English

A new incremental method of computing the limit load in deformation plasticity models

Numerical Analysis 2018-01-08 v1

Abstract

The aim of this paper is to introduce a new incremental procedure that can be used for numerical evaluation of the limit load. Existing incremental type methods are based on parametrization of the energy by the loading parameter ζ[0,ζlim)\zeta\in[0,\zeta_{lim}), where ζlim\zeta_{lim} is generally unknown. In the new method, the incremental procedure is operated in terms of an inverse mapping and the respective parameter α\alpha is changing in the interval (0,+)(0,+\infty). Theoretically, in each step of this algorithm, we obtain a guaranteed lower bound of ζlim\zeta_{lim}. Reduction of the problem to a finite element subspace associated with a mesh Th\mathcal T_h generates computable bound ζlim,h\zeta_{lim,h}. Under certain assumptions, we prove that ζlim,h\zeta_{lim,h} tends to ζlim\zeta_{lim} as h0+h\rightarrow0_+. Numerical tests confirm practical efficiency of the suggested method.

Keywords

Cite

@article{arxiv.1511.02681,
  title  = {A new incremental method of computing the limit load in deformation plasticity models},
  author = {Jaroslav Haslinger and Sergey Repin and Stanislav Sysala},
  journal= {arXiv preprint arXiv:1511.02681},
  year   = {2018}
}
R2 v1 2026-06-22T11:40:29.085Z