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Influence of Cyclic Load and Environmental Effects on Stress Corrosion Cracking of Sensitized Stainless Steel. Final Report

机译:循环载荷和环境效应对敏化不锈钢应力腐蚀开裂的影响。总结报告

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An experimental stress-corrosion cracking (SCC) study has been conducted in order to mitigate SCC in stainless steel piping in BWR's. Effect of the temperature, dissolved oxygen, and cyclic loading was studied on furnace sensitized Type 304 stainless steel. Slow strain rate tests at 4 x 10 exp -6 s exp -1 strain rate produced intergranular stress-corrosion cracking (IGSCC) at temperatures above 204 exp 0 C, suggesting a threshold temperature for IGSCC of about 130 exp 0 C at the 0.2 ppM oxygen level. Saturated solutions of AgCl produced IGSCC in slow strain rate tests in both aerated (8 ppM O sub 2 ) and deaerated (< 0.06 ppM O sub 2 ) tests at temperatures as low as 85 exp 0 C. Results suggest a potential hazard in using Ag/AgCl reference electrodes. IGSCC also was produced by trapezoidal cyclic loading (5 min load/unload, 10 or 75 min at load). Tests in 8 ppM oxygen water with the 75 min hold cycle, minimum load of 0.1 yield strength (YS) and maximum load greater than YS, indicated a threshold temperature for IGSCC of 190 exp 0 C. Other cyclic load tests in 288 exp 0 C - 8 ppM oxygen water with minimum load of 0.1 YS and maximum load less than YS, produced IGSCC at maximum loads as low as 0.7 YS in the rather high yield strength material studied (YS = 36.3 ksi at 288 exp 0 C). Low increment load cyclic loading produced IGSCC with cyclic loads ranging between 0.5 and 0.6 YS and 0.8 to 0.9 YS, but not at 0.6 to 0.7 YS or 0.7 to 0.8 Ys. The short hold cycle (10 min at load) was much less aggressive in promoting IGSCC than the long hold cycle (75 min at load). (ERA citation 06:035187)

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