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Internal explosive loading of steel pipes

机译:钢管内部爆炸载荷

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摘要

A programme of numerical, analytical and experimental studies is being carried out at the University of Liverpool on seamless steel pipes 9.5 mm thick with an outer diameter of 324 mm which have been subjected to internal explosive loading. The objective of the study, which is sponsored by AWE plc, Aldermaston, is to determine the failure mechanism of such a pipe under a very high rate of loading. The loading imparted to a vessel wall, arising from the detonation of a high explosive is sensitive to the charge shape. Numerical simulations have shown that for the same charge weight, a cylinder-shaped charge, of equal diameter and length, produces more deformation than the equivalent sphere. A Johnson-Cook strength model in the numerical simulation is in good agreement with test data.
机译:利物浦大学正在对直径为9.5 mm,外径为324 mm的无缝钢管进行内部爆炸载荷的数值,分析和实验研究计划。由AWE plc,Aldermaston赞助的这项研究的目的是确定这种管道在很高的加载速率下的失效机理。由高炸药的爆炸引起的施加到容器壁上的载荷对装药形状敏感。数值模拟表明,对于相同的装药重量,直径和长度相等的圆柱状装药比等效球体产生更大的变形。数值模拟中的Johnson-Cook强度模型与测试数据非常吻合。

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