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Phase-field Models for Simulating Physical Vapor Deposition and Microstructure Evolution of Thin Films

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Release : 2016
Genre : Microstructure
Kind : eBook
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Book Synopsis Phase-field Models for Simulating Physical Vapor Deposition and Microstructure Evolution of Thin Films by : James A. Stewart (Jr)

Download or read book Phase-field Models for Simulating Physical Vapor Deposition and Microstructure Evolution of Thin Films written by James A. Stewart (Jr). This book was released on 2016. Available in PDF, EPUB and Kindle. Book excerpt: The focus of this research is to develop, implement, and utilize phase-field models to study microstructure evolution in thin films during physical vapor deposition (PVD). There are four main goals to this dissertation. First, a phase-field model is developed to simulate PVD of a single-phase polycrystalline material by coupling previous modeling efforts on deposition of single-phase materials and grain evolution in polycrystalline materials. Second, a phase-field model is developed to simulate PVD of a polymorphic material by coupling previous modeling efforts on PVD of a single-phase material, evolution in multiphase materials, and phase nucleation. Third, a novel free energy functional is proposed that incorporates appropriate energetics and dynamics for simultaneous modeling of PVD and grain evolution in single-phase polycrystalline materials. Finally, these phase-field models are implemented into custom simulation codes and utilized to illustrate these models' capabilities in capturing PVD thin film growth, grain and grain boundary (GB) evolution, phase evolution and nucleation, and temperature evolution. In general, these simulations show: grain coarsening through grain rotation and GB migration such that grains tend to align with the thin film surface features and GBs migrate to locations between these features so that each surface feature has a distinct grain and orientation; the incident vapor flux rate controls the density of the thin film and the formation of surface and subsurface features; the substrate phase distribution initially acts as a template for the growing microstructure until the thin film becomes sufficiently thick; latent heat released during PVD increases the surface temperature of the thin film creating a temperature gradient within the thin film influencing phase evolution and nucleation; and temperature distributions lead to regions within the thin film that allow for multiple phases to be stable and coexist. Further, this work shows the sequential approach for coupling phase-field models, described in goals (i) and (ii) is sufficient to capture first-order features of the growth process, such as the stagnation of GBs at the valleys of the surface roughness, but to capture higher-order features, such as orientation gradients within columnar grains, the single free energy functional approach developed in goal (iii) is necessary.

Evolution of Thin Film Morphology

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Release : 2008-01-29
Genre : Technology & Engineering
Kind : eBook
Book Rating : 092/5 ( reviews)

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Book Synopsis Evolution of Thin Film Morphology by : Matthew Pelliccione

Download or read book Evolution of Thin Film Morphology written by Matthew Pelliccione. This book was released on 2008-01-29. Available in PDF, EPUB and Kindle. Book excerpt: The focus of this book is on modeling and simulations used in research on the morphological evolution during film growth. The authors emphasize the detailed mathematical formulation of the problem. The book will enable readers themselves to set up a computational program to investigate specific topics of interest in thin film deposition. It will benefit those working in any discipline that requires an understanding of thin film growth processes.

Phase field method and integrated computing materials engineering

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Release : 2023-04-19
Genre : Technology & Engineering
Kind : eBook
Book Rating : 374/5 ( reviews)

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Book Synopsis Phase field method and integrated computing materials engineering by : Yu-Hong Zhao

Download or read book Phase field method and integrated computing materials engineering written by Yu-Hong Zhao. This book was released on 2023-04-19. Available in PDF, EPUB and Kindle. Book excerpt:

Experimental Observation and Computer Simulation of the Microstructure of Vapor Deposited Thin Films

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Release : 1985
Genre : Computer simulation
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Book Synopsis Experimental Observation and Computer Simulation of the Microstructure of Vapor Deposited Thin Films by : KH. Guenther

Download or read book Experimental Observation and Computer Simulation of the Microstructure of Vapor Deposited Thin Films written by KH. Guenther. This book was released on 1985. Available in PDF, EPUB and Kindle. Book excerpt: The microstructure of thin films applied by conventional physical vapor deposition for use as optical coatings is columnar for most of the materials commonly used. This has been established for about a decade through numerous experimental observations employing microfractographical replication for use with high resolution transmission electron microscopes. Scanning electron microscopes are more useful investigating coating defects, the most remarkable of these defects being known as nodules. From fundamental considerations of nucleation and growth of thin films, the origin of both columns and nodules, and the dependence of their appearance on the deposition conditions, are discussed in some detail. A simple 2-D simulation model assuming very limited surface mobility of adatoms or admolecules shows striking similarities to peculiar properties of both columnar and nodular growth seen in actual investigations. Conclusions are drawn as to how the two types of microstructures described influence general thin film properties, but in particular as to how they influence possible laser damage mechanisms.

Phase-Field Methods in Materials Science and Engineering

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Release : 2011-07-26
Genre : Computers
Kind : eBook
Book Rating : 379/5 ( reviews)

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Book Synopsis Phase-Field Methods in Materials Science and Engineering by : Nikolas Provatas

Download or read book Phase-Field Methods in Materials Science and Engineering written by Nikolas Provatas. This book was released on 2011-07-26. Available in PDF, EPUB and Kindle. Book excerpt: This comprehensive and self-contained, one-stop source discusses phase-field methodology in a fundamental way, explaining advanced numerical techniques for solving phase-field and related continuum-field models. It also presents numerical techniques used to simulate various phenomena in a detailed, step-by-step way, such that readers can carry out their own code developments. Features many examples of how the methods explained can be used in materials science and engineering applications.

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