Phd thesis on high entropy alloys

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High entropy alloys HEAs are the new class of materials with unique microstructure and properties. They contain four or more components in equal or near-equal atomic percent. Due to their high yield strength and hardness at elevated temperatures, HEAs are potential candidates for high-temperature applications whereas their superior irradiation properties in comparison with pure elements and conventional alloys make them potential candidates for applications in structural elements of future fusion and fission reactors. His research focuses on the ab initio modelling of materials properties based on the density functional theory DFT. In this project, he was responsible together with Prof.
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PhD in Materials Science/High entropy alloys (three years)

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High entropy alloys - Wikipedia

High entropy alloys HEA are a new class of materials that are attracting increasing attention and are considered as the alloys of tomorrow because of their superior mechanical properties. In contrast with conventional alloys composed mainly of one element, HEA are composed of multiple elements in comparable proportion. In particular, refractory HEA of body centered cubic structure such as Ta25Nb25Mo25W25 keep an outstanding high yield strength at high temperature and are thought as potential replacement of Ni-base superalloys for aerospace and nuclear applications. However, impurities such as oxygen and carbon atoms that occupy interstitial sites of these alloys lead to an increase of the yield strength but also to a drop of ductility.
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Combinatorial high throughput synthesis of high entropy alloys

Stella, Piergiorgio Powder metallurgy: investigation of metallurgical and technological aspects and potential applications for critical components of turbomachineries. PhD thesis, University of Trento. The thesis focused on the study of the pressure-assisted Hot Isostatic Pressing technology for the processing of the corrosion resistant Ni-base alloy N The densification behaviour of the N metal powder in condition of pressure assisted sintering was investigated by experiments conducted on a small scale by uniaxial hot pressing condition using a Spark Plasma Sintering SPS machine in the aim of extending the result to the initial stage of densification of HIP. The SPS exepriments demonstrated that the densification rate is strongly affected by the process temperature and it is less sensitive to the variation of applied pressure.
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Ab initio -based modelling of high-entropy alloys. Jan S. High entropy alloys HEAs are the new class of materials with unique microstructure and properties. They contain four or more components in equal or near-equal atomic percent.
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