Textures Of Materials Proceedings
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Author | : H.-J. Bunge |
Publisher | : Elsevier |
Total Pages | : 614 |
Release | : 2013-09-03 |
Genre | : Technology & Engineering |
ISBN | : 1483278395 |
Texture Analysis in Materials Science Mathematical Methods focuses on the methodologies, processes, techniques, and mathematical aids in the orientation distribution of crystallites. The manuscript first offers information on the orientation of individual crystallites and orientation distributions. Topics include properties and representations of rotations, orientation distance, and ambiguity of rotation as a consequence of crystal and specimen symmetry. The book also takes a look at expansion of orientation distribution functions in series of generalized spherical harmonics, fiber textures, and methods not based on the series expansion. The publication reviews special distribution functions, texture transformation, and system of programs for the texture analysis of sheets of cubic materials. The text also ponders on the estimation of errors, texture analysis, and physical properties of polycrystalline materials. Topics include comparison of experimental and recalculated pole figures; indetermination error for incomplete pole figures; and determination of the texture coefficients from anisotropie polycrystal properties. The manuscript is a dependable reference for readers interested in the use of mathematical aids in the orientation distribution of crystallites.
Author | : Olaf Engler |
Publisher | : CRC Press |
Total Pages | : 581 |
Release | : 2024-02-27 |
Genre | : Science |
ISBN | : 100099791X |
Reflecting emerging methods and the evolution of the field, Introduction to Texture Analysis: Macrotexture, Microtexture, and Orientation Mapping keeps mathematics to a minimum in covering both traditional macrotexture analysis and more advanced electron-microscopy-based microtexture analysis. The authors integrate the two techniques and address the subsequent need for a more detailed explanation of philosophy, practice, and analysis associated with texture analysis. The book illustrates approaches to orientation measurement and interpretation and elucidates the fundamental principles on which measurements are based. Thoroughly updated, this Third Edition of a best-seller is a rare introductory-level guide to texture analysis. Discusses terminology associated with orientations, texture, and their representation, as well as the diffraction of radiation, a phenomenon that is the basis for almost all texture analysis Covers data acquisition, as well as representation and evaluation related to the well-established methods of macrotexture analysis Updated to include experimental details of the latest transmission or scanning electron microscope-based techniques for microstructure analysis, including electron backscatter diffraction (EBSD) Describes how microtexture data are evaluated and represented and emphasizes the advances in orientation microscopy and mapping, and advanced issues concerning crystallographic aspects of interfaces and connectivity Offers new and innovative grain boundary descriptions and examples This book is an ideal tool to help readers in the materials sciences develop a working understanding of the practice and applications of texture.
Author | : G. Gottstein |
Publisher | : Springer |
Total Pages | : 580 |
Release | : 1978 |
Genre | : Science |
ISBN | : |
Author | : H.J. Bunge |
Publisher | : Trans Tech Publications Ltd |
Total Pages | : 2089 |
Release | : 1994-05-10 |
Genre | : Technology & Engineering |
ISBN | : 3035704880 |
Proceedings of the International Conference on Textures of Materials (ICOTOM-10), Clausthal, Germany, September 1993
Author | : Dong Nyung Lee |
Publisher | : Trans Tech Publications Ltd |
Total Pages | : 1829 |
Release | : 2002-08-20 |
Genre | : Technology & Engineering |
ISBN | : 3035705747 |
Proceedings of the 13th Int. Conference on Textures of Materials (ICOTOM 13), Seoul, Korea, 26-30 August 2002
Author | : A. D. Rollett |
Publisher | : John Wiley & Sons |
Total Pages | : 850 |
Release | : 2008-12-05 |
Genre | : Technology & Engineering |
ISBN | : 0470444185 |
This volume contains papers presented at The 15th International Conference on the Texture of Materials from June 1-5th, 2008 in Pittsburgh, PA. Chapters include: Friction Stir Welding and Processing Texture and Anisotropy in Steels Effects of Magnetic Fields Hexagonal Metals Texture in Materials Design View information on Applications of Texture Analysis: Ceramic Transactions, Volume 201.
Author | : Paul van Houtte |
Publisher | : |
Total Pages | : 884 |
Release | : 2005 |
Genre | : Materials |
ISBN | : |
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. The concept of texture is therefore a very important and almost unavoidable aspect of material exploitation, and the present authoritative coverage of the topic should be essential reading for anybody working in any materials-related field.
Author | : |
Publisher | : Academic Press |
Total Pages | : 457 |
Release | : 1997-11-11 |
Genre | : Technology & Engineering |
ISBN | : 0080564127 |
This highly acclaimed series provides survey articles on the present state and future direction of research in important branches of applied mechanics
Author | : Satyam Suwas |
Publisher | : Springer |
Total Pages | : 0 |
Release | : 2016-09-10 |
Genre | : Technology & Engineering |
ISBN | : 9781447168614 |
Providing a comprehensive and invaluable overview of the basics of crystallographic textures and their industrial applications, this book covers a broad range of both structural and functional materials. It introduces the existing methods of representation in an accessible manner and presents a thorough overview of existing knowledge on texture of metallic materials. Texture analysis has widespread use in many industries, and provides crucial input towards the development of new materials and products. There has been rapid growth in the science and art of texture analysis in the last few decades. Other topics addressed within this book include recent research on texture in thin films and non-metals, and the dependence of material properties on texture, and texture control in some engineering materials. This book constitutes an invaluable reference text for researchers and professionals working on texture analysis in metallurgy, materials science and engineering, physics and geology. By using content selectively, it is also highly accessible to undergraduate students.
Author | : W. Gambin |
Publisher | : Springer Science & Business Media |
Total Pages | : 254 |
Release | : 2013-04-17 |
Genre | : Science |
ISBN | : 9401597634 |
The classical, phenomenological theory of plastically anisotropic materials has passed a long way: from the work of von Mises presented in 1928, and the HilI formulation given in 1948, to the latest papers on large elastic-plastic deformations of anisotropic metal sheets. A characteristic feature of this approach is a linear flow rule and a quadratic yield criterion. Mathematical simplicity of the theory is a reason of its numerous applications to the analysis of engineering structures during the onset of plastic deformations. However, such an approach is not sufficient for description of the metal forming processes, when a metal element undergoes very large plastic strains. If we take an initially isotropic piece of metal, it becomes plastically anisotropic during the forming process, and the induced anisotropy progressively increases. This fact strongly determines directions of plastic flow, and it leads to an unexpected strain localization in sheet elements. To explain the above, it is necessary to take into account a polycrystalline structure of the metal, plastic slips on slip systems of grains, crystallographic lattice rotations, and at last, a formation of textures and their evolution during the whole deformation process. In short, it is necessary to introduce the plasticity of crystals and polycrystals. The polycrystal analysis shows that, when the advanced plastic strains take place, some privileged crystallographic directions, called a crystallographic texture, occur in the material. The texture formation and evolution are a primary reason for the induced plastic anisotropy in pure metals.