Diffusion is an omnipresent, but the important phenomenon in a wide variety of disciplines and applications in physical, chemical, biological, geologic, materials science and engineering processes. While diffusion-controlled phase transformations involve in a variety of materials processes, ranging from solidification to different solid-state transformations. Modeling of diffusion and diffusion-controlled phase transformations in alloys has been of long-standing fundamental interests because advance modeling can help to improve the understanding of complex materials processes. Moreover, as the recent boost in Integrated Computational Materials Engineering (ICME) and Materials Genome Initiative (MGI) projects, additional emphasis on the necessity and urgency of the quantitative modeling of diffusion and diffusion-controlled phase transformations in alloys has been laying, which can provide useful information for accelerating the novel alloys design. Consequently, the purpose of this book, entitled "Modeling of Diffusion and Diffusion-Controlled Phase Transformations in Alloys" is to provide a collection of the commonly used computational approaches for modeling diffusion and diffusion-controlled phase transformations, as well as their current status, recent developments, future trends and applications in different alloys.
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Modeling of Diffusion and Diffusion-Controlled Phase Transformations in Alloys
Special topic volume with invited peer reviewed papers only
PrefaceKinetic Simulations of Diffusion-Controlled Phase Transformations in Cu-Based AlloysPhenomenological Investigations on Diffusion Kinetics in Multicomponent Metallic MeltsMolecular Dynamics Simulations of Atoms Diffusion in SolidReviews on Modeling of Diffusion-Induced Mass Transportation in Functionally Graded Cemented CarbidesThe Diffusion and Solid-Liquid Phase Transformation in Directional Solidification of Alloy: A Quantitative Phase Field Characterization and Real-Time ObservationTilted Dendritic Growth Dynamics and Dendrite to Degenerate Seaweed Transition in Directional Solidification: Insights from Phase-Field SimulationsGinzburg-Landau Modeling for Martensitic Transformation Coupled with Composition Redistribution
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Produktdetaljer
ISBN
9783035713084
Publisert
2018-03-20
Utgiver
Vendor
Trans Tech Publications Ltd
Vekt
320 gr
Høyde
240 mm
Bredde
170 mm
Dybde
10 mm
Aldersnivå
P, 06
Språk
Product language
Engelsk
Format
Product format
Heftet
Antall sider
192
Redaktør