A physically-based constitutive model for a novel heat resistant martensitic steel under different cyclic loading modes: Microstructural strengthening mechanisms

K Song, K Wang, L Zhao, L Xu, N Ma, Y Han… - International Journal of …, 2023 - Elsevier
Cyclic responses of a novel heat resistant martensitic steel, 9Cr3Co3W1CuVNbB steel,
under different loading modes were studied to reveal its complex strengthening mechanisms …

On the microstructural evolution in a 10% Cr martensitic steel during interrupted low cycle fatigue testing at 650° C

N Dudova, R Mishnev, R Kaibyshev - International Journal of Fatigue, 2023 - Elsevier
The correlation between cyclic softening and microstructural evolution using the interrupted
low cycle fatigue (LCF) tests with a low strain amplitude of±0.2% at 650° C in a 10% Cr steel …

Cyclic stress–strain response and crystal plasticity finite element analysis of AISI 9310 steel in biaxial fatigue loading

J Liang, L Jiao, P Yan, Y Song, H Gu… - Fatigue & Fracture of …, 2023 - Wiley Online Library
There are still many gaps in the research on the multiaxial fatigue failure mechanism of the
gear shaft. In this paper, cyclic stress–strain response and biaxial fatigue damage …

Enhanced Fatigue Limit in Ultrafine-Grained Ferritic–Martensitic Steel

MA Nikitina, RK Islamgaliev, AV Ganeev, AA Frik - Materials, 2023 - mdpi.com
The influence of the ultrafine-grained (UFG) structure on the fatigue endurance limit and the
nature of fatigue failure have been studied. It is shown that the formation of the UFG structure …

[PDF][PDF] On the microstructural evolution in a 10% Cr martensitic steel during interrupted low cycle fatigue testing at

N Dudovaa, R Mishneva, R Kaibysheva - researchgate.net
The correlation between cyclic softening and microstructural evolution using the interrupted
low cycle fatigue (LCF) tests with a low strain amplitude of±0.2% at 650 C in a 10% Cr steel …