Advances in Corrosion Science and Technology by J. K. Tien, J. M. Davidson (auth.), Mars G. Fontana, Roger

By J. K. Tien, J. M. Davidson (auth.), Mars G. Fontana, Roger W. Staehle (eds.)

This sequence used to be equipped to supply a discussion board for overview papers within the zone of corrosion. the purpose of those studies is to deliver sure components of corrosiou technological know-how and know-how right into a sharp concentration. The volumes of this sequence are released nearly on a every year foundation and every comprises 3 to 5 stories. The articles in each one quantity are chosen in this sort of approach as to be of curiosity either to the corrosion scientists and the corrosion technologists. there's, actually, a selected objective in juxtaposing those pursuits as a result significance of mutual interplay and interdisciplinarity so vital in corrosion reports. it's was hoping that the corrosion scientists during this method may perhaps remain abreast of the actions in corrosion expertise and vice versa. during this sequence the time period "corrosion" is utilized in its very broadest feel. It contains, accordingly, not just the degradation of metals in aqueous en­ vironment but additionally what's more often than not known as "high-temperature oxidation. " extra, the plan is to be much more basic than those subject matters; the sequence will contain all solids and all environments. this day, engineering solids comprise not just metals yet glasses, ionic solids, polymeric solids, and composites of those. Environments of curiosity needs to be prolonged to liquid metals, a large choice of gases, nonaqueous electrolytes, and different non­ aqueous liquids.

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J. A. Goebel and F. S. Pettit, Na 2 S0 4 -Induced Accelerated Oxidation (Hot Corrosion) of Nickel, Met. Trans. 1, 1943-1954 (1970). 83. J. A. Goebel and F. S.

C. Westwood and N. S. , Environment Sensitive Mechanical Behavior, Gordon and Breach, New York (1966). 9. Stress Corrosion Cracking of Metals-A State of the Art, ASTM STP 518, ASTM, Philadelphia (1972). 10. C. H. Wells and C. P. Sullivan, in Fatigue at High Temperature, ASTM STP 459, pp. 59-74, ASTM, Philadelphia (1969). 11. S. Purushothaman and J. K. Tien, A Theory for Creep Crack Growth, Scripta Met. 10, 663-666 (1976). 44 J. K. Tien and J. M. Davidson 12. F. R. Larson and 1. Miller, A Time Temperature Relationship for Rupture and Creep Stresses, Trans.

42-49, ASTM, Philadelphia (1950). 45. P. 'less Steel, Trans. Indian Illst. Met. 20, 213-219 (1967). 46. H. T. McHenry and H. B. Probst, in High Temperature Materials (R. F. Hehemann and G. M. ), pp. 466-485, Wiley, New York (1957). 47. R. H. Atkinson and D. E. Furman, Creep Characteristics of Some Platinum Metals at 1382°F, Trans. AIME-TMS 194, 530-531 (1952). 48. O. C. Shepard and W. Schalliol, in Symposium on Corrosion of Materials at Elevated Temperatures, ASTM STP 108, pp. 34-41, ASTM, Philadelphia (1950).

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