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Singular behaviour at the end of a tensile crack in a hardening material

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TLDR
In this paper, a total deformation theory of plasticity, in conjunction with two hardening stress-strain relations, is used to determine the dominant singularity at the tip of a crack in a tension field.
Abstract
D istributions of stress occurring at the tip of a crack in a tension field are presented for both plane stress and plane strain. A total deformation theory of plasticity, in conjunction with two hardening stress-strain relations, is used. For applied stress sufficiently low such that the plastic zone is very small relative to the crack length, the dominant singularity can be completely determined with the aid of a path-independent line integral recently given by rice (1967). The amplitude of the tensile stress singularity ahead of the crack is found to be larger in plane strain than in plane stress.

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A new enrichment scheme in XFEM to model crack growth behavior in ductile materials

TL;DR: In this paper, a new enrichment scheme is employed in conjunction with XFEM for the stable crack growth analysis in ductile materials, and the nonlinear equations obtained as a result of material nonlinearity are solved using Newton-Raphson iterative method.
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The effects of warm pre-stressing on cleavage fracture. Part 2: finite element analysis

TL;DR: In this paper, the effects of warm pre-stressing on cleavage fracture were investigated using finite element analysis. And the role of residual stress field in enhancing cleavage fractures was highlighted.
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On the stress concentration at sharp re-entrant corners in plates

TL;DR: In this paper, the authors considered the peak local stresses occurring at sharp re-entrant corners in plates under remote transverse loading, whereby "sharp" is meant zero root radius of curvature.
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A novel approach to model mixed mode plasticity at crack tip and crack growth. Experimental validations using velocity fields from digital image correlation

TL;DR: In this article, a set of specific experiments were conducted so as to validate a novel approach to model the mixed-mode elastic-plastic behavior of a cracked component, and the experimental results showed that the error associated with this approximation is small.
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A finite element method for determining the angular variation of asymptotic crack tip fields

TL;DR: In this paper, a finite element method for computing the angular variation of asymptotic singular solutions is presented, where the radial dependence of the fields is assumed known, and the material model is easily implemented and accurate solutions are obtained using coarse meshes.
References
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Book

The mathematical theory of plasticity

Rodney Hill
TL;DR: In this paper, the solution of two-dimensional non-steady motion problems in two dimensions is studied. But the solution is not a solution to the problem in three dimensions.
Journal ArticleDOI

Local yielding and extension of a crack under plane stress

TL;DR: In this article, the size of locally yielded regions, the stress distribution, and displacements attending a crack in tension under plane stress have been calculated by extending the work of Dugdale and others.
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Contained plastic deformation near cracks and notches under longitudinal shear

TL;DR: In this paper, an exact linear elastic-perfectly plastic solution for the problem of sharp notch (or, when the notch angle is zero, a crack) in a plane of finite width subjected to anti-plane stresses inducing a stress and deformation state of longitudinal shear is presented.
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