ignition of aluminized HMX-based polymer-bonded explosives (PBXs) under shock loading is studied via mesoscale simulations. The conditions analyzed concern loading pulses of 20 nanoseconds to 0.8 microseconds in duration and impact piston velocities on the order of 400-1000 m/s or loading stresses on the order of 3-14 GPa. The sets of samples studied have stochastically similar microstructures consisting of a bimodal distribution of HMX grains, an Estane binder, and aluminum particles 50-100 μm in diameter. The computational model accounts for constituent elasto-viscoplasticity, viscoelasticity, bulk compressibility, fracture, interfacial debonding, internal contact, bulk and frictional heating, and heat conduction. The analysis focuses on the development of hotspots under different material settings and loading conditions. In particular, the ignition thresholds in the forms of the James relation and the Walker-Wasley relation and the corresponding ignition probability are calculated and expressed as functions of the aluminum volume fraction for the PBXs analyzed. It is found that the addition of aluminum raises the ignition thresholds, causing the materials to be less sensitive. Dissipation and heating mechanism changes responsible for this trend are delineated.
机译:通过中尺度模拟研究了在冲击载荷下铝化HMX基聚合物粘结炸药(PBX)的点火。分析的条件涉及持续时间为20纳秒至0.8微秒的加载脉冲,并且冲击活塞速度约为400-1000 m / s,或者加载应力约为3-14 GPa。所研究的样品组具有随机相似的微观结构,包括HMX晶粒,Estane粘结剂和直径为50-100μm的铝颗粒的双峰分布。该计算模型考虑了组成弹性-粘塑性,粘弹性,体积可压缩性,断裂,界面剥离,内部接触,体积和摩擦加热以及热传导。分析着重于在不同材料设置和装载条件下热点的发展。尤其是,以詹姆士(James)关系和沃克-瓦斯利(Walker-Wasley)关系的形式计算点火阈值以及相应的点火概率,并将其表示为所分析的PBX的铝体积分数的函数。发现铝的添加提高了点火阈值,导致材料敏感性降低。描绘了导致这种趋势的耗散和加热机制变化。

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