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Corrosion technology

R. R. M. Johnston, ed.. Corrosion Technology in the Seventies, 12th Annual Conference of the Australiasian Corrosion Association, ParkviUe, Victoria, AustraUa, 1972. [Pg.39]

Edeleanu, C., Corrosion Monitoring for Chemical Plant , Corrosion Technology, 2, 7, July (1955)... [Pg.1150]

Schweitzer, P.A. Encyclopedia of Corrosion Technology. Marcel Dckker. Inc.. New Yortc. NY. 1998. [Pg.446]

A. Jadot, L. Lancus, Escort , Expert Software for Corrosion Technology, PhD Thesis, K.V. Leuven University, Belgium, 1985. [Pg.327]

W. Matthewman and GJ. Evans, Power Station Condensers, Corrosion Technology, 1964, 15-17. [Pg.489]

N.V. Nowlan, Influence of Water Movement on Corrosion, Corrosion Technology, 397-399 (1960). [Pg.489]

It was concluded that nitrate stress corrosion caused the crack in the reactor at Flixborough. The reactor was removed and replaced with a 20 in. pipe that failed. The cracking occurred because cooling water containing nitrite had been sprayed on the reactor (Lees, 1980). Many other types of corrosion can occur with catastrophic consequences. The process designer should be aware of special problems that can result in the process and should obtain specialized help if necessary since corrosion is a specialized and very complicated field. It is impossible for most process designers to keep up with corrosion technology without help. [Pg.107]

Reprinted with permission from Guidelines for the Selection of Marine Materials," 2nd ed., June 1966, Ocean Science and Ocean Engineering Conference, LaQue Center for Corrosion Technology, Inc., Wrightsville Beach, NC.)... [Pg.32]

M.R. Hendrick, S. Shanmugham, and A.T. Hunt, Chrome Conversion Replacement Coatings via CCVD Processing, US Navy and Industry Corrosion Technology Information Exchange, Louisville, Kentucky, 1998. [Pg.101]

Electrochemists study electrons. The presence, absence, and movement of electrons often determine whether a chemical reaction will take place. Electrochemists work with semiconductors, medical sensors, metal plating, and anti-corrosion technology in the automobile, medical, and computer industries and in other fields. [Pg.677]

The electrocatalysis of the oxygen electroreduction reaction has been studied since the early days of electrochemistry and surface science, and since the importance of corrosion technology and fuel cells was realized. In the early 1960s, it was proved that the reaction was not structure sensitive [92] however, the problem of the preparation of clean and atomic ordered single crystal surfaces still remained. [Pg.60]

S. Tsujikawa, Handbook of Corrosion Technology, p. 33, Japan Soc. Corr. Eng., Nikkan Kogyo, Tokyo, Japan (1986). [Pg.587]

Mattson E 1989 Basic Corrosion Technology for Scientists and Engineers (Chichester Ellis Norwood)... [Pg.2734]

Schweitzer P A 1998 Encyclopedia of Corrosion Technology (New York Dekker)... [Pg.2734]

Corrosion technology is a vast subject in its own right and therefore the discussion must be limited. Consideration will be given only to the situation where the heat transfer surface is under attack. The presence of the corrosion products... [Pg.149]

Mattson E (1989) Basic corrosion technology for scientists and engineers. Chater 3. Ellis Horwood Publishers, West Sussex... [Pg.36]

The economic factor is a very important motivation for much of the current research in corrosion. Losses sustained by industry and by governments amount to many billions of dollars annually, approximately 276 billion in the United States, or 3.1% of the Gross Domestic Product (GDP), according to a recent study [1]. It has been estimated that about 25-30% of this total could be avoided if currently available corrosion technology were effectively applied [1]. [Pg.3]

Encyclopedia of Corrosion Technology, Second Edition Edited by Philip A. Schweitzer, PJ3. [Pg.2464]

Fouling is an extremely complex phenomenon. From a fundamental point of view, it may be characterized as a combined momentum, heat, and mass transfer problem. In many instances, chemical kinetics are involved as well as solubility characteristics and corrosion technology. [Pg.116]

Zinc—Corrosion. 2. Zinc alloys—Corrosion. 3. Corrosion and anti-corrosives. 1. Title. II. Series Corrosion technology (New York, N.Y.) 6. [Pg.565]


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See also in sourсe #XX -- [ Pg.3 ]




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