Development of high performance materials and processes for applications under extreme energy conditions

Inconel 718 Hybrid Laser-Based Directed Energy Deposition and Wrought Component Characterization through Small Punch Test

Failure analysis of an AISI 310 stainless steel beam reinforcement fracture during service in a rolling beam furnace

TREAT- Optimization of Heat Treatments (methodology)

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

HTSTEELS – Super-refractory stainless steels

SUMA- Superior Materials (methodology)

Bottom gas extraction system for manufacturing steel cast components with reduced inclusion content

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

Development of high performance materials and processes for applications under extreme energy conditions

Inconel 718 Hybrid Laser-Based Directed Energy Deposition and Wrought Component Characterization through Small Punch Test

Failure analysis of an AISI 310 stainless steel beam reinforcement fracture during service in a rolling beam furnace

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

Bottom gas extraction system for manufacturing steel cast components with reduced inclusion content

June 29, 2021

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