Grazing-incidence x-ray diffraction was employed to measure, operando, during electrochemical hydrogen charging, the lattice strain development of the near-surface in super duplex stainless steel under applied tensile load. Hydrogen absorption led to the formation of tensile strains in both the austenite (γ) and ferrite (δ) phases perpendicular to the loading axis, whereas compressive strains were formed in the ferrite phase parallel to the loading direction, despite the acting tensile load. The earliest stages of degradation are discussed in light of understanding hydrogen embrittlement
This paper reveals the interaction between hydrogen and surface stress in austenitic stainless steel...
Electrochemical hydrogen insertion in an austenitic stainless steel single crystal foil specimens re...
[[abstract]]The introduction of hydrogen to a high chromium ferritic stainless steel by electrochemi...
The local lattice strain evolution during electrochemical hydrogen charging and mechanical loading i...
Local strain development in the microstructure of a commercial 25Cr-7Ni super duplex stainless steel...
We report the evolution of metastable precursor structures during hydrogen infusion in the near-surf...
<div><p>The objective of this work is the evaluation of hydrogen effects on the martensitic transfor...
In super duplex stainless steels (SDSSs), both austenite and ferrite are susceptible to hydrogen emb...
This study considers the interaction between duplex stainless steel type 2205 and electrochemically ...
The interaction between hydrogen and structural materials has been intensively studied for many year...
95 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 1988.Mechanical properties of auste...
The effect of hydrogen charging on dislocation multiplication in super duplex stainless steel was in...
Hydrogen can influence the behaviour of materials significantly. The effects of hydrogen are special...
Duplex stainless steels (DSS) have a microstructure of ferrite and austenite. These alloys have a hi...
In-situ tensile testing of electrochemically hydrogen charged 304L stainless steel at different cros...
This paper reveals the interaction between hydrogen and surface stress in austenitic stainless steel...
Electrochemical hydrogen insertion in an austenitic stainless steel single crystal foil specimens re...
[[abstract]]The introduction of hydrogen to a high chromium ferritic stainless steel by electrochemi...
The local lattice strain evolution during electrochemical hydrogen charging and mechanical loading i...
Local strain development in the microstructure of a commercial 25Cr-7Ni super duplex stainless steel...
We report the evolution of metastable precursor structures during hydrogen infusion in the near-surf...
<div><p>The objective of this work is the evaluation of hydrogen effects on the martensitic transfor...
In super duplex stainless steels (SDSSs), both austenite and ferrite are susceptible to hydrogen emb...
This study considers the interaction between duplex stainless steel type 2205 and electrochemically ...
The interaction between hydrogen and structural materials has been intensively studied for many year...
95 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 1988.Mechanical properties of auste...
The effect of hydrogen charging on dislocation multiplication in super duplex stainless steel was in...
Hydrogen can influence the behaviour of materials significantly. The effects of hydrogen are special...
Duplex stainless steels (DSS) have a microstructure of ferrite and austenite. These alloys have a hi...
In-situ tensile testing of electrochemically hydrogen charged 304L stainless steel at different cros...
This paper reveals the interaction between hydrogen and surface stress in austenitic stainless steel...
Electrochemical hydrogen insertion in an austenitic stainless steel single crystal foil specimens re...
[[abstract]]The introduction of hydrogen to a high chromium ferritic stainless steel by electrochemi...