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08604 Statistical Analysis on Stress Corrosion Cracking of Type 316L and Type 316 Stainless Steels in High Temperature Water

Product Number: 51300-08604-SG
ISBN: 08604 2008 CP
Author: Masami Mayuzumi, Nobuhisa Ishiyama, Kentaro Oonaka, Yoshihiro Mizutani, and Jun-ichi Tani
Publication Date: 2008
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Stress corrosion cracking (SCC) susceptibility of Type 316L stainless steel (SS) and Type 316 SS was investigated by the creviced bent beam (CBB) method in oxygenated high temperature water at 561K for 500 h to 2000 h. The crack length and depth were measured by a scanning electron microscope after the test. The SCC length on the specimen surface conformed to the lognormal distribution, although the depth conformed to the normal distribution. The SCC incubation times of Type 316L and Type 316 SS with polished surface were 490 h and 360h, respectively, suggesting higher SCC resistance of Type 316L SS. The surface hardened layer increased SCC susceptibility and shortened the incubation time.
Stress corrosion cracking (SCC) susceptibility of Type 316L stainless steel (SS) and Type 316 SS was investigated by the creviced bent beam (CBB) method in oxygenated high temperature water at 561K for 500 h to 2000 h. The crack length and depth were measured by a scanning electron microscope after the test. The SCC length on the specimen surface conformed to the lognormal distribution, although the depth conformed to the normal distribution. The SCC incubation times of Type 316L and Type 316 SS with polished surface were 490 h and 360h, respectively, suggesting higher SCC resistance of Type 316L SS. The surface hardened layer increased SCC susceptibility and shortened the incubation time.
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08254 External Pitting and Crevice Corrosion of 316L Stainless Steel Instrument Tubing in Marine Environments and Proposed Solution

Product Number: 51300-08254-SG
ISBN: 08254 2008 CP
Author: A. Okeremi and M. Simon-Thomas
Publication Date: 2008
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