Kovenskii, I.M. and Povetkin, V.V., Elektroliticheskie splavy (Electrolytic Alloys)

Kovenskii, I.M. and Povetkin, V.V., Elektroliticheskie splavy (Electrolytic Alloys) Russian Journal of Applied Chemistry, Vol. 77, No. 7, 2004, p. 1213. Translated from Zhurnal Prikladnoi Khimii, Vol. 77, No. 7, 2004, p. 1228. Original Russian Text Copyright 2004 by Morachevskii. BOOK REVIEWS Kovenskii, I.M. and Povetkin, V.V., Elektroliticheskie splavy (Electrolytic Alloys) Moscow: Internet Inzhiniring, 2003, 288 pp. Electroplated coatings find exceedingly wide use in structure of alloys is formed in the course of electro- various fields of technology. Coatings composed of crystallization. individual metals are the subject of a vast body of Chapter 4 (pp. 137 179) considers the whole set of industrial-technological and reference literature, text- the properties of the alloys: hardness; internal stresses; books, and scientific monographs. A much smaller electrical, magnetic, and optical properties; wear number of publications and lesser evidence are de- resistance; solderability; corrosion resistance; and voted to electrolytic alloys. At the same time, use of catalytic activity. The application fields of electrolytic electrolytic alloys makes it possible to obtain coatings alloys are briefly discussed. Chapter 5 (pp. 180 243) more completely satisfying the necessary operational is devoted to various kinds of thermal treatment of requirements. The monograph by I.M. Kovenskii and electrolytic deposits. Chapter 6 (pp. 244 286) pre- V.V. Povetkin summarizes the presently available sents evidence concerning amorphous alloys: amor- results of investigations of electrolytic alloys, carried phization conditions, structure, thermal stability, and out by the authors and devoted to preparation, proper- properties. ties, thermal treatment, and amorphization of these The monograph contains a total of 281 references, alloys. The primary attention is given by the authors and many of these, to publications by the authors to electrolytic alloys in the form of single-phase solid themselves. A rather positive impression is created by solutions. The book comprises six chapters, each with the section in which the structure of the alloys and its its own bibliographic list. formation are considered (Chapter 3). Chapter 1 is Chapter 1 (pp. 3 19) describes methods for deter- written too concisely, the physical methods of investi- mining the properties of electrolytic coatings. The gation could be described in more detail. There are whole set of techniques for evaluating the mechanical, debatable critical remarks concerning the description physical, and chemical properties and service charac- of the thermodynamic characteristics of alloying proc- teristics is briefly considered. Microscopic and X-ray esses. diffraction analyses, electron spectroscopy, and reson- The monograph is intended for researchers, en- ance methods are described. gineers, and technicians working in the field of depos- Chapter 2 (pp. 20 44) is devoted to thermodynam- ition of coatings with special properties and corrosion ic and kinetic aspects of alloy formation processes. protection of metals; it can also be of use for post- Also considered are the influence exerted by electroly- and undergraduate students specialized in the corre- sis parameters on the chemical composition of alloys sponding branches of chemical technology and metal- and the mechanism by which impurities pass into the lurgy. deposit. Chapter 3 (pp. 45 136), which occupies the central position in the monograph, discusses how the A. G. Morachevskii 1070-4272/04/7707-1213 2004 MAIK Nauka/Interperiodica http://www.deepdyve.com/assets/images/DeepDyve-Logo-lg.png Russian Journal of Applied Chemistry Springer Journals

Kovenskii, I.M. and Povetkin, V.V., Elektroliticheskie splavy (Electrolytic Alloys)

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Publisher
Kluwer Academic Publishers-Plenum Publishers
Copyright
Copyright © 2004 by MAIK “Nauka/Interperiodica”
Subject
Chemistry; Chemistry/Food Science, general
ISSN
1070-4272
eISSN
1608-3296
D.O.I.
10.1023/B:RJAC.0000044181.03364.51
Publisher site
See Article on Publisher Site

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