Design of the receiving unit of the ultrasonic rail flaw detector

A. D. Mikhed, O. A. Titus
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Abstract

The development of an ultrasonic fl aw detector receiving unit for rail monitoring includes theoretical and practical studies. Special attention is paid to the experimental determination of the characteristics of the ultrasonic piezoelectric sensor and the description of the receiving-amplifying path. A mock-up sample of an ultrasonic fl aw detector allows checking rails for defects and gives a tangible gain in dimensions compared to bulky analogues.The theoretical methods used were based on the principles of electrical engineering, electronic engineering, graphical analysis and the theory of automatic control.Experimental studies of the piezoelectric sensor allowed us to determine its main resonant frequency. The correct choice of parameters of the amplifier unit ensured accurate and reliable operation of the device. Practical tests of the fl aw detector using a special buffer sample of the rail made it possible to adjust its sensitivityThe input amplifier of the microvoltmeter V3-40 is taken as the basis of the receiving and amplifying path of the fl aw detector. The device includes the possibility of its use in conjunction with the converter. The structural diagram of the fl aw detector is presented. The electrical circuit of the input divider with the selection of the necessary resistances and the electrical circuit of the effective value meter with a description of all its elements are described.Operating modes and electronic circuits are selected according to reference data, taking into account their high reliability of operation. The use of analog integrated circuits in the circuit solution made it possible to increase the reliability and accuracy of the fl aw detector device, simplify its adjustment, reduce zero drift and improve the quality of the output signal.
超声波轨道探伤仪接收单元的设计
钢轨监测用超声探伤仪接收单元的研制包括理论和实践两方面的研究。重点介绍了超声压电传感器特性的实验测定和接收放大路径的描述。超声波探伤仪的模型样品允许检查轨道的缺陷,并且与笨重的类似物相比,在尺寸上有明显的增加。所采用的理论方法是基于电气工程、电子工程、图形分析和自动控制理论的原理。对压电传感器的实验研究使我们能够确定其主谐振频率。放大器单元参数的正确选择保证了器件的准确可靠运行。利用钢轨的特殊缓冲试样对检测器进行了实际测试,使检测器的灵敏度得以调整。以微伏特表V3-40的输入放大器为检测器的接收放大路径的基础。该装置包括其与转换器一起使用的可能性。给出了该检测器的结构框图。介绍了输入分压器的电路及其必要电阻的选择,以及有效值计的电路及其所有元件的说明。根据参考数据选择工作模式和电子电路,并考虑其运行的高可靠性。在电路解决方案中使用模拟集成电路,可以提高检漏装置的可靠性和精度,简化其调整,减少零漂,提高输出信号的质量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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