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My major research interest is in understanding the inter-relationships between processing, alloying, microstructure and properties in metallic materials – and in incorporating this knowledge into computational tools for use in research, education and engineering. An important part of my research is development of Integrated Computational Materials Engineering (ICME) tools – and thus collaborations with other computational and experimental groups are an essential element of my work. Central to my research are investigations on the evolution of microstructures - current examples include precipitate evolution, recrystallization and grain growth and texture development in magnesium, aluminum and titanium alloys. I am also interested in mechanical behavior of these materials, with an emphasis on development of mechanistic and phenomenological understanding of the influence of microstructure on properties such as strength, ductility and fatigue resistance.
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FATIGUE & FRACTURE OF ENGINEERING MATERIALS & STRUCTURESno. 4 (2024): 1150-1171
FATIGUE & FRACTURE OF ENGINEERING MATERIALS & STRUCTURESno. 3 (2024): 862-883
The Minerals, Metals & Materials SeriesMagnesium Technology 2023pp.19-21, (2023)
Magnesium Technology 2023pp.127-129, (2023)
The Minerals, Metals & Materials Series Magnesium Technology 2023pp.39-41, (2023)
Journal of magnesium and alloys (2023)
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