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High-temperature oxidation corrosion

M. Saremi, Z. Valefi, N. Abaeian, Hot corrosion, high temperature oxidation and thermal shock behavior of nano-agglomerated YSZ-almnina composite coatings. Surf Coat. Tech. 221 (2013)... [Pg.524]

AUS104 AUS204 - Good resistance to high temperature oxidation good corrosion resistance in sulphuric acid Pumps and valves... [Pg.611]

Jost, W. (1937) Diffusion und chemische Reaktion in festen Stoffen, Steinkopff, Dresden Kofstadt, P. (1966) High Temperature Oxidation of Metals, Wiley, New York Kofstadt, P. (1988) High Temperature Corrosion, Elsevier, Amsterdam Mott, N.F. (1940) Trans. Faraday Soc., 36, 472 Pieraggi, B., Rapp, R. A. (1988) Acta Met., 36, 1281... [Pg.182]

It is important to realize that corrosion rates may be controlled by any of several thermodynamic or kinetic properties of the alloy-scale-environment system and not just by surface or interface reactions. The three stages of high temperature oxidation of a metal, shown schematically in Fig. 1, serve as an example (7). The first or transient stage includes initial gas adsorption, two-dimensional oxide nucleation, initial three-dimensional oxide formation and finally, formation of the dominant oxide that will control the oxidation rate in Stage II. Various portions of Stage I have been widely studied using surface analytical techniques, but its duration can be very short and it is usually assumed (not always correctly) that Stage I has little impact on ultimate corrosion properties of the material. [Pg.253]

Pretreatments of Stainless Steels - Crevice Corrosion and High Temperature Oxidation (AES)... [Pg.272]

In the past ten years the number of chemistry-related research problems in the nuclear industry has increased dramatically. Many of these are related to surface or interfacial chemistry. Some applications are reviewed in the areas of waste management, activity transport in coolants, fuel fabrication, component development, reactor safety studies, and fuel reprocessing. Three recent studies in surface analysis are discussed in further detail in this paper. The first concerns the initial corrosion mechanisms of borosilicate glass used in high level waste encapsulation. The second deals with the effects of residual chloride contamination on nuclear reactor contaminants. Finally, some surface studies of the high temperature oxidation of Alloys 600 and 800 are outlined such characterizations are part of the effort to develop more protective surface films for nuclear reactor applications. ... [Pg.345]

The heart of corrosion science has been identified as electrochemical science coupled with the thermodynamic and kinetic values. Other limbs are oxidation and high-temperature oxidation of metals, protective coatings, passivity, inhibitors, microbial-induced corrosion, corrosion fatigue, hydrogen embrittlement and corrosion-resistant alloys. Having identified the limbs of corrosion science, it is instructive to examine how the various aspects came into existence over a period of time. [Pg.4]

Introduction to high temperature oxidation and corrosion. ASM International, Materials Park [iv] Kroger FA (1964) The chemistry of imperfect crystals. North-Holland, Amsterdam... [Pg.248]


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See also in sourсe #XX -- [ Pg.291 ]




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