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Books by Keyword: ODF
Books
Edited by:
Asim Tewari, Satyam Suwas, Dinesh Srivastava, Indradev Samajdar and Arunansu Haldar
Online since: December 2011
Description: The development of specific textures in materials occurs either naturally or by synthesis and processing using various methods. The presence of textures in materials manifests itself in the form of anisotropic properties; the understanding of which is indispensable to precise engineering design. In addition to conventional applications in structural materials, texture control has come to be practised in the form of functional materials. This collection is an edited version of papers presented at the sixteenth international conference on the textures of materials (ICOTOM 16), held at the Indian Institute of Technology in Mumbai, India on December 12-17th, 2011.
The proceedings are broadly divided into six sections; the first being a collection of keynote lectures, followed by papers classified under Deformation, Deformation and Annealing, Techniques, Annealing and Materials.
Volume is indexed by Thomson Reuters CPCI-S (WoS).
The proceedings are broadly divided into six sections; the first being a collection of keynote lectures, followed by papers classified under Deformation, Deformation and Annealing, Techniques, Annealing and Materials.
Volume is indexed by Thomson Reuters CPCI-S (WoS).
Edited by:
R.A. Schwarzer
Online since: February 1998
Description: Volume is indexed by Thomson Reuters CPCI-S (WoS).
Preferred crystal orientations and their statistical distribution – the polycrystalline 'texture' – are of major scientific interest and are of great importance in a wide range of industrial applications. The aim of this book is to monitor the rapid progress made in this field during the last few years.
Texture analysis has expanded beyond its traditional domain of cubic metals and alloys to encompass virtually all crystalline, and even partially crystalline, materials - including natural as well as man-made ones such as geological samples, minerals, ceramics, polymers, composites, low-symmetry materials, thin films and layers. The main objectives are to obtain a better understanding and control of the properties of anisotropic materials (as related to bulk, grain or grain boundary structures), recrystallization and grain growth, deformation textures, and correlations between internal stress, composition and texture.
Preferred crystal orientations and their statistical distribution – the polycrystalline 'texture' – are of major scientific interest and are of great importance in a wide range of industrial applications. The aim of this book is to monitor the rapid progress made in this field during the last few years.
Texture analysis has expanded beyond its traditional domain of cubic metals and alloys to encompass virtually all crystalline, and even partially crystalline, materials - including natural as well as man-made ones such as geological samples, minerals, ceramics, polymers, composites, low-symmetry materials, thin films and layers. The main objectives are to obtain a better understanding and control of the properties of anisotropic materials (as related to bulk, grain or grain boundary structures), recrystallization and grain growth, deformation textures, and correlations between internal stress, composition and texture.
Edited by:
H.J. Bunge
Online since: May 1994
Description: This book reflects quite clearly the expansion of the field of "textures" as well as the rapid growth of the texture community. During the recent years, the scope of this field has been expanded to virtually all crystalline and even partly crystalline materials including intermetallic compounds, ceramics, polymers as well as multiphase composites and even fullerenes.
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