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Detection of SCC of 304 NG stainless steel in an acidic NaCl solution using electrochemical noise based on chaos and wavelet analysis

机译:基于混沌和小波分析的电化学噪声检测酸性氯化钠溶液中304 NG不锈钢的SCC

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摘要

The stress corrosion crack (SCC) of 304 nuclear grade (NG) stainless steel (SS) in 0.5 mol/L NaCl+1.5 mol/L H2SO4 was monitored using electrochemical noise (EN) based on chaos theory, statistics and wavelet analysis. The results indicated that the SCC process was divided into three stages according to the transient features in the EN. In the beginning, compared with the sample without applied stress, the enhanced fluctuation amplitude in the electrochemical current noise (ECN) of the stressed samples was attributed to stress-enhanced pitting corrosion and uniform corrosion; then the fluctuations of ECN for all the samples decreased due to a coverage by the corrosion products; however, the ECN fluctuations of stressed sample were larger than the unstressed sample, suggesting that the stress enhanced the SCC initiation and propagation. Chaos analysis revealed that the correlation dimensions increase from 2.1 to 2.5 during the corrosion process, and the applied stress seems increase the complexity and uncertainty of the ECN signal.
机译:基于混沌理论,统计数据和小波分析方法,利用电化学噪声(EN)对304核不锈钢(SS)在0.5 mol / L NaCl + 1.5 mol / L H2SO4中的应力腐蚀裂纹(SCC)进行了监测。结果表明,根据EN中的瞬态特征,SCC过程分为三个阶段。刚开始时,与不施加应力的样品相比,应力样品的电化学电流噪声(ECN)波动幅度增加归因于应力增强的点蚀和均匀腐蚀。然后,由于腐蚀产物的覆盖,所有样品的ECN波动都减小了。然而,受应力样品的ECN波动要大于未受应力样品的ECN波动,这表明应力增强了SCC的萌生和传播。混沌分析表明,腐蚀过程中相关尺寸从2.1增加到2.5,施加的应力似乎增加了ECN信号的复杂性和不确定性。

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