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Multiscale modelling strategy for predicting fatigue lives and limits of steels based on a generalised evaluation method of grain boundaries effects

Hongchang Zhou, Zijie Liu, Masao KINEFUCHI, Kazuki Shibanuma

2022International Journal of Fatigue19 citationsDOIOpen Access PDF

Abstract

Multiscale modelling strategy for predicting fatigue lives and limits of steels is proposed based on a generalised method for evaluating grain boundaries’ (GBs) effects on fatigue crack growth. The proposed strategy is a modification of our previous works that extends the applicability from only low-grade ferrite steels to high-grade bainite steels. A microstructure model was developed considering distances between GBs and misorientations between adjacent grains. The strategy was validated by comparison with experiments using two ferrite-pearlite and one bainite steels; results indicate the strategy predicted fatigue lives and limits of steels with microstructures from coarse ferrite to fine bainite grains.

Topics & Concepts

BainiteFerrite (magnet)PearliteMaterials scienceMicrostructureMetallurgyGrain boundaryComposite materialAusteniteFatigue and fracture mechanicsMicrostructure and Mechanical Properties of SteelsHydrogen embrittlement and corrosion behaviors in metals
Multiscale modelling strategy for predicting fatigue lives and limits of steels based on a generalised evaluation method of grain boundaries effects | Litcius