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- W2929061987 endingPage "851" @default.
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- W2929061987 abstract "Summary Nonlocal enhancement is widely adopted to resolve the mesh sensitivity issue in standard continuum damage models. Although it regularizes structural response well, the damage profile is reported to exhibit a spurious damage growth. To remedy this problem, a localizing gradient enhancement is adopted in the Rousselier model to simulate a localized rupture. The localizing gradient enhancement, recently developed in the small deformation framework, is extended in this paper to a large deformation framework, motivated by the strain localization phenomenon during a ductile fracture. The regularization property of the current model is verified with a flat grooved plate test, and the superior performance in damage localization is demonstrated with a uniaxial tensile plate test and a compact tension test on aluminum alloy. Results obtained with the localizing gradient enhancement are consistent with experimental observation, without the nonphysical damage growth in conventional gradient enhancement." @default.
- W2929061987 created "2019-04-11" @default.
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- W2929061987 date "2019-04-15" @default.
- W2929061987 modified "2023-10-09" @default.
- W2929061987 title "Localizing gradient‐enhanced Rousselier model for ductile fracture" @default.
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- W2929061987 doi "https://doi.org/10.1002/nme.6074" @default.
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