Corrosion Reviews, Volume 6, Issues 2-7Scientific Publications Division, Freund Publishing House, 1985 |
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Results 1-3 of 33
Page 209
... period Table 3 shows the SCC probabilities , by the year of their occur- rence over a 12 year service period , for the heaters and coolers , respec- tively . In the heaters , a peak of SCC failure is observed about 4 to 6 years after ...
... period Table 3 shows the SCC probabilities , by the year of their occur- rence over a 12 year service period , for the heaters and coolers , respec- tively . In the heaters , a peak of SCC failure is observed about 4 to 6 years after ...
Page 221
... period and 20 ° C beyond this period . The critical chloride ion concentration is 6 ppm throughout the service periods . It is well known / 5 / that the rupture time for 18-8 stainless steel gets shorter with increasing concentration of ...
... period and 20 ° C beyond this period . The critical chloride ion concentration is 6 ppm throughout the service periods . It is well known / 5 / that the rupture time for 18-8 stainless steel gets shorter with increasing concentration of ...
Page 342
... period in the three locations . This is especially remarkable considering that the previous lifetime of CED impellers was well over a year and , in the best cases , 11⁄2 years . In other words , during this same period , under normal ...
... period in the three locations . This is especially remarkable considering that the previous lifetime of CED impellers was well over a year and , in the best cases , 11⁄2 years . In other words , during this same period , under normal ...
Contents
H Craig and R N Parkins | 123 |
Some Studies of Ion Implantation in the Fields of Corrosion and Stress | 126 |
Corrosion Fatigue in Pressurized Water Reactors | 183 |
Copyright | |
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acid adsorbed aluminium analysis anodic application Artificial Intelligence austenitic cathodic cathodic protection chemical engineering chloride ion chromate composition compounds concentration containing CorDorCD Corrosion Control corrosion fatigue corrosion films Corrosion of Hastelloy corrosion rates corrosion resistance crack growth current density deposits effect electrochemical electron environments evaluation example expert system factors films formed Hastelloy Hastelloy alloy heat exchangers HNO3 implanted increase industry inhibition inhibitor interface ion implantation iron Israel JKTK knowledge base layer mechanism metal surface Metallurgy mild steel molybdenum MYCIN NaCl oxide oxide film oxygen paint passive phosphate pitting corrosion plant plating polarization curves potential primer problems Prof properties protection reduced rules slurry sodium molybdate solution specimens stainless steel stress corrosion cracking structure substrate sulfuric acid Table techniques Technology temperature titanium tube unimplanted values water path welding zinc zirconium