Abstract:Abstract:Under the repeated load of the wheel, the rail tread is prone to fatigue cracks. Rail tread cracks are typical rolling contact fatigue cracks. These cracks can extend from the railhead to its downside, and it may cause the breakdown of the railhead. It brings hidden huge damage to transport safety. Firstly, the finite element method is used to analyze the interaction law between ultrasonic surface waves and the cracks in the rail tread. The scattering features and ultrasonic reflection behaviors of the lowfrequency surface waves are analyzed when inclination angles and depths of the cracks on the tread change. Secondly, a surface wave electromagnetic acoustic transducer (EMAT) with a center frequency of 03 MHz is designed and established. Then, the Bscan imaging inspection is performed on the rail tread with oblique cracks to identify the cracks intuitively. To improve the worse signaltonoise ratio (SNR) of the EMAT with a larger liftoff and conducting highspeed detection, the crackreflected ultrasonic echo is denoised and reconstructed by synchrosqueezed wavelet transform (SWT). The Bscan images can be rapidly constructed by using SWT. Results show that the designed surface wave EMAT can effectively detect multiple cracks in the rail tread. SNR of the ultrasonic echos is improved at least 883 dB by using SWT denoising method. In addition, the clarity of the Bscan image and the detection efficiency are effectively enhanced.