Laser powder bed fusion (LPBF) was used to manufacture two high entropy alloys (HEAs) within the Al-Co-Cr-Fe-Ni-Zr system. The selected compositional ranges were similar to alumina forming austenitic (AFA) steels but omitting interstitials and replacing Nb with Zr as the Laves forming element. The Fe-rich austenitic HEAs were prepared with varying Al and Zr content to evaluate the influence on the presence, size, and distribution of the intermetallic (IM) precipitates. The LPBF process combined with a single (950 °C 6 h) heat treatment formed large, elongated grains with a fine dispersion of multiple different nano-sized IM phases. Synchrotron high energy x-ray diffraction (HEXRD) revealed the cubic M$_{23}$Zr$_6$ as the main Zr-rich IM pha...
Within the EU project ATLAS – “Advanced Design of High Entropy Alloys Based Materials for Space Prop...
High-entropy alloys have gained high interest of both academia and industry in recent years due to t...
The group of high entropy alloys (HEA) is under increasing interest due to the wide possibility of t...
Recently, high entropy alloys (HEAs) have represented a field of intense research in metallurgy beca...
The design of new alloys by and for metal additive manufacturing (AM) is an emerging field of resear...
The design of new alloys by and for metal additive manufacturing (AM) is an emerging field of resear...
High entropy alloys have attracted great interest due to their flexibility in composition accompanie...
High entropy alloys have attracted great interest due to their flexibility in composition accompanie...
Design of new materials with complex geometries is an important part of new innovative solutions for...
Additive manufacturing (AM) is a rapid prototyping technology to produce fully functional and comple...
Laser powder-bed fusion (LPBF) is an additive manufacturing (AM) process that uses a laser to select...
High entropy alloys are multicomponent alloys that have at least five different principal elements a...
In the present study both fusion based - laser powder bed fusion (LPBF), and solid state - additive ...
This research aims to study the laser powder bed fusion (L-PBF) processability, the microstructure a...
Within the EU project ATLAS – “Advanced Design of High Entropy Alloys Based Materials for Space Prop...
Within the EU project ATLAS – “Advanced Design of High Entropy Alloys Based Materials for Space Prop...
High-entropy alloys have gained high interest of both academia and industry in recent years due to t...
The group of high entropy alloys (HEA) is under increasing interest due to the wide possibility of t...
Recently, high entropy alloys (HEAs) have represented a field of intense research in metallurgy beca...
The design of new alloys by and for metal additive manufacturing (AM) is an emerging field of resear...
The design of new alloys by and for metal additive manufacturing (AM) is an emerging field of resear...
High entropy alloys have attracted great interest due to their flexibility in composition accompanie...
High entropy alloys have attracted great interest due to their flexibility in composition accompanie...
Design of new materials with complex geometries is an important part of new innovative solutions for...
Additive manufacturing (AM) is a rapid prototyping technology to produce fully functional and comple...
Laser powder-bed fusion (LPBF) is an additive manufacturing (AM) process that uses a laser to select...
High entropy alloys are multicomponent alloys that have at least five different principal elements a...
In the present study both fusion based - laser powder bed fusion (LPBF), and solid state - additive ...
This research aims to study the laser powder bed fusion (L-PBF) processability, the microstructure a...
Within the EU project ATLAS – “Advanced Design of High Entropy Alloys Based Materials for Space Prop...
Within the EU project ATLAS – “Advanced Design of High Entropy Alloys Based Materials for Space Prop...
High-entropy alloys have gained high interest of both academia and industry in recent years due to t...
The group of high entropy alloys (HEA) is under increasing interest due to the wide possibility of t...