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Dynamic Response of a Ring-stiffened Cylindrical Shell Subjected to Underwater Explosive Loading

机译:水下爆炸载荷作用下加劲环圆柱壳的动力响应

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Choosing scaled stiffened cylindrical shell model as simulation object, the simulation model of stiffened cylindrical shell subjected to underwater explosion load is built by using MSC-DYTRAN finite element analysis software, the typical test conditions which shock factor is 1.1 is simulated, the damage properties of stiffened cylindrical Shell is analyzed, numerical results are compared with experimental data, it is proved that the simulation method is effective and feasible. By performing a series of numerical experiments, the influence of attack angle of explosive and submergence depth of model on the elastic-plastic dynamic response were investigated. It is shown that angle of 90 degrees is the most serious attack angle, angle of 0 degrees is less serious than other angle, the submergence depth of stiffened cylindrical shell has obvious influence on dynamic response, the more deep cylindrical shell is, the more serious cylindrical shell is damaged.
机译:选择比例尺加劲圆柱壳模型作为仿真对象,利用MSC-DYTRAN有限元分析软件建立了水下爆炸载荷下加劲圆柱壳的仿真模型,模拟了冲击因子为1.1的典型试验条件,其破坏特性为对加筋圆柱壳进行了分析,将数值结果与实验数据进行了比较,证明了该方法是有效可行的。通过一系列的数值实验,研究了炸药的攻角和模型的浸入深度对弹塑性动力响应的影响。结果表明,90度角是最严重的迎角,0度角的影响小于其他角度,圆柱壳的沉入深度对动力响应有明显的影响,圆柱壳越深,则越严重。圆柱壳已损坏。

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