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All Outputs (4)

In Situ Studies of the Solidification Dynamics of Metal Alloys (2018)
Book Chapter
Mi, J. (2018). In Situ Studies of the Solidification Dynamics of Metal Alloys. In D. G. Eskin, & J. Mi (Eds.), Solidification Processing of Metallic Alloys Under External Fields (19-74). Cham: Springer. https://doi.org/10.1007/978-3-319-94842-3_2

© 2018, Springer Nature Switzerland AG. Since the 1990s, tens of 3rd generation synchrotron X-ray facilities have been built around the world and made available for research in almost all scientific disciplines. The high brilliance, high coherence an... Read More about In Situ Studies of the Solidification Dynamics of Metal Alloys.

Pulse External Fields Processing of Metal Alloys (2018)
Book Chapter
Mi, J. (2018). Pulse External Fields Processing of Metal Alloys. In D. G. Eskin, & J. Mi (Eds.), Solidification Processing of Metallic Alloys Under External Fields (243-275). Cham: Springer. https://doi.org/10.1007/978-3-319-94842-3_7

© 2018, Springer Nature Switzerland AG. Research and applications of electromagnetic processing of materials began in the 1930s. In those early days, electromagnetic induction was the main technique and it was used for heating or melting metal alloys... Read More about Pulse External Fields Processing of Metal Alloys.

In-situ synchrotron X-ray imaging and tomography studies of the evolution of solidification microstructures under pulse electromagnetic fields (2018)
Thesis
Du, W. (2018). In-situ synchrotron X-ray imaging and tomography studies of the evolution of solidification microstructures under pulse electromagnetic fields. (Thesis). University of Hull. Retrieved from https://hull-repository.worktribe.com/output/4221948

This research studies the dynamic evolution of dendritic structures and intermetallic phases of four Al based alloys during the solidification under pulse electromagnetic fields (PMFs). An advanced PMF solidification device was upgraded, built, commi... Read More about In-situ synchrotron X-ray imaging and tomography studies of the evolution of solidification microstructures under pulse electromagnetic fields.