Influence of austenite morphology on the hydrogen embrittlement in medium Mn transformation-induced plasticity (TRIP) steel was investigated. With nearly the same volume fraction and mechanical stability, the lath-type austenite is found to have more beneficial effect in relieving the hydrogen susceptibility compared to the equiaxed one. Slower hydrogen uptake and diffusion are confirmed in the steel with the austenite of lath-type morphology, which is possibly led by more connections between austenite grains obstructing the migration of hydrogen. (C) 2019 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.11Nsciescopu
Funding Information: This research was supported by Business Finland Oy and Academy of Finland (#337...
Medium-Mn steel is the newly developed steel acting as a promising candidate of the 3rd-generation a...
Effects of microstructural changes induced by prestraining on hydrogen transport and hydrogen embrit...
The influence of microstructure on hydrogen diffusion and embrittlement of multiphase fine-grained s...
DoctorThe presence of hydrogen in steels often leads to embrittlement which is sensitive to the stre...
To balance good strength and ductility, Medium Mn steels have been considered as the new generation ...
AbstractThe ultrafine-grained (UFG) duplex microstructure of medium-Mn steel consists of a considera...
Diffusible hydrogen in steels can cause embrittlement. Hydrogen has much lower diffusivity in austen...
The trapping of hydrogen at a variety of sites in multiphase transformation-induced plasticity (TRIP...
We investigate the influence of constituent phases on the hydrogen-induced mechanical degradation in...
Understanding the mechanism of hydrogen embrittlement (HE) of austenitic steels and developing an ef...
Steel grades with levels of strength beyond 1000MPa and containing between 10 and 20% of retained au...
The risk of hydrogen embrittlement (HE) is currently one important factor impeding the use of medium...
The literature is reviewed regarding the influence of hydrogen on dual-phase (DP), transformation-in...
In this study, we investigated the hydrogen embrittlement (HE) of martensitic medium-Mn steels with ...
Funding Information: This research was supported by Business Finland Oy and Academy of Finland (#337...
Medium-Mn steel is the newly developed steel acting as a promising candidate of the 3rd-generation a...
Effects of microstructural changes induced by prestraining on hydrogen transport and hydrogen embrit...
The influence of microstructure on hydrogen diffusion and embrittlement of multiphase fine-grained s...
DoctorThe presence of hydrogen in steels often leads to embrittlement which is sensitive to the stre...
To balance good strength and ductility, Medium Mn steels have been considered as the new generation ...
AbstractThe ultrafine-grained (UFG) duplex microstructure of medium-Mn steel consists of a considera...
Diffusible hydrogen in steels can cause embrittlement. Hydrogen has much lower diffusivity in austen...
The trapping of hydrogen at a variety of sites in multiphase transformation-induced plasticity (TRIP...
We investigate the influence of constituent phases on the hydrogen-induced mechanical degradation in...
Understanding the mechanism of hydrogen embrittlement (HE) of austenitic steels and developing an ef...
Steel grades with levels of strength beyond 1000MPa and containing between 10 and 20% of retained au...
The risk of hydrogen embrittlement (HE) is currently one important factor impeding the use of medium...
The literature is reviewed regarding the influence of hydrogen on dual-phase (DP), transformation-in...
In this study, we investigated the hydrogen embrittlement (HE) of martensitic medium-Mn steels with ...
Funding Information: This research was supported by Business Finland Oy and Academy of Finland (#337...
Medium-Mn steel is the newly developed steel acting as a promising candidate of the 3rd-generation a...
Effects of microstructural changes induced by prestraining on hydrogen transport and hydrogen embrit...