Numerical analysis of blunting of a crack tip in a ductile material under small-scale yielding and mixed mode loading (Q1820026)

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scientific article; zbMATH DE number 3995230
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Numerical analysis of blunting of a crack tip in a ductile material under small-scale yielding and mixed mode loading
scientific article; zbMATH DE number 3995230

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    Numerical analysis of blunting of a crack tip in a ductile material under small-scale yielding and mixed mode loading (English)
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    1986
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    The blunting of the tip of a crack in a ductile material is analysed under the conditions of plane strain, small-scale yielding, and mixed mode loading of Modes I and II. The material is assumed to be an elastic- perfectly plastic solid with Poisson's ratio being 1/2. The stress and strain fields for a sharp crack under mixed mode loading are first determined by means of elastic-plastic finite element analysis. It is shown that only one elastic sector exists around the crack tip, in contrast with the possibility of existence of two elastic sectors as discussed by \textit{Yuchen Gao} [e.g. Acta Mech. Sin. 1980, 48-56 (1980; Zbl 0444.73083)]. The results obtained for a sharp crack are used as the boundary conditions for the subsequent numerical analysis of crack tip blunting under mixed mode loading, based on slip line theory. The characteristic shapes of the blunted crack tip are obtained for a wide range of Mode I and Mode II combinations, and found to resemble the tip of Japanese sword. Also the stress field around the blunted crack tip is determined.
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    blunting
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    plane strain
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    small-scale yielding
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    mixed mode loading
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    Modes I and II
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    elastic-perfectly plastic solid
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    stress and strain fields
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    sharp crack
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    elastic-plastic finite element analysis
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    slip line theory
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