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A NOVEL AND FLEXIBLE DESIGN OF MAGNETOSTRICTIVE SENSOR FOR STRAND/ROPE DEFECT INSPECTION

机译:杆/绳缺陷检测的磁致伸缩传感器的新型灵活设计

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摘要

Steel strands and ropes are widely used to support heavy structures, such as bridges, buildings, lifts, and cable cars. They are also used in transmission lines to deliver power to cities as well as electrical trains. Failures occurring in strands/ropes may cause serious casualties and suspension of services. Therefore, it is of prime concern to provide advanced warnings prior to fatal failures. Magnetostrictive sensor (MsS) has become popular in generating and receiving desired ultrasonic guided waves to detect strand/rope defects. Conventional MsS usually uses hard sensing coils to generate the necessary dynamic magnet field to excite the desired guided waves for defect inspection. However, the hard coils are bulky and difficult to install on strands/ropes with different diameters. Such inflexibilities limit the use of MsS in many practical situations. This paper reports the design of a new type of MsS that uses innovative flexible coils, called flexible printed coil (FPC). The FPC is made of flexible film with the desired printed circuit pattern so that it can replace the conventional hard coils. The FPC-based MsS can be easily installed on or removed from the inspected strand/cable because of its flexible structure and the wrapped around type of mounting fashion. Moreover, the inspection performance of the new FPC-based MsS has been greatly increased because the FPC can be wrapped into multiple layers. The more the layers, the higher the wave energy can be emitted. The results obtained from the experiments conducted on seven-wire steel strand samples have proven the superior abilities of FPC than the conventional hard coils. The multi-layer FPC-based MsS has longer inspection range and higher sensitivity in detecting small cracks.
机译:钢绞线和钢丝绳广泛用于支撑重型结构,例如桥梁,建筑物,电梯和缆车。它们还用于传输线,以向城市以及火车供电。绞线/绳索发生故障可能会导致严重的人员伤亡和服务中断。因此,最重要的是在致命故障之前提供高级警告。磁致伸缩传感器(MsS)在生成和接收所需的超声波导波以检测钢绞线/绳索缺陷方面已变得很流行。传统的MsS通常使用硬感应线圈来产生必要的动态磁场,以激发所需的导波进行缺陷检查。然而,硬线圈体积大并且难以安装在具有不同直径的线束/绳索上。这样的灵活性限制了在许多实际情况下使用MsS的能力。本文报告了一种新型MsS的设计,该设计使用了创新的柔性线圈,称为柔性印刷线圈(FPC)。 FPC由具有所需印刷电路图案的柔性薄膜制成,因此可以代替传统的硬线圈。基于FPC的MsS可以灵活地安装在被检查的钢绞线/电缆上,也可以从其中移除,因为它具有灵活的结构和缠绕式安装方式。此外,由于FPC可以包装成多层,因此新的基于FPC的MsS的检查性能已大大提高。层数越多,可以发射的波能就越高。从对七线钢绞线样品进行的实验中获得的结果证明,FPC的功能优于传统的硬线圈。基于多层FPC的MsS具有更长的检查范围和更高的检测小裂纹的灵敏度。

著录项

  • 来源
  • 会议地点 Washington DC(US);Washington DC(US);Washington DC(US);Washington DC(US);Washington DC(US);Washington DC(US)
  • 作者单位

    The Smart Engineering Asset Management Laboratory the Croucher Optical Nondestructive Testing Laboratory , Department of Manufacturing Engineering and Management City University of Hong Kong, Tat Chee Avenue, Hong Kong, P.R. China;

    The Smart Engineering Asset Management Laboratory the Croucher Optical Nondestructive Testing Laboratory , Department of Manufacturing Engineering and Management City University of Hong Kong, Tat Chee Avenue, Hong Kong, P.R. China;

    The Smart Engineering Asset Management Laboratory the Croucher Optical Nondestructive Testing Laboratory , Department of Manufacturing Engineering and Management City University of Hong Kong, Tat Chee Avenue, Hong Kong, P.R. China;

    The Smart Engineering Asset Management Laboratory the Croucher Optical Nondestructive Testing Laboratory , Department of Manufacturing Engineering and Management City University of Hong Kong, Tat Chee Avenue, Hong Kong, P.R. China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程设计;工程设计;
  • 关键词

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