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Diffusion in Solid Metals and Alloys / Diffusion in festen Metallen und Legierun

本主题由 樱桃果果 于 2008-4-30 00:27 下沉

Diffusion in Solid Metals and Alloys / Diffusion in festen Metallen und Legierun

Diffusion in Solid Metals and Alloys / Diffusion in festen Metallen und Legierungen (Landolt-Bornstein Numerical Data %26amp; Functional Relationships in Science ... - Group III: Crystal %26amp; Solid State Physics)

Diffusion in Solid Metals and Alloys / Diffusion in festen Metallen und Legierungen (Landolt-Bornstein Numerical Data %26amp; Functional Relationships in Science ... - Group III: Crystal %26amp; Solid State Physics)
By H. Bakker, H.P. Bonzel, C.M. Bruff, M.A. Dayananda, W. Gust, J. Horvath, I. Kaur, G.V. Kidson, A.D. LeClaire, H. Mehrer, Gaeme E. Murch, G. Neumann, N. Stolica, N.A. Stolwijk

Publisher: Springer
Number Of Pages: 747
Publication Date: 1990-12-21
ISBN-10 / ASIN: 3540508864
ISBN-13 / EAN: 9783540508861
Binding: Hardcover

The interest in diffusion in solids is as old as physical metallurgy or materials science. It stems from application-oriented as well as from scientific reasons. First, a knowledge of diffusion is basic to an understanding of many microstructural changes that occur in solid matter at elevated temperatures. For processes like phase transformations, precipitation or dissolution of a second phase, recrystallization, oxidation, creep, annealing etc., solid state diffusion is fundamental and ubiquitous. The second reason for studying diffusion is to learn more about how atoms move in solid matter. Volume III/26 presents for the first time a comprehensive collection of diffusion data for solid metals and alloys. The critical compilation of data has resulted in tables and series of diagrams which show in 13 chapters data for the following properties: Self- and impurity-diffusion in metallic elements, self-diffusion in homogeneous binary alloys, chemical diffusion in binary and ternary alloys, diffusion in amorphous alloys, diffusion of interstitial foreign atoms like hydrogen, carbon, oxygen and nitrogen in metallic elements, mass and pressure dependence of diffusion, diffusion along dislocations, grain and interphase boundary diffusion, and diffusion on surfaces.

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