Tag: Solid state

Challenges and opportunities in the additive manufacturing of stainless steels. Part...

Addressing the challenge of hydrogen embrittlement in metallurgy
Fig. 1. Use of reversible hydride-forming alloy for temperature swing hydrogen compression and delivery

Choosing materials for solid-state hydrogen storage – a guidance framework

Solid-state hydrogen storage systems based on metallic materials which chemically absorb large amounts of hydrogen under moderate pressure and temperature and then release them...

Challenges and opportunities in the additive manufacturing of stainless steels. Part...

Addressing the challenge of hydrogen embrittlement in metallurgy
powdered metal

Challenges and opportunities in the additive manufacturing of stainless steels. Part...

Addressing the challenge of hydrogen embrittlement in metallurgy
Austenitic stainless steels are an ideal candidate material for fusion-based additive manufacturing processes including wire arc additive manufacturing (WAAM).

Challenges and opportunities in the additive manufacturing of stainless steels. Part...

Addressing the challenge of hydrogen embrittlement in metallurgy
Additive manufacturing using a laser-based directed energy deposition process.

Challenges and opportunities in the additive manufacturing of stainless steels –...

Addressing the challenge of hydrogen embrittlement in metallurgy