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E-raamat: Measurement of Grain Boundary Geometry

(University of Wales, Swansea, UK)
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For researchers in materials science and engineering, physics, chemistry, and geology, a reference and handbook on all aspects of using electron optics techniques to study grain boundaries in metals and alloys, and by extension, in ceramics, semiconductors, and minerals. Outlines the theoretical framework; details each step from collecting data to presenting findings; and reviews the advantages and disadvantages of the options available. Also provides a rationale and methodology for handling the geometric data on a large, statistically significant scale. Annotation copyright Book News, Inc. Portland, Or.

Studying material properties from their geometrical measurements, The Measurement of Grain Boundary Geometry provides a framework for a specialized application of electron microscopy for metals and alloys and, by extension, for ceramics, minerals, and semiconductors. The book presents an overview of the developments in the theory of grain boundary geometry and its practical applications in material engineering. It also covers the tunneling electron microscope (TEM), experimental aspects of data collection, data processing, and examples from actual investigations. Each step of the analysis process is clearly described, from data collection through processing, analysis, representation, and display to applications.

As the selection of material for particular engineering properties becomes increasingly important in keeping costs down, methods for evaluating material properties also become more relevant. One such method examines the geometry of grain boundaries, which reveals much about the properties of the material.

Studying material properties from their geometrical measurements, The Measurement of Grain Boundary Geometry provides a framework for a specialized application of electron microscopy for metals and alloys and, by extension, for ceramics, minerals, and semiconductors. The book presents an overview of the developments in the theory of grain boundary geometry and its practical applications in material engineering. It also covers the tunneling electron microscope (TEM), experimental aspects of data collection, data processing, and examples from actual investigations. Each step of the analysis process is clearly described, from data collection through processing, analysis, representation, and display to applications. The book also includes a glossary of terms.

Exploring both the experimental and analytical aspects of the subject, this practical reference guide is essential for researchers and students involved in material properties, whether in physics, materials science, metallurgy, or physical chemistry.

Arvustused

"could not have been prepared at a more appropriate time. will definitely serve as a major contributor to the industrial implementation of interface engineering by serving as a training text for undergraduate and graduate students and as an extremely useful reference text for industry-based scientists and engineers." -Dr. G. Palumbo, Research Division, Ontario Hydro

"The huge Table 7.1, which sets out this information in a systematic way, would alone justify purchase of this book! a most useful practical textbook." -R.W. Cahn, Contemporary Physics, Vol. 35, No. 4, 1994, pp. 306-307

" deals with the technical difficulty of describing grain boundary geometry as well as methods of measuring it in considerable detail. very readable. " -Professor B. Cantor, Series Editor

Foreword. Glossary. Introduction. Theoretical aspects of grain boundary geometry I: general boundaries. Theoretical aspects of grain boundary geometry II: periodic geometries. Experimental methods. Data interpretation and processing. Data representation and display. Experimental investigations to measure grain boundary geometry. Appendix. References. Index.
Randle\, Valerie