Rethinking sustainability of metallic alloys

Development of New Hybrid Composites for High-Temperature Applications

TREAT – Tratamendu termikoen optimizazioa (metodologia)

Chemical Composition Effects on the Microstructure and Hot Hardness of NiCrSiFeB Self-Fluxing Alloys Manufactured via Gravity Casting

HTSTEELS – Altzairu herdoilgaitz super-erregogorrak

Azpi-aldeko gasen erauzketa sistema inklusio eduki murriztua duten altzairu-galdaketa osagaiak fabrikatzeko

High Performance Materials for extreme Energy Intensive Industry Process Environments

Influence of the Chemical Composition on the Solidification Path, Strengthening Mechanisms and Hardness of Ni-Cr-Si-Fe-B Self-Fluxing Alloys Obtained by Laser-Directed Energy Deposition

Embedded conductors in solidified molten metal for winding packs for high-field stellarators

On the Mechanism of Formation of Bimodal Grain Structure in Al–4.5Mg–0.7Sc–0.3Zr Alloy Processed by Laser Powder Bed Fusion

Rethinking sustainability of metallic alloys

Development of New Hybrid Composites for High-Temperature Applications

Chemical Composition Effects on the Microstructure and Hot Hardness of NiCrSiFeB Self-Fluxing Alloys Manufactured via Gravity Casting

Azpi-aldeko gasen erauzketa sistema inklusio eduki murriztua duten altzairu-galdaketa osagaiak fabrikatzeko

High Performance Materials for extreme Energy Intensive Industry Process Environments

Influence of the Chemical Composition on the Solidification Path, Strengthening Mechanisms and Hardness of Ni-Cr-Si-Fe-B Self-Fluxing Alloys Obtained by Laser-Directed Energy Deposition

Embedded conductors in solidified molten metal for winding packs for high-field stellarators

On the Mechanism of Formation of Bimodal Grain Structure in Al–4.5Mg–0.7Sc–0.3Zr Alloy Processed by Laser Powder Bed Fusion