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02523 Influence of Dissolved Hydrogen and Temperature on Primary Water Stress Corrosion Cracking of Mill Annealed Alloy 600

Product Number: 51300-02523-SG
ISBN: 02523 2002 CP
Author: Nobuo Totsuka, Yoshito Nishikawa, and Nobuo Nakajima
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The influence of dissolved hydrogen and temperature on primary stress corrosion cracking (PWSCC) of alloy 600 was studied at temperature ranging from 310 to 360 °C and hydrogen contents ranging from 0 to 4 ppm using slow strain rate tensile technique (SSRT) and constant load tensile test. In this study, it was revealed that the PWSCC susceptibility of alloy 600 has a maximum near 3 ppm of dissolved hydrogen at 360 °C and the peak shifts to 1 ppm at 320 °C. The mechanism of the peak shift is not clear yet, however, it might possibly be explained by the change of hydrogen recombination reaction and/or change of the surface film. Key Words: alloy 600, MA600, stress corrosion cracking, primary water, SCC, PWSCC, dissolved hydrogen, activation energy
The influence of dissolved hydrogen and temperature on primary stress corrosion cracking (PWSCC) of alloy 600 was studied at temperature ranging from 310 to 360 °C and hydrogen contents ranging from 0 to 4 ppm using slow strain rate tensile technique (SSRT) and constant load tensile test. In this study, it was revealed that the PWSCC susceptibility of alloy 600 has a maximum near 3 ppm of dissolved hydrogen at 360 °C and the peak shifts to 1 ppm at 320 °C. The mechanism of the peak shift is not clear yet, however, it might possibly be explained by the change of hydrogen recombination reaction and/or change of the surface film. Key Words: alloy 600, MA600, stress corrosion cracking, primary water, SCC, PWSCC, dissolved hydrogen, activation energy
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