Flaw Characterization through Nonlinear Ultrasonics and Wavelet Cross-Correlation Algorithms

被引:1
作者
Bunget, Gheorghe [1 ]
Yee, Andrew [1 ]
Stewart, Dylan [1 ]
Rogers, James [1 ]
Henley, Stanley [2 ]
Bugg, Chris [2 ]
Cline, John [3 ]
Webster, Matthew [4 ]
Farinholt, Kevin [4 ]
Friedersdorf, Fritz [4 ]
机构
[1] Murray State Univ, Engn Phys Program, Inst Engn, Murray, KY 42071 USA
[2] PCI Skanska, Calvert City, KY 42029 USA
[3] Vectren Util Holdings Inc, Evansville, IN 47702 USA
[4] Luna Innovat Inc, Intelligent Syst Grp, Roanoke, VA 24011 USA
来源
44TH ANNUAL REVIEW OF PROGRESS IN QUANTITATIVE NONDESTRUCTIVE EVALUATION, VOL 37 | 2018年 / 1949卷
关键词
FATIGUE DAMAGE; GENERATION; HARMONICS;
D O I
10.1063/1.5031609
中图分类号
O59 [应用物理学];
学科分类号
摘要
Ultrasonic measurements have become increasingly important non-destructive techniques to characterize flaws found within various in-service industrial components. The prediction of remaining useful life based on fracture analysis depends on the accurate estimation of flaw size and orientation. However, amplitude-based ultrasonic measurements are not able to estimate the plastic zones that exist ahead of crack tips. Estimating the size of the plastic zone is an advantage since some flaws may propagate faster than others. This paper presents a wavelet cross-correlation (WCC) algorithm that was applied to nonlinear analysis of ultrasonically guided waves (GW). By using this algorithm, harmonics present in the waveforms were extracted and nonlinearity parameters were used to indicate both the tip of the cracks and size of the plastic zone. B-scans performed with the quadratic nonlinearities were sensitive to micro-damage specific to plastic zones.
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页数:9
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