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首页> 外文期刊>NDT & E International: Independent Nondestructive Testing and Evaluation >Online nondestructive testing for fine steel wire rope in electromagnetic interference environment
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Online nondestructive testing for fine steel wire rope in electromagnetic interference environment

机译:电磁干扰环境中精细钢丝绳的在线无损检测

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摘要

AbstractThe diameter of fine steel wire rope (FSWR) is generally a few millimeters. Its magnetic flux leakage (MFL) signal is weak, and the number of magnetic sensors installed for defect detection is limited because of the small diameter. In FSWR production workshops, different kinds of machinery work together, deteriorating the power quality and making the spatial electromagnetic environment complex; the weak MFL is thus interfered with further. It is difficult to carry out online nondestructive testing (NDT) of FSWR in the process of manufacturing. In this paper we present a novel MFL method for FSWR NDT in a strong electromagnetic interference environment. We use a three-dimensional finite element method (FEM) to analyze the MFL signals. A simplified magnetic circuit is presented to excite the FSWR; the circuit comprises two half-sized radial magnetizing ring NdFeB magnets, and because there is no need for a magnetic yoke, the device is simple and light. A single Hall sensor is used to measure the flux leakage field. A stable performance power system is designed for the NDT power supply, which is not only resistant to voltage sags, but also has very low output noise. To enhance the signal-to-noise ratio (SNR) of the MFL defects signal, a signal conditioning and processing circuit are designed to enhance the detectability of signals in MFL data. The novel and small FSWR NDT system realizes on-line testing in an environment of strong electromagnetic interference, and for the experiment with a 1.5-mm-diameter wire rope twisted by 19 wires, the minimum damage of a pit on half of a wire can be identified.]]>
机译:<![CDATA [ 抽象 细钢丝绳(FSWR)的直径通常是几毫米。其磁通量泄漏(MFL)信号较弱,并且由于小直径而被限制为缺陷检测的磁传感器的数量。在FSWR生产车间,不同种类的机械一起工作,劣化电源质量,使空间电磁环境复合物;因此,弱MFL进一步干扰。在制造过程中难以在FSWR中进行在线无损检测(NDT)。在本文中,我们在强电磁干扰环境中提出了一种用于FSWR NDT的新型MFL方法。我们使用三维有限元方法(FEM)来分析MFL信号。提出了一种简化的磁路来激发FSWR;该电路包括两个半尺寸的径向磁化环NdFeB磁体,因为不需要磁轭,该装置简单而光。单个霍尔传感器用于测量磁通泄漏场。稳定的性能电力系统专为NDT电源而设计,不仅具有对电压凹凸的耐电压,而且具有非常低的输出噪声。为了增强MFL缺陷信号的信噪比(SNR),设计信号调节和处理电路以增强MFL数据中信号的可检测性。新型和小型FSWR NDT系统在强大的电磁干扰环境中实现了在线测试,以及用19根电线扭曲的1.5毫米直径的钢丝绳的实验,电线一半的坑的最小损坏被识别。 ]]>

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