管理提醒: 本帖被 lou1984 执行提前操作(2010-04-14)
by Martin Rhodes
Paperback: 472 pages
Publisher: Wiley; 2 edition (May 9, 2008)
Language: English
IN-10: 0470014288
IN-13: 978-0470014288
PDF,14.5Mb
Product Description
This textbook is a comprehensive introduction to the many concepts of this broad subject. Case studies are provided alongside real-life industrial applications illustrating the techniques and theory. This book will be essential reading for students of chemical engineering on particle technology courses. It will also be valuable supplementary reading for students of civil engineering, applied chemistry, physics, pharmaceutics, metallurgy and materials engineering.
For the second edition the original author, Martin Rhodes, has joined forces with other contributors. The text has been completely revised with new chapters added.
From the Back Cover
In general terms, microstructural characterization is achieved by allowing some form of probe to interact with a carefully prepared specimen sample. The most commonly used probes are visible light, X-ray radiation and high-energy electron beams. These three types of probe form the basis for optical microscopy, X-ray diffraction and electron microscopy.
The book is an introduction to the expertise involved in assessing the microstructure of engineering materials and to the experimental methods used for this purpose. In the same way as the first edition, Microstructural Characterization of Materials – 2nd edition will explore the methodology of materials characterization under the three headings of crystal structure, microstructural morphology, and microysis. The principal methods of characterization including diffraction ysis, optical microscopy, electron microscopy, and chemical microytical techniques are treated in full. An additional chapter has been added to the new edition on surface probe microscopy and there are new sections on digital recording, processing, and ysis. The second edition has been updated, and has revised and expanded problems from the first edition to aid learning.
The book will appeal to senior undergraduate and graduate students of material sciences, materials engineering and materials chemistry. In addition, more advanced researchers will find the book useful as a general reference source.
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