Laser surface treatments offer interesting prospects for the creation of architectured microstructures formed by distinct phases in metastable austenitic steels. In the present study, a laser-based localised heat treatment was developed to locally create an austenitic region in a quenched Fe25Ni0.2C martensitic microstructure. The highly localised laser heat flux gives rise to high spatial gradients in peak temperature and heating rate. This results in strong variations in the microstructures observed over short distances, which are related to local changes in the martensite to austenite phase transformation temperatures and formation mechanisms, the occurrence of grain growth and recrystallization in the newly formed austenite, and the tem...
Fatigue property improvement for automotive components such as crankshafts can be achieved through m...
The microstructural and compositional features of the laser-solidified microstructures and phase evo...
During laser powder bed fusion (L-PBF), materials experience cyclic re-heating as new layers are dep...
Laser surface treatment shows great potential to locally create distinct phases in martensitic steel...
The application of thermal cycles below melting temperature can induce solid-to-solid phase transfor...
The surface of a medium carbon steel sheet was laser cladded with a Co-Cr alloy in two layers by a m...
Overlapping regions of laser surface treatment are necessary features when processing large surface ...
During laser-based powder bed fusion, the non-equilibrium solidification conditions promote local el...
The realisation of sophisticated hierarchically patterned multiphase steels has the potential to ena...
Ultra high strength steels are of enormous interest especially in the automotive industry due to the...
The superficial coatings in micro-alloyed steel pipes has been a pointed way to decrease the corros...
This work presents constitutive equations and a dataset of a thermal model for the prediction of tem...
We examined the microstructure evolution in medium-carbon low-alloy steel upon laser engineering net...
The X38CrMoV5-1 hot-work tool steel produced by laser powder bed fusion was investigated to assess t...
Additive manufacturing is revolutionizing the way of production and use of materials. The clear tend...
Fatigue property improvement for automotive components such as crankshafts can be achieved through m...
The microstructural and compositional features of the laser-solidified microstructures and phase evo...
During laser powder bed fusion (L-PBF), materials experience cyclic re-heating as new layers are dep...
Laser surface treatment shows great potential to locally create distinct phases in martensitic steel...
The application of thermal cycles below melting temperature can induce solid-to-solid phase transfor...
The surface of a medium carbon steel sheet was laser cladded with a Co-Cr alloy in two layers by a m...
Overlapping regions of laser surface treatment are necessary features when processing large surface ...
During laser-based powder bed fusion, the non-equilibrium solidification conditions promote local el...
The realisation of sophisticated hierarchically patterned multiphase steels has the potential to ena...
Ultra high strength steels are of enormous interest especially in the automotive industry due to the...
The superficial coatings in micro-alloyed steel pipes has been a pointed way to decrease the corros...
This work presents constitutive equations and a dataset of a thermal model for the prediction of tem...
We examined the microstructure evolution in medium-carbon low-alloy steel upon laser engineering net...
The X38CrMoV5-1 hot-work tool steel produced by laser powder bed fusion was investigated to assess t...
Additive manufacturing is revolutionizing the way of production and use of materials. The clear tend...
Fatigue property improvement for automotive components such as crankshafts can be achieved through m...
The microstructural and compositional features of the laser-solidified microstructures and phase evo...
During laser powder bed fusion (L-PBF), materials experience cyclic re-heating as new layers are dep...