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首页> 外文期刊>Journal of Materials Engineering and Performance >Stress Corrosion Cracking Study of Aluminum Alloys Using Electrochemical Noise Analysis
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Stress Corrosion Cracking Study of Aluminum Alloys Using Electrochemical Noise Analysis

机译:基于电化学噪声分析的铝合金应力腐蚀开裂研究

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摘要

Stress corrosion cracking studies of aluminum alloys AA2219, AA8090, and AA5456 in heat-treated and non heat-treated condition were carried out using electrochemical noise technique with various applied stresses. Electrochemical noise time series data (corrosion potential vs. time) was obtained for the stressed tensile specimens in 3.5% NaCl aqueous solution at room temperature (27℃). The values of drop in corrosion potential, total corrosion potential, mean corrosion potential, and hydrogen overpotential were evaluated from corrosion potential versus time series data. The electrochemical noise time series data was further analyzed with rescaled range (R/S) analysis proposed by Hurst to obtain the Hurst exponent. According to the results, higher values of the Hurst exponents with increased applied stresses showed more susceptibility to stress corrosion cracking as confirmed in case of alloy AA 2219 and AA8090.
机译:使用电化学噪声技术对各种应用应力进行了热处理和非热处理条件下的铝合金AA2219,AA8090和AA5456的应力腐蚀开裂研究。在室温(27℃)下,在3.5%NaCl水溶液中,对应力拉伸试样的电化学噪声时间序列数据(腐蚀电位与时间的关系)进行了获取。根据腐蚀电位与时间序列数据评估腐蚀电位,总腐蚀电位,平均腐蚀电位和氢超电位下降的值。利用Hurst提出的重标范围(R / S)分析进一步分析了电化学噪声时间序列数据,以获得Hurst指数。根据结果​​,如在AA 2219和AA8090合金中所证实的那样,随着施加应力的增加,较高的Hurst指数值显示出对应力腐蚀开裂的敏感性更高。

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