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Laser metal deposition of refractory high-entropy alloys for high-throughput synthesis and structure-property characterization

  • Progress in materials development is often paced by the time required to produce and evaluate a large number of alloys with different chemical compositions. This applies especially to refractory high-entropy alloys (RHEAs), which are difficult to synthesize and process by conventional methods. To evaluate a possible way to accelerate the process, high-throughput laser metal deposition was used in this work to prepare a quinary RHEA, TiZrNbHfTa, as well as its quaternary and ternary subsystems by in-situ alloying of elemental powders. Compositionally graded variants of the quinary RHEA were also analyzed. Our results show that the influence of various parameters such as powder shape and purity, alloy composition, and especially the solidification range, on the processability, microstructure, porosity, and mechanical properties can be investigated rapidly. The strength of these alloys was mainly affected by the oxygen and nitrogen contents of the starting powders, while substitutional solid solution strengthening played a minor role.

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Author:Henrik Dobbelstein, Easo P George, Evgeny L Gurevich, Aleksander Kostka, Andreas Ostendorf, Guillaume Laplanche
URL:https://iopscience.iop.org/article/10.1088/2631-7990/abcca8/meta
Parent Title (English):International Journal of Extreme Manufacturing
Publisher:IOP Publishing
Document Type:Article
Language:English
Date of Publication (online):2021/03/08
Year of first Publication:2021
Provider of the Publication Server:FH Münster - University of Applied Sciences
Release Date:2021/03/08
Volume:3
Issue:1
First Page:015201
Last Page:015201
Faculties:Physikingenieurwesen (PHY)
Publication list:Gurevich, Evgeny
Licence (German):License LogoBibliographische Daten