The effect of hydrogen (H) charging on the nanoindentation response of a selective laser melted (SLM) 316L austenitic stainless steel was investigated and compared with its conventionally manufactured (CM) counterpart. Results show that the hardness increment in the SLM samples due to H charging is relatively smaller. Thermal desorption spectroscopy analysis suggests that the charged SLM alloy has not only a smaller H content but a lower apparent H diffusivity in comparison to the CM alloy. This was attributed to the ultrafine solidification cell structure in the SLM alloy. Through the low-load nanoindentation experiments and forward-scattered electron imaging analysis, statistical distributions of the hardness of the cell walls and interio...
This study investigates the effects of laser powder bed fusion (LPBF) on the hydrogen uptake of the ...
Hydrogen energy is a possible solution for storage in the future. The resistance of packaging materi...
Hydrogen is nowadays in focus as an energy carrier that is locally emission free. Especiallyin combi...
The hydrogen embrittlement (HE) behavior of a selective laser-melted (SLM) 316L austenitic stainless...
Besides elevated temperature applications, Inconel 718 is widely chosen for components subjected to ...
The interaction between hydrogen and structural materials has been intensively studied for many year...
Besides elevated temperature applications, Inconel 718 is widely chosen for components subjected to ...
International audienceIn this study, the microstructure and hydrogen embrittlement of 17–4 PH stainl...
The influence of charging method on hydrogen (H)distribution and the resultant nanomechanical behavi...
In this study, the hydrogen embrittlement (HE) of 316L stainless steel produced by laser powder bed ...
In-situ electrochemical nanoindentation (ECNI) has been used to study the effect of hydrogen on the ...
In-situ electrochemical nanoindentation (ECNI) has been used to study the effect of hydrogen on the ...
Thermal desorption spectroscopy and nanoindentation techniques were employed to elucidate the key di...
We demonstrate that modifying the cellular structures by well-controlled annealing can effectively i...
316L stainless steel is a promising material candidate for a hydrogen containment system. However, w...
This study investigates the effects of laser powder bed fusion (LPBF) on the hydrogen uptake of the ...
Hydrogen energy is a possible solution for storage in the future. The resistance of packaging materi...
Hydrogen is nowadays in focus as an energy carrier that is locally emission free. Especiallyin combi...
The hydrogen embrittlement (HE) behavior of a selective laser-melted (SLM) 316L austenitic stainless...
Besides elevated temperature applications, Inconel 718 is widely chosen for components subjected to ...
The interaction between hydrogen and structural materials has been intensively studied for many year...
Besides elevated temperature applications, Inconel 718 is widely chosen for components subjected to ...
International audienceIn this study, the microstructure and hydrogen embrittlement of 17–4 PH stainl...
The influence of charging method on hydrogen (H)distribution and the resultant nanomechanical behavi...
In this study, the hydrogen embrittlement (HE) of 316L stainless steel produced by laser powder bed ...
In-situ electrochemical nanoindentation (ECNI) has been used to study the effect of hydrogen on the ...
In-situ electrochemical nanoindentation (ECNI) has been used to study the effect of hydrogen on the ...
Thermal desorption spectroscopy and nanoindentation techniques were employed to elucidate the key di...
We demonstrate that modifying the cellular structures by well-controlled annealing can effectively i...
316L stainless steel is a promising material candidate for a hydrogen containment system. However, w...
This study investigates the effects of laser powder bed fusion (LPBF) on the hydrogen uptake of the ...
Hydrogen energy is a possible solution for storage in the future. The resistance of packaging materi...
Hydrogen is nowadays in focus as an energy carrier that is locally emission free. Especiallyin combi...