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基于超声非线性的钢轨疲劳状态评估研究

A Study on Fatigue State Evaluation of Rail by the Use of Ultrasonic Nonlinearity.

作者信息

Zhu Bo, Lee Jaesun

机构信息

Department of Quality and Technology, Shandong Special Equipment Inspection Institute Co., Ltd., Shandong 250101, China.

School of Mechanical Engineering, Changwon National University, Changwon 51140, Korea.

出版信息

Materials (Basel). 2019 Aug 23;12(17):2698. doi: 10.3390/ma12172698.

Abstract

Nonlinear ultrasonic testing has been accepted as a promising manner for evaluating material integrity in an early stage. Stress fatigue is the main threats to train safety, railways examinations for stress fatigue are more significant and necessary. A series of ultrasonic nonlinear wave experiments are conducted for rail specimens extracted from railhead with different degree of fatigue produced by three-point bent loading condition. The nonlinear parameter is the indicator of nonlinear waves for expressing the degree the fatigue. The experimental results show that the sensitivity of a third harmonic longitudinal wave is higher than second harmonic longitudinal wave testing. As the same time, collinear wave mixing shows strong relative with fatigue damages than a second longitudinal wave nondestructive testing (NDT) method and provides more reliable results than third harmonic longitudinal waves nonlinear testing method.

摘要

非线性超声检测已被公认为是一种在早期阶段评估材料完整性的有前景的方法。应力疲劳是列车安全的主要威胁,铁路应力疲劳检测更为重要且必要。对从轨头提取的钢轨试样进行了一系列超声非线性波实验,这些试样在三点弯曲加载条件下产生了不同程度的疲劳。非线性参数是用于表示疲劳程度的非线性波指标。实验结果表明,三次谐波纵向波的灵敏度高于二次谐波纵向波检测。同时,共线波混频比二次纵向波无损检测方法与疲劳损伤的相关性更强,并且比三次谐波纵向波非线性检测方法提供更可靠的结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d21b/6747605/89559cfc5272/materials-12-02698-g001.jpg

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