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Titlebook: Solidification Processing of Metallic Alloys Under External Fields; Dmitry G. Eskin,Jiawei Mi Book 2018 Springer Nature Switzerland AG 201

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Thermal Melt Processing of Metallic Alloys,sing results, though the industrial implementation is limited due to the required high energy for melt heating and holding. The physical mechanisms behind this technology can be divided into two major groups: (1) achieving homogeneous metallic melt with the resultant high undercooling upon solidific
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Book 2018 world present comprehensive and critical reviews on state-of-the-art research and discuss possible future directions. Major physical fields, including electromagnetic, electric, acoustic, and thermal, are considered. In addition, the most advanced synchrotron X-ray based real-time and in-situ studi
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In Situ Studies of the Solidification Dynamics of Metal Alloys,techniques and the future challenges in this fast advancing research field. Although the knowledge, techniques, and practice described in Chap. . are generally in the context of solidification processes, they are applicable to many other materials syntheses and manufacturing processes. Readers are r
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Magnetohydrodynamics Processing and Modeling,ess the coupled electric and magnetic fields, often in a dynamic fashion. In this chapter, we divide applications in terms of applied current type, i.e. DC (aluminum electrolysis, vacuum arc remelting) or AC (EM levitation, induction crucibles, PV silicon kerf recycling and the contactless ultrasoni
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Thermal Melt Processing of Metallic Alloys,fication microstructures are given as well. After that we consider some practical implications of the changes in insoluble impurities with temperature on the microstructure formed during solidification in some metallic alloys.
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Dmitry G. Eskin molecules, interaction between precursors or their related species and surfactants, additives, and physical techniques. As to mesoporous siliceous materials, one can achieve mesoporous structures with various morphologies such as fibers, films, monoliths, spheres, vesicles, and “single crystals,” t
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