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Numerical study on concrete penetration/perforation under high velocity impact by ogive-nose steel projectile

机译:尖鼻型钢弹丸高速侵彻混凝土的数值研究

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摘要

Severe element distortion problem is observed in finite element mesh while performing numerical simulations of high velocity steel projectiles penetration/perforation of concrete targets using finite element method (FEM). This problem of element distortion in Lagrangian formulation of FEM can be resolved by using element erosion methodology. Element erosion approach is applied in the finite element program by defining failure parameters as a condition for element elimination. In this study strain parameters for both compression and tension at failure are used as failure criteria. Since no direct method exists to determine these values, a calibration approach is used to establish suitable failure strain values while performing numerical simulations of ogive-nose steel projectile penetration/perforation into concrete target. A range of erosion parameters is suggested and adopted in concrete penetration/perforation tests to validate the suggested values. Good agreement between the numerical and field data is observed.
机译:在使用有限元方法(FEM)对高速钢弹射入混凝土目标进行穿孔/数值模拟时,在有限元网格中观察到严重的变形问题。可以通过使用元素腐蚀方法解决FEM的拉格朗日公式中的元素变形问题。通过将失效参数定义为消除元素的条件,将元素侵蚀方法应用于有限元程序。在这项研究中,将破坏时的压缩和拉伸应变参数用作破坏标准。由于不存在直接方法来确定这些值,因此在对钝齿钢弹丸穿透/射入混凝土目标进行数值模拟时,使用校准方法来建立合适的破坏应变值。建议使用一定范围的腐蚀参数,并在混凝土渗透/射孔试验中采用该参数以验证建议值。数值和现场数据之间观察到良好的一致性。

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