School of Optoelectronic Engineering and Instrumentation Science, Dalian University of Technology, Dalian 116000, China.
Signal & Communication Research Institute, China Academy of Railway Sciences Corporation Limited, Beijing 100081, China.
Sensors (Basel). 2023 Jun 14;23(12):5583. doi: 10.3390/s23125583.
The safety of railway transportation is crucial to social and economic development. Therefore, real-time monitoring of the rail is particularly necessary. The current track circuit structure is complex and costly, posing challenges to monitoring broken tracks using alternative methods. As a non-contact detection technology with a lower environmental impact, electromagnetic ultrasonic transducers (EMATs) have become a concern. However, traditional EMATs have problems such as low conversion efficiency and complex modes, which can limit their effectiveness for long-distance monitoring. Therefore, this study introduces a novel dual-magnet phase-stacked EMAT (DMPS-EMAT) design comprising two magnets and a dual-layer winding coil arrangement. The magnets are positioned at a distance equal to the wavelength of the A0 wave from each other, while the center distance between the two sets of coils beneath the transducer is also equal to the wavelength. After analyzing the dispersion curves of the rail waist, it was determined that the optimal frequency for long-distance rail monitoring is 35 kHz. At this frequency, adjusting the relative positions of the two magnets and the coil directly underneath to be one A0 wavelength can effectively excite a constructive interference A0 wave in the rail waist. The simulation and experimental results show that DMPS-EMAT excited a single-mode A0 wave, resulting in a 1.35-times increase in amplitude.
铁路运输的安全性对社会和经济发展至关重要。因此,实时监测轨道显得尤为必要。目前的轨道电路结构复杂且成本高昂,这给使用替代方法监测轨道破损带来了挑战。作为一种对环境影响较小的非接触式检测技术,电磁超声换能器(EMAT)引起了人们的关注。然而,传统的 EMAT 存在转换效率低、模式复杂等问题,这可能限制了其在远距离监测中的应用。因此,本研究提出了一种新型的双磁体相堆叠 EMAT(DMPS-EMAT)设计,包括两个磁铁和一个双层绕组线圈排列。磁铁之间的距离等于 A0 波的波长,而换能器下方两组线圈之间的中心距离也等于波长。在分析轨腰的频散曲线后,确定远距离钢轨监测的最佳频率为 35 kHz。在该频率下,调整两个磁铁和线圈的相对位置,使其刚好为一个 A0 波长,可以有效地在轨腰中激发出一个建设性干涉的 A0 波。仿真和实验结果表明,DMPS-EMAT 激发了单一模式的 A0 波,其幅度增加了 1.35 倍。