稀释
材料科学
连接(主束)
曲面(拓扑)
复合材料
金属
几何学
数学
冶金
生物
生态学
作者
Tao Chen,Yongqi Yin,Cheng Lv,Xiaochun Song,Jun Tu,Zhiyang Deng
标识
DOI:10.1088/1361-6501/adbf38
摘要
Abstract The significant difference in electromagnetic properties between aluminum and steel makes detecting corrosion thinning defects at their interface particularly challenging. In this study, we propose a method for the simultaneous detection and quantification of corrosion thinning defects at the interface of double-layered heterogeneous metal plates using pulsed eddy current technology. First, a finite element simulation model was developed to classify and identify feature signals through principal component analysis. Next, a novel approach based on characterization feature points (CFP) was introduced to detect and quantitatively evaluate corrosion thinning defects at the aluminum–steel interface. Finally, an experimental system was constructed, and comprehensive experimental studies were conducted. The results demonstrate that the proposed method can effectively distinguish and quantify corrosion thinning defects at aluminum–steel interfaces. Among the simultaneous quantification methods, the method based on CFP time exhibits a maximum relative measurement error of 33.54% and a minimum of 2.06%. In contrast, the method based on CFP amplitude demonstrates significantly lower errors, with a maximum relative measurement error of 5.95% and a minimum of 0.24%. This study presents a novel approach for the differentiation and simultaneous quantification of corrosion thinning defects in double-layer heterogeneous metal plates.
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