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Atmospheric stress corrosion crack growth rates of 316 L stainless steel for nuclear waste containment

机译:用于核废料遏制的316 L不锈钢的大气应力腐蚀裂纹速率

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摘要

Atmospheric stress corrosion cracking (SCC) tests were conducted for a 316 L stainless steel (SS) at an applied stress of 1.1 sigma(0.2) with a chloride deposition density of approximately 100 mu g/cm(2) deposited as MgCl2 from solution. The test specimens were exposed in an atmospheric chamber at a constant temperature of 40 degrees C with initial relative humidity (RH) of 40 %, followed by an increase to 60 % RH, then 80 % RH, and finally a decrease to 60 % RH. The total exposure period was 6500 h (about 9 months). The stress corrosion crack growth rate decreased with increasing RH and with increasing crack depth.
机译:对于316L不锈钢(SS)的施加应力,在1.1σ(0.2)的施加应力下进行大气应力腐蚀裂缝(SCC)试验,其氯化物沉积密度为约100μg/ cm(2),沉积为MgCl 2的溶液。在40摄氏度的恒定温度下在40℃的恒定温度下暴露试样,初始相对湿度(RH)为40%,然后增加至60%RH,然后80%RH,最后将减少至60%RH 。暴露期为6500小时(约9个月)。随着RH的增加和裂缝深度增加,应力腐蚀裂纹生长速率降低。

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