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TOWARDS A UNIFIED DISLOCATION-BASED MODEL FOR SHAPED CHARGE JET BREAK-UP

机译:朝向基于统一的错位模型的形状电荷喷射分配

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An old model for the ductility of shaped charge jets from metallic liners based on the behaviour of moving dislocations is reviewed in the light of new knowledge of dislocation dynamics in metals when subjected to high strain rates and large strains. A phenomenological description of jet ductility is given based on postulates regarding the generation and motion of dislocations during the shaped charge jet collapse process, as well as the depletion of the mobile dislocation population during the stretching phase of the jet. The model explicitly includes the effect of grain size in the liner on the ductility of the jet. Most of the features of jet break-up can be deduced and realistic jet break-up times are predicted for homologous designs.
机译:基于移动脱位行为的金属衬里的形状电荷射流的延展性延展性旧模型在受到高应变率和大菌株时的脱位动力学的新知识的新知识。基于在成形的电荷射流塌陷过程中关于位错的产生和运动的假设,给出了喷射延展性的现象学描述,以及在喷射的拉伸阶段期间移动脱臼群的消耗。该模型明确地包括在衬里上的晶粒尺寸在喷射的延展性上的效果。可以推断出射流分发的大部分特征,并且预定逼真的喷射分解时间是对同源设计的。

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