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A leading research institution in Southampton seeks a Research Fellow to innovate in the design and qualification of austenitic steels for high-temperature applications. The role involves developing new alloy compositions and testing procedures to enhance material performance under creep-fatigue conditions. Candidates should possess a PhD in materials science and demonstrate experience in data-driven methods and alloy design principles. The position offers opportunities for interdisciplinary collaboration and mentorship.
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Join to apply for the Research Fellow in Design and Qualification of Austenitic Steels for Creep-Fatigue role at Cyber Security Academy Southampton
The long-term structural integrity of steam generators in high-temperature reactors critically depends on the performance of advanced austenitic stainless steels, particularly under creep and creep-fatigue conditions. However, the conventional development of such alloys has relied heavily on trial-and-error exploration of a vast compositional space defined by elements such as Fe, Cr, Ni, Mn, and Mo. Although this approach has led to the development of alloys such as Type 316, Alloy 617, 800H, and 709, the process remains slow, expensive, and inefficient.
Creep-fatigue Represents a Complex Interplay Of Creep, Fatigue, Oxidation, And Thermal Aging. This Complexity Makes Fully Rational Design Of Materials Based On Physical Principles, Using The “bottom-up” Multi-scale Approach, a Formidable Challenge. To Address This, You Will Adopt a Novel "top-down" Strategy, Directly Opposed To The Current Materials Discovery Methods, To Accelerate Materials Development For Creep-fatigue Environments. Specifically, You Will Work Independently And As Part Of a Collaborative Team To Achieve The Project Objectives
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