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A Flexible Arrayed Eddy Current Sensor for Inspection of Hollow Axle Inner Surfaces

机译:用于检查空心轴内表面的柔性阵列涡流传感器

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摘要

A reliable and accurate inspection of the hollow axle inner surface is important for the safe operation of high-speed trains. In order to improve the reliability of the inspection, a flexible arrayed eddy current sensor for non-destructive testing of the hollow axle inner surface was designed, fabricated and characterized. The sensor, consisting of two excitation traces and 28 sensing traces, was developed by using the flexible printed circuit board (FPCB) technique to conform the geometric features of the inner surfaces of the hollow axles. The main innovative aspect of the sensor was the new arrangement of excitation/sensing traces to achieve a differential configuration. Finite element model was established to analyze sensor responses and to determine the optimal excitation frequency. Experimental validations were conducted on a specimen with several artificial defects. Results from experiments and simulations were consistent with each other, with the maximum relative error less than 4%. Both results proved that the sensor was capable of detecting longitudinal and transverse defects with the depth of 0.5 mm under the optimal excitation frequency of 0.9 MHz.
机译:空心轴内表面的可靠且准确的检查对于高速列车的安全运行非常重要。为了提高检查的可靠性,设计,制造和表征了一种用于空心轴内表面无损检测的柔性阵列涡流传感器。该传感器由两条激励迹线和28条传感迹线组成,是通过使用柔性印刷电路板(FPCB)技术开发的,以符合空心轴内表面的几何特征。传感器的主要创新方面是激发/传感迹线的新布置,以实现差分配置。建立了有限元模型来分析传感器响应并确定最佳激励频率。对具有几个人造缺陷的样品进行了实验验证。实验和模拟的结果彼此一致,最大相对误差小于4%。两项结果均证明,该传感器能够在0.9 MHz的最佳激励频率下检测深度为0.5 mm的纵向和横向缺陷。

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