Recrystallization and Related Annealing Phenomena

Recrystallization and Related Annealing Phenomena

Author: F.J. Humphreys

Publisher: Elsevier

Published: 2012-12-02

Total Pages: 520

ISBN-13: 008098388X

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The annealing of deformed materials is of both technological importance and scientific interest. The phenomena have been most widely studied in metals, although they occur in all crystalline materials such as the natural deformation of rocks and the processing of technical ceramics. Research is mainly driven by the requirements of industry, and where appropriate, the book discusses the extent to which we are able to formulate quantitative, physically-based models which can be applied to metal-forming processes. The subjects treated in this book are all active research areas, and form a major part of at least four regular international conference series. However, there have only been two monographs published in recent times on the subject of recrystallization, the latest nearly 20 years ago. Since that time, considerable advances have been made, both in our understanding of the subject and in the techniques available to the researcher. The book covers recovery, recrystallization and grain growth in depth including specific chapters on ordered materials, two-phase alloys, annealing textures and annealing during and after hot working. Also contained are treatments of the deformed state and the structure and mobility of grain boundaries, technologically important examples and a chapter on computer simulation and modelling. The book provides a scientific treatment of the subject for researchers or students in Materials Science, Metallurgy and related disciplines, who require a more detailed coverage than is found in textbooks on physical metallurgy, and a more coherent treatment than will be found in the many conference proceedings and review articles.


Recrystallization and Grain Growth IV

Recrystallization and Grain Growth IV

Author: E. J. Palmiere

Publisher:

Published: 2012

Total Pages: 0

ISBN-13: 9783037853900

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Volume is indexed by Thomson Reuters CPCI-S (WoS).Recrystallization and grain growth are fundamental aspects of microstructure evolution during the annealing and thermomechanical processing of engineering materials. These static and dynamic phenomena are of major scientific interest and of great importance in a wide range of industrial processes and applications. This collection of peer-reviewed papers brings together the most up-to-date knowledge in this field.


Recrystallization and Grain Growth III

Recrystallization and Grain Growth III

Author: Suk Joong L. Kang

Publisher: Trans Tech Publications Ltd

Published: 2007-10-15

Total Pages: 1544

ISBN-13: 3038131172

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Recrystallization and grain-growth, together with phase transformations, are the fundamental processes of microstructural evolution which occur during the thermomechanical treatment of engineering materials. Volume is indexed by Thomson Reuters CPCI-S (WoS).


Recrystallization and Grain Growth V

Recrystallization and Grain Growth V

Author: Matthew Barnett

Publisher: Trans Tech Publications Ltd

Published: 2013-03-26

Total Pages: 590

ISBN-13: 303826069X

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Selected, peer reviewed papers from the 5th International Conference on Recrystallization and Grain Growth (ReX&GG V), May 5-10, 2013, Sydney, Australia


Grain growth behavior and efficient large scale simulations of recrystallization with the phase-field method

Grain growth behavior and efficient large scale simulations of recrystallization with the phase-field method

Author: Vondrous, Alexander

Publisher: KIT Scientific Publishing

Published: 2014-12-15

Total Pages: 162

ISBN-13: 3731502801

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This book summarizes the found insights of grain growth behavior, of multidimensional decomposition for regular grids to efficiently parallelize computing and how to simulate recrystallization by coupling the finite element method with the phase-field method for microstructure texture analysis. The frame of the book is created by the phase-field method, which is the tool used in this work, to investigate microstructure phenomena.