Oblique penetration of an ogive-nosed rod into the aluminum target
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摘要: 在Lagrange有限元基础上,扼要介绍了一种适用于三维斜侵彻数值模拟计算的滑移面处理技术。该方法放弃了传统滑移计算中从单元的设置,而代之以预设从节点,从而避免三维斜侵彻数值计算中主从单元的相交、滑移面的识别、修正与再定义的困难。在确保计算精度的同时,有效地提高了计算效率。卵形杆弹对铝靶侵彻的系列数值模拟计算表明,无论对于正撞击或斜撞击,本文中所获结果与实验结果都有良好的一致性,这说明本文中所述方法和所建程序的合理性和有效性,为侵彻贯穿过程的数值分析提供了一种实用和有效的手段。Abstract: Based on the Lagrange finite element method, briefly introduce a computational technique for sliding interface treatment in 3D oblique penetration. The slave elements used in conventional computations are abandoned, and at the same time the slave nodes are advanced. Thereby, the difficulties such as the master-slave element intersection, the sliding interface recognition, modification and redefinition encountered in 3D oblique penetration simulation calculations are avoided to insure high computational precision and efficiency. Numerical computations for the ogive-nosed steel rod penetrating into the aluminum target show that the computational results are in good agreement with the experimental results for both normal and oblique penetrations. Therefore, the method discussed and the program developed are reasonable and effective, and they are resultful for the numerical study on penetration and perforation.
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