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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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Family of crack-tip fields characterized by a triaxiality parameter—II. Fracture applications

TL;DR: In this paper, the J-dominance is used to define the size scale over which large stresses and strains develop while Q scales the near-tip stress distribution and the stress triaxiality achieved ahead of the crack.
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Plastic stress and strain fields at a crack tip

TL;DR: In this article, the dominant singularity governing the plastic behavior at a crack tip is analyzed for conditions of plane stress and plane strain for cracks in both far tensile and far shear fields.
Journal ArticleDOI

Conservation Laws and Energy-Release Rates

TL;DR: In this article, complex-variable forms for the conservation laws in the cases of linear, isotropic, plane elasticity are presented for the case of linear and isotropically elasticity.
Journal ArticleDOI

Failure of metals I : brittle and ductile fracture

TL;DR: In this paper, the first overview of failure of metals is presented, focusing on brittle and ductile failure under monotonic loadings, where the focus is on linking microstructure, physical mechanisms and overall fracture properties.
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A comparison of methods for calculating energy release rates

TL;DR: In this article, the authors compare two methods for calculating the energy released during quasi-static crack advance, one based on a surface integral (line integral in two dimensions) expression for the energy release rate, whereas the other method is based on volume (area) integral representation.
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.
Journal ArticleDOI

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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