By Augustus M. Filbert, Michael L. Hair (auth.), Mars G. Fontana, Roger W. Staehle (eds.)
This sequence was once equipped to supply a discussion board for assessment papers within the quarter of corrosion. the purpose of those experiences is to deliver yes parts of corrosion technology 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 experiences. The articles in every one quantity are chosen in one of these manner as to be of curiosity either to the corrosion scientists and the corrosion technologists. there's, in truth, a selected goal in juxtaposing those pursuits as a result of the value of mutual interplay and interdisciplinarity so vital in corrosion stories. it's was hoping that the corrosion scientists during this manner 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 experience. It comprises, as a result, not just the degradation of metals in aqueous en vironment but in addition what's in general often called "high-temperature oxidation. " extra, the plan is to be much more normal than those themes; the sequence will comprise all solids and all environments. this day, engineering solids contain not just metals yet glasses, ionic solids, polymeric solids, and composites of those. Environments of curiosity has to be prolonged to liquid metals, a large choice of gases, nonaqueous electrolytes, and different non aqueous liquids.
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Additional resources for Advances in Corrosion Science and Technology: Volume 5
Isard, J. Soc. Glass Technol. 42, 2271 (1949). 72. E. L. Mochel and M. E. Nordberg, Belgian Patent 618,737 (1962). 73. S. D. Stookey, J. S. Olcott, H. M. Garfinkel, and D. L. Rothermel, Tech. Papers Intern. Congr. C. (1962), p. 411. 74. H. M. Garfinkel, D. L. Rothermel, and S. D. Stookey, Tech. Papers Intern. Congr. Glass. C. (1962), p. 404. 75. M. E. Nordberg, E. L. Mochel, H. M. Garfinkel, and J. S. Olcott, J. Am. Ceram. Soc. 47(5),215 (1964). 76. M. E. Nordberg, J. Am. Ceram. Soc. 27, 299 (1944).
5. It can be seen from Fig. 23 that carbonates and phosphates shift the pH of maximum attack rate. The effect of the chelating agent EDTA is to remove aluminum, magnesium, and calcium ions in the form of soluble complexes, and in so doing to Augustus M. Filbert and Michael l. oo~o 60 80 100 120 140 160 180 200 TEMPERATURE (Oe) Fig. 20. Solubility of glasses in various alkali solutions and in distilled water. 9% KOH: (D) in 5~o Na 2 CO,: (E) in distilled water. Alkali-resisting glass: (F) in 5% NaOH.
Hair, in Clean Surfaces (G. ), Dekker, New York (1970). 52. E. B. Shand, Glass Engineering Handbook, McGraw-Hili, New York (1958), p. 94. 53. S. , Defense Documents Center Document AD 641-500 (1966). 54. M. L. Hair,lnfrared Spectroscopy in Surface Chemistry, Marcel Dekker, New York (1967). 55. H. L. MacDonell and D. L. Eaton, Anal. Chern. 40,1453 (1968). 56. S. Nagaeda, "Method of Testing the Chemical Durability of Glass for Acidic Solution," J. Ceram. Assoc. Japan 51, 338 (1943). 57. J. F. Greene and A.