材料点法
有限元法
离散化
变形(气象学)
粒子法
机械
光滑粒子流体力学
数值分析
点(几何)
渗透(战争)
有限应变理论
光滑有限元法
物理
粒子(生态学)
混合有限元法
联轴节(管道)
材料科学
经典力学
极端点
几何学
扩展离散元法
扩展有限元法
离散元法
穿透深度
作者
Jiasheng Li,Xiong Zhang
摘要
ABSTRACT A novel finite element particle method (FEPM) is proposed in this paper for modeling extreme deformation problems. In a material domain, regions undergoing small deformation are discretized using elements of the finite element method (FEM), while zones subject to extreme deformation are represented with particles of the material point method (MPM). A background grid, covering the entire computational domain, is employed to solve the momentum equations. To circumvent mesh distortion, distorted elements under extreme deformation are adaptively converted into particles during the simulation. The seamless coupling between elements and particles is naturally achieved through the background grid's single‐valued velocity field. Furthermore, a contact method is introduced to handle interactions between distinct material domains. Several numerical examples, including symmetric rod impact, soil collapse, soil collapse with a base, penetration of a plate by a long rod projectile, and penetration of a plate by an explosively formed projectile, are studied using the proposed FEPM. The numerical results exhibit good agreement with published literature data and experimental results, demonstrating the effectiveness of FEPM in simulating extreme deformation scenarios.
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