Properties and Applications of Nanocrystalline Alloys from Amorphous Precursors

Properties and Applications of Nanocrystalline Alloys from Amorphous Precursors
Author :
Publisher : Springer Science & Business Media
Total Pages : 474
Release :
ISBN-10 : 1402029640
ISBN-13 : 9781402029646
Rating : 4/5 (646 Downloads)

Book Synopsis Properties and Applications of Nanocrystalline Alloys from Amorphous Precursors by : Bogdan Idzikowski

Download or read book Properties and Applications of Nanocrystalline Alloys from Amorphous Precursors written by Bogdan Idzikowski and published by Springer Science & Business Media. This book was released on 2005-03-10 with total page 474 pages. Available in PDF, EPUB and Kindle. Book excerpt: Metallic (magnetic and non-magnetic) nanocrystalline materials have been known for over ten years but only recent developments in the research into those complex alloys and their metastable amorphous precursors have created a need to summarize the most important accomplishments in the field. This book is a collection of articles on various aspects of metallic nanocrystalline materials, and an attempt to address this above need. The main focus of the papers is put on the new issues that emerge in the studies of nanocrystalline materials, and, in particular, on (i) new compositions of the alloys, (ii) properties of conventional nanocrystalline materials, (iii) modeling and simulations, (iv) preparation methods, (v) experimental techniques of measurements, and (vi) different modern applications. Interesting phenomena of the physics of nanocrystalline materials are a consequence of the effects induced by the nanocrystalline structure. They include interface physics, the influence of the grain boundaries, the averaging of magnetic anisotropy by exchange interactions, the decrease in exchange length, and the existence of a minimum two-phase structure at the atomic scale. Attention is also paid to the special character of the local atomic ordering and to the corresponding interatomic bonding as well as to anomalies and particularities of electron density distributions, and to the formation of metastable, nanocrystalline (or quasi-crystalline) phases built from exceptionally small grains with special properties. Another important focus of attention are new classes of materials which are not based on new compositions, but rather on the original and special crystalline structure in the nanoscale.


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