In earlier research it was observed that small differences in the alloying and the processing conditions can greatly influence the microstructure and hence the magnetic performance of laser powder bed fusion (PBF-LB) processed soft magnetic Fe-Co-V material. However, a systematic study on the effect of alloy composition and heat treatments on the microstructure and magnetic properties of PBF-LB manufactured Fe-Co-V alloys is pending and the underlying mechanisms remain to be better understood. The microstructure and magnetic properties of two different Fe-Co-V alloys (with and without Nb addition) manufactured by PBF-LB with two sample types (small and large dimensions) and different heat treatments were investigated. PBF-LB processed Fe-Co...
The paper presents the results of tests carried out on samples of FeCoB-based alloys. The samples we...
Post-heat treatment of additively manufactured (AM) Inconel 718 components is essential for optimizi...
There remains a significant challenge in adapting alloys for metal based Additive Manufacturing (AM)...
In earlier research it was observed that small differences in the alloying and the processing condit...
Purpose – The purpose of this paper is to report on the developments in manufacturing soft magnetic ...
Additive manufacturing (AM) technologies have opened up new possibilities for realizing magnetic cir...
In the present work, the mechanical and magnetic properties of pure iron manufactured by laser-powde...
The material science of additive manufacturing (AM) has become a significant topic due to the unique...
Additive manufacturing technologies have opened up new possibilities for realizing more comprehensiv...
Laser powder-bed fusion (PBF-LB), a class of additive manufacturing (AM), has attracted wide interes...
Laser powder-bed fusion (L-PBF), as an additive manufacturing (AM) technique, has demonstrated excel...
The scientific goal of this work is to investigate hard magnetic alloys based on Nd Fe B for the pro...
An investigation into the optimisation of magnetic properties of two types of magnetic alloys based ...
Additive manufacturing technology represents a valid alternative for the production of ferromagnetic...
In order to overcome constraints related to crack formation during additive processing (laser powder...
The paper presents the results of tests carried out on samples of FeCoB-based alloys. The samples we...
Post-heat treatment of additively manufactured (AM) Inconel 718 components is essential for optimizi...
There remains a significant challenge in adapting alloys for metal based Additive Manufacturing (AM)...
In earlier research it was observed that small differences in the alloying and the processing condit...
Purpose – The purpose of this paper is to report on the developments in manufacturing soft magnetic ...
Additive manufacturing (AM) technologies have opened up new possibilities for realizing magnetic cir...
In the present work, the mechanical and magnetic properties of pure iron manufactured by laser-powde...
The material science of additive manufacturing (AM) has become a significant topic due to the unique...
Additive manufacturing technologies have opened up new possibilities for realizing more comprehensiv...
Laser powder-bed fusion (PBF-LB), a class of additive manufacturing (AM), has attracted wide interes...
Laser powder-bed fusion (L-PBF), as an additive manufacturing (AM) technique, has demonstrated excel...
The scientific goal of this work is to investigate hard magnetic alloys based on Nd Fe B for the pro...
An investigation into the optimisation of magnetic properties of two types of magnetic alloys based ...
Additive manufacturing technology represents a valid alternative for the production of ferromagnetic...
In order to overcome constraints related to crack formation during additive processing (laser powder...
The paper presents the results of tests carried out on samples of FeCoB-based alloys. The samples we...
Post-heat treatment of additively manufactured (AM) Inconel 718 components is essential for optimizi...
There remains a significant challenge in adapting alloys for metal based Additive Manufacturing (AM)...