United Kingdom
University of Sheffield
Additive Manufacturing, Laser powder bed fusion, Cracking Mechanisms, High Entropy Alloys, Alloy Design
Metals and alloys, Intermetallics, microstructure, SEM
metals and alloys, Intermetallics, Microstructure, SEM
Nitinol, process optimisation, laser powder bed fusion, phase transformation, shape memory effect, Digital Scanning Calorimetry (DSC)
MnAl, permanent magnet, metastable, saturation magnetisation, Anisotropy
Refractory Alloy, Plasma Facing Material, Compositionally Complex Alloys, Low Activation, Ti(CON), C15 Laves
Additive manufacturing, laser powder bed fusion, Refractory High Entropy Alloys, In-situ alloying
Additive manufacturing, Laser Powder Bed Fusion, Refractory High Entropy Alloys, Mechanical properties, microstructure
refractory high entropy alloyshigh temperature oxidationoxidation kineticsPilling Bedworth Ratio