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Uncovering the tension-compression asymmetry of low stacking fault FCC alloys...
A certain type of alloys, with face-centered-cubic (FCC) structure and medium to low stacking fault energies (SFE), can trigger the formation of multiple twins (mechanical... -
Deformation mechanisms in several simple alloys to underpin creep damage char...
The proposal is to study three alloys, both at high temperature and room temperature, to corroborate strain results obtained through high resolution digital image correlation.... -
EBSD, DIC and Neutron Diffraction to characterise phase transformation and pl...
Martensitic transformations are solid-state transformations on completion of which a hard phase having very high dislocation density is obtained. Despite often being an... -
The influence of temperature on the nature martensitic transformation: A neut...
This experiment aims to study the strain induced transformation mechanism at temperatures between room temperature and low temperatures, and at extremely low temperatures. These... -
Deformation mechanisms of a newly developed Ni-base superalloy at cryogenic t...
Haynes 282 is a novel Ni-base superalloy, combining excellent weldability and general processability with moderate cost. As such, it is very promising for e.g. industrial gas... -
Deforming TWIP steels at cryogenic temperatures
Dense mechanical twins and phase transformation are the most attractive athermal transformation processes since they can endow alloys with significant strength enhancement as... -
In situ quantification of the micro mechanisms during tensile deformation for...
Recently, high entropy alloy (HEA) concept has been studied as a means of achieving excellent properties of metallic alloys. We have developed an HEA alloy through powder... -
Revealing deformation mechanisms in a novel eutectic high entropy alloy at cr...
In recent years, an exciting new type of engineering materials called high entropy alloys (HEAs) has received widespread attention. The excellent microstructural stability of...