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A locking-free stabilized kinematic EFG model for plane strain limit analysis

机译:用于平面应变极限分析的无锁定稳定运动学EFG模型

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摘要

An element free Calerkin (EFG) based formulation for limit analysis of rigid-perfectly plastic plane strain problems is presented. In the paper it is demonstrated that volumetric locking and instability problems can be avoided by using a stabilized conforming nodal integration scheme. Furthermore, the stabilized EFG method described allows stable and accurate solutions to be obtained with minimal computational effort. The discrete kinematic formulation is cast in the form of a second-order cone problem, allowing efficient interior-point solvers to be used to obtain solutions. Finally, the performance of the stabilized EFG method is illustrated by considering several numerical examples.
机译:提出了一种基于无元素Calerkin(EFG)的公式,用于极限刚体-塑性平面应力问题的极限分析。在本文中证明,通过使用稳定的顺应性节点积分方案可以避免体积锁定和不稳定性问题。此外,所描述的稳定的EFG方法允许以最小的计算量获得稳定而准确的解决方案。离散的运动学公式以二阶圆锥问题的形式进行浇铸,从而允许使用有效的内点求解器来获取解。最后,通过考虑几个数值示例来说明稳定的EFG方法的性能。

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