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May 20, 2026Russian Journal of Building Construction and Architecture0 citationsOpen Access

Elastic-plastic deformation of thin-walled structures based on a twopole finite element

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RKR. S. KiselevaVRV V RyabukhaНКН.А. Кирсанова

Key Points

  • The study aims to determine the stress-strain state of structures using new plastic flow equations.
  • Developed constitutive equations integrating elastic and plastic strain increments.
  • Created a mixed prismatic finite element for stiffness matrix calculations.
  • Used linear functions for approximating internal points in triangular base finite elements.
  • Demonstrated practical alignment in results calculated with new and conventional plasticity theories.
  • Effectively determined stress states in zones exceeding yield strength under loading conditions.

Abstract

Statement of the problem. The aim of the work is to apply the constitutive equations of the theory of plastic flow obtained by the authors without separating the strain increments into elastic and plastic parts to determine the stress-strain state of structures in which stress concentration zones exceeding the yield strength of the material are formed under loading. Results. The proposed version of the constitutive equations of the theory of plastic flow without separating the strain increments into elastic and plastic parts is used to obtain the stiffness matrix of a mixed prismatic finite element with nodal unknowns in the form of displacement increments and stress increments at the loading step. The sought values of the internal point of a finite element with triangular bases were approximated using linear functions. Conclusions. A specific example shows the practical coincidence in the results of calculations using the constitutive equations of the theory of flow and the proposed version of the theory of plasticity.

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Cite This Study

Kiseleva et al. (2026) studied this question.

synapsesocial.com/papers/6a0d5078f03e14405aa9c3f2https://doi.org/10.36622/2542-0526.2026.70.2.013
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