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Current work involves the coupling of thermodynamic models, based on Calphad methods, to novel kinetic models, enabling the time and temperature dependence of the microstructure (particularly second phase particles) to be determined for complex industrial alloys and processes. Such an approach is being used to predict microstructure evolution and subsequent effect on properties for a range of aluminium, magnesium, and zirconium alloys during processes such as hot rolling and welding. Applications for these materials include the automotive, aerospace, and nuclear industries.
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论文共 34 篇作者统计合作学者相似作者
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SOFTWAREX (2024): 101612
Yida Xiong,Joseph D. Robson,Yichao Yao,Xiangli Zhong, Francesco Guarracino,Artenis Bendo,Zelong Jin,Teruo Hashimoto, Xuzhao Liu,Michele Curioni
Corrosion Science (2023): 111361-111361
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Alloysno. 1 (2022): 54-69
Materials Science and Engineering: A (2021): 140751
Social Science Research Network (2021)
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J.F. dos Santos,P Staron,T. Fischer,Joseph Robson,A Kostka,P Colegrove,H Wang, J Hilgert,L Bergmann, L.L. Hutsch,N Huber,A Schreyer
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