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Books by Keyword: Dynamic Recrystallization (DRX)
Books
Edited by:
Matthew Barnett
Online since: March 2013
Description: Volume is indexed by Thomson Reuters CPCI-S (WoS).
Recrystallization and grain growth are mechanisms that alter the microstructure without necessarily altering the phase. They are typically driven by high internal elastic and surface energies though sometimes other volumetric energy terms appear. The topic is important to materials engineers and scientists and geologists alike. The former typically aim to exert control over the phenomena for technological and economic benefit while the latter often seek in these mechanisms the answers to questions regarding events long gone. This collection of peer-reviewed papers brings together the most up-to-date knowledge in this field.
Recrystallization and grain growth are mechanisms that alter the microstructure without necessarily altering the phase. They are typically driven by high internal elastic and surface energies though sometimes other volumetric energy terms appear. The topic is important to materials engineers and scientists and geologists alike. The former typically aim to exert control over the phenomena for technological and economic benefit while the latter often seek in these mechanisms the answers to questions regarding events long gone. This collection of peer-reviewed papers brings together the most up-to-date knowledge in this field.
Edited by:
E.J. Palmiere and B.P. Wynne
Online since: April 2012
Description: 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 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.
Edited by:
T. Chandra, M. Ionescu and D. Mantovani
Online since: November 2011
Description: This supplemental volume presents additional proceedings of the 7th International Conference on Processing and Manufacturing of Advanced Materials - THERMEC’2011 - which was held during the 1-5 August 2011 in Quebec City, Canada. The conference brought together researchers and engineers/technologists working on aspects of the processing, fabrication, evaluation and applications of ferrous and non ferrous materials including biomaterials, and smart/intelligent materials, and the contents reflect the latest progress made in these fields.
Edited by:
Jing Tao Wang, Dr. Roberto B. Figueiredo and Terence Langdon
Online since: December 2010
Description: Volume is indexed by Thomson Reuters CPCI-S (WoS).
The 200 peer-reviewed articles in this “Nanomaterials by Severe Plastic Deformation” special collection are a convincing demonstration of the relevance of bulk ultrafine grained and nanostructured materials, produced by severe plastic deformation, to a wide range of researchers and engineers., The total number of articles in this edition, larger than that in the 2008 edition, shows that this community is, in fact, growing. The coverage includes all aspects of NanoSPD: Principles of SPD Processing, Microstructural Evolution and Grain Refinement, Mechanical Properties of SPD Materials, Functional and other Properties of SPD Materials, Innovation and Applications.
The 200 peer-reviewed articles in this “Nanomaterials by Severe Plastic Deformation” special collection are a convincing demonstration of the relevance of bulk ultrafine grained and nanostructured materials, produced by severe plastic deformation, to a wide range of researchers and engineers., The total number of articles in this edition, larger than that in the 2008 edition, shows that this community is, in fact, growing. The coverage includes all aspects of NanoSPD: Principles of SPD Processing, Microstructural Evolution and Grain Refinement, Mechanical Properties of SPD Materials, Functional and other Properties of SPD Materials, Innovation and Applications.
Edited by:
Prof. Si Hai Jiao, Prof. Zheng Yi Jiang and Jinglong Bu
Online since: October 2010
Description: This two-volume set contains a collection of 381 peer-reviewed papers. Its aim is to bring together the latest advances in, and applications of, alloy design, process development, component engineering, phase-composition prediction, high-temperature oxidation, wrought alloys, lifetime estimation and materials behavior, cobalt-based alloys, nickel-iron alloys, joining, alternative materials and powder-metallurgy and also to consider the future of superalloys.
Edited by:
T. Chandra, N. Wanderka, W. Reimers , M. Ionescu
Online since: January 2010
Description: These are the proceedings of the 6th International Conference on Processing and Manufacturing of Advanced Materials – THERMEC’2009; held during the period, August 25-29, 2006, in Berlin , Germany under the co-sponsorship of The Minerals, Metals & Materials Society (TMS) ,USA.
This work reflects the current ensemble knowledge of world-wide researchers and engineers/technologists working on various aspects of the processing, fabrication, structure/property evaluation and applications of both ferrous and non-ferrous materials; including biomaterials and smart/intelligent materials.
This work reflects the current ensemble knowledge of world-wide researchers and engineers/technologists working on various aspects of the processing, fabrication, structure/property evaluation and applications of both ferrous and non-ferrous materials; including biomaterials and smart/intelligent materials.
Edited by:
S.-J.L. Kang, M.Y. Huh, N.M. Hwang, H. Homma, K. Ushioda and Y. Ikuhara
Online since: October 2007
Description: 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).
Volume is indexed by Thomson Reuters CPCI-S (WoS).
Edited by:
Young Won Chang, Nack J. Kim and Chong Soo Lee
Online since: October 2007
Description: Volume is indexed by Thomson Reuters CPCI-S (WoS).
This work comprises edited versions of papers presented at the 6th Pacific Rim International Conference on Advanced Materials and Processing (PRICM-6), held on Jeju Island, Korea between the 5th and 9th November, 2007.
This work comprises edited versions of papers presented at the 6th Pacific Rim International Conference on Advanced Materials and Processing (PRICM-6), held on Jeju Island, Korea between the 5th and 9th November, 2007.
Edited by:
P. B. Prangnell and P. S. Bate
Online since: July 2007
Description: Volume is indexed by Thomson Reuters CPCI-S (WoS).
Deformation and annealing phenomena are of great technical significance to the processing and application of materials at the industrial scale. This edited collection of peer-reviewed papers was designed as a one-off vehicle for reviewing the current understanding of the basic mechanisms and processes that control deformation and annealing in various materials, together with their modelling and simulation. Another aim was to facilitate discussion of the failings of established theories, to explore new ideas, and to identify avenues where future research is required. The present papers apply these concepts to a wide range of materials and applications; from conventional steels and light alloys to nanocrystalline gold wires and geological samples.
Deformation and annealing phenomena are of great technical significance to the processing and application of materials at the industrial scale. This edited collection of peer-reviewed papers was designed as a one-off vehicle for reviewing the current understanding of the basic mechanisms and processes that control deformation and annealing in various materials, together with their modelling and simulation. Another aim was to facilitate discussion of the failings of established theories, to explore new ideas, and to identify avenues where future research is required. The present papers apply these concepts to a wide range of materials and applications; from conventional steels and light alloys to nanocrystalline gold wires and geological samples.
Edited by:
Paul Van Houtte and Leo Kestens
Online since: September 2005
Description: To the materials science community, Texture is an important property which describes the relative orientations of the various material elements which constitute the microstructure. These elements are usually the crystalline grains; each with a different orientation of its crystal lattice. However, morphological textures, such as the arrangement of fibers in a composite material, also have to be considered. In rare cases, the texture is random; with all possible orientations being equally represented in the material. But, usually, processing of the material has caused the texture to become non-random; with a consequent anisotropy of the material properties. Thus, not only metallurgists and materials scientists take an interest in textures, but also physicists, mathematicians, geologists, mechanical engineers and others.