© 2018 The Authors. "How crack growth is prevented" is key to improve both fatigue and monotonic fracture resistances under an influence of hydrogen. Specifically, the key points for the crack growth resistance are hydrogen diffusivity and local ductility. For instance, type 304 austenitic steels show high hydrogen embrittlement susceptibility because of the high hydrogen diffusivity of bcc (α) martensite. In contrast, metastability in specific austenitic steels enables fcc (γ) to hcp (ϵ) martensitic transformation, which decreases hydrogen diffusivity and increases strength simultaneously. As a result, even if hydrogen-assisted cracking occurs during monotonic tensile deformation, the ϵ-martensite acts to arrest micro-damage evolution when...
DoctorThe presence of hydrogen in steels often leads to embrittlement which is sensitive to the stre...
Advanced high strength steels undergo a series of microstructural transitions associated with damage...
To balance good strength and ductility, Medium Mn steels have been considered as the new generation ...
© 2019 Elsevier Ltd The main factors affecting resistance to hydrogen-assisted cracking are hydrogen...
© 2018 The Authors. We investigated hydrogen embrittlement in Fe20Mn20Ni20Cr20Co and Fe30Mn10Cr10Co...
The effect of high levels of internal hydrogen on the microstructure evolving during stage II fatigu...
The influence of hydrogen on the mechanical and fracture properties of four martensitic advanced hig...
Hydrogen embrittlement (HE) presents a critical challenge to application of structural alloys in hyd...
Hydrogen embrittlement is a complex phenomenon, involving several length- and timescales, that affec...
Hydrogen as an energy carrier and hydrogen applications, as fuel cells, are considered to play an im...
Hydrogen embrittlement and fatigue are two modes of structural materials failure for which mechanist...
Earlier studies have shown that interlathaustenite in martensitic steels can enhance hydrogen embrit...
A new criterion for hydrogen-induced cracking (HIC) that includes both the embrittlement effect and ...
High Mn twinning-induced plasticity (TWIP) steels are attractive for high performance applications o...
We investigate the influence of constituent phases on the hydrogen-induced mechanical degradation in...
DoctorThe presence of hydrogen in steels often leads to embrittlement which is sensitive to the stre...
Advanced high strength steels undergo a series of microstructural transitions associated with damage...
To balance good strength and ductility, Medium Mn steels have been considered as the new generation ...
© 2019 Elsevier Ltd The main factors affecting resistance to hydrogen-assisted cracking are hydrogen...
© 2018 The Authors. We investigated hydrogen embrittlement in Fe20Mn20Ni20Cr20Co and Fe30Mn10Cr10Co...
The effect of high levels of internal hydrogen on the microstructure evolving during stage II fatigu...
The influence of hydrogen on the mechanical and fracture properties of four martensitic advanced hig...
Hydrogen embrittlement (HE) presents a critical challenge to application of structural alloys in hyd...
Hydrogen embrittlement is a complex phenomenon, involving several length- and timescales, that affec...
Hydrogen as an energy carrier and hydrogen applications, as fuel cells, are considered to play an im...
Hydrogen embrittlement and fatigue are two modes of structural materials failure for which mechanist...
Earlier studies have shown that interlathaustenite in martensitic steels can enhance hydrogen embrit...
A new criterion for hydrogen-induced cracking (HIC) that includes both the embrittlement effect and ...
High Mn twinning-induced plasticity (TWIP) steels are attractive for high performance applications o...
We investigate the influence of constituent phases on the hydrogen-induced mechanical degradation in...
DoctorThe presence of hydrogen in steels often leads to embrittlement which is sensitive to the stre...
Advanced high strength steels undergo a series of microstructural transitions associated with damage...
To balance good strength and ductility, Medium Mn steels have been considered as the new generation ...