首页> 外文会议>2002 ASME Pressure Vessels and Piping Conference, Aug 5-9, 2002, Vancouver, British Columbia, Canada >NUMERICAL MODELING OF FRAGMENTATION CHARACTERISTICS OF EXPLOSIVE FRAGMENTATION MUNITIONS
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NUMERICAL MODELING OF FRAGMENTATION CHARACTERISTICS OF EXPLOSIVE FRAGMENTATION MUNITIONS

机译:爆炸性碎片弹药碎片特征的数值模拟

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摘要

Numerical simulations of explosive fragmentation munitions presented in this work integrate three-dimensional axisymmetric hydrocode analyses with analytical fragmentation modeling. The developed analytical fragmentation model is based on the Mott's theory of break-up of cylindrical "ring-bombs" (Mott, 1947), in which the average length of fragments is a function of the radius and velocity of the ring at the moment of break-up, and the mechanical properties of the metal. The fundamental assumption of the model is that the fragmentation occurs instantly throughout the entire body of the shell. Adopting Mott's critical fracture strain concept (Mott, 1947), the moment of the shell break-up is identified in terms of the high explosive detonation products volume expansions, V/V_0. The assumed fragmentation time determined from the highspeed photographic data of Pearson (1990) had been approximately three volume expansions, the fragmentation being defined as the instant at which the detonation products first appear as they emanate from the fractures in the shell. The newly developed computational technique is applied to both the natural and preformed explosive fragmentation munitions problems. Considering relative simplicity of the model, the accuracy of the prediction of fragment spray experimental data is rather remarkable.
机译:这项工作中提出的炸药碎片弹药的数值模拟将三维轴对称水码分析与分析碎片模型结合在一起。所开发的分析碎片模型是基于莫特圆柱“环形炸弹”破裂的理论(莫特,1947年),其中碎片的平均长度是在爆炸瞬间环的半径和速度的函数。断裂,以及金属的机械性能。该模型的基本假设是,碎片会立即在整个外壳的整个主体中发生。采用莫特的临界断裂应变概念(莫特,1947年),根据高爆炸性爆炸产物的体积膨胀V / V_0来确定壳破裂的时刻。根据皮尔森(Pearson)(1990)的高速摄影数据确定的假定破裂时间约为3倍体积膨胀,该破裂被定义为爆炸产物从壳破裂中散发时首次出现的瞬间。新开发的计算技术可应用于天然炸药和预制炸药的弹药问题。考虑到该模型的相对简单性,碎片喷雾实验数据的预测准确性相当出色。

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