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High– and low–cycle fatigue crack initiation using polycrystal plasticity

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Publication:3024534
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DOI10.1098/rspa.2003.1258zbMath1153.74371OpenAlexW2155727655MaRDI QIDQ3024534

A. Manonukul, F. P. E. Dunne

Publication date: 1 July 2005

Published in: Proceedings of the Royal Society of London. Series A: Mathematical, Physical and Engineering Sciences (Search for Journal in Brave)

Full work available at URL: https://doi.org/10.1098/rspa.2003.1258


zbMATH Keywords

crack initiationpolycrystal plasticityhigh-cycle fatigue (Hcf)low-cycle fatigue (Lcf)


Mathematics Subject Classification ID

Fracture and damage (74R99)


Related Items (7)

A `stack' model of rate-independent polycrystals ⋮ A binary-tree based model for rate-independent polycrystals ⋮ On the accuracy of spectral solvers for micromechanics based fatigue modeling ⋮ A computational framework for low-cycle fatigue in polycrystalline materials ⋮ Effects of microstructure variability on intrinsic fatigue resistance of nickel-base superalloys - a computational micromechanics approach ⋮ A hierarchical model for rate-dependent polycrystals ⋮ Stochastic continuum approach to high-cycle fatigue: modelling stress history as a stochastic process




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