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Dead Zones in LX-17 and PBX 9502

机译:LX-17和PBX 9502中的死区

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摘要

Pin and X-ray corner turning data have been taken on ambient LX-17 and PBX 9052,and the results are listed in tables as an aid to future modeling.The results have been modeled at 4 zones/mm with a reactive flow approach that varies the burn rate as a function of pressure.A single rate format is used to simulate failure and detonation in different pressure regimes.A pressure cut-off must also be reached to initiate the burn.Corner turning and failure are modeled using an intermediate pressure rate region,and detonation occurs at high pressure.The TATB booster is also modeled using reactive flow,and X-ray tomography is used to partition the ram-pressed hemisphere into five different density regions.The model reasonably fits the bare corner turning experiment but predicts a smaller dead zone with steel confinement,in contradiction with experiment.The same model also calculates the confined and unconfined cylinder detonation velocities and predicts the failure of the unconfined cylinder at 3.75 mm radius.The PBX 9502 shows a smaller dead zone than LX-17.An old experiment that showed a large apparent dead zone in Composition B was repeated with X-ray transmission and no dead zone was seen.This confirms the idea that a variable burn rate is the key to modeling.The model also produces initiation delays,which are shorter than those found in time-to-detonation.
机译:已在环境LX-17和PBX 9052上获取了销和X射线拐角转弯数据,并将结果列在表中以帮助将来进行建模。已将结果建模为4个区域/毫米,采用了反应流方法,燃烧速率随压力的变化而变化;使用单一速率格式来模拟不同压力状态下的破坏和爆震;还必须达到切断压力的条件才能开始燃烧。还使用反应流对TATB助推器进行了建模,并使用X射线断层扫描将冲压后的半球划分为五个不同的密度区域。该模型合理地适合裸角转弯实验,但与实验相反,该模型可以预测出一个较小的死角区域。与该模型相同,该模型还可以计算出约束和非约束圆柱体的爆速,并预测非约束圆柱体的破坏。半径为3.75毫米.PBX 9502的死区比LX-17小。一个古老的实验表明,组合物B的表观死区很大,并通过X射线透射,未见死区。可变燃烧率是建模的关键。该模型还会产生起爆延迟,比起爆时间要短。

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