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An innovative design for using flexible printed coils for magnetostrictive-based longitudinal guided wave sensors in steel strand inspection

机译:在钢绞线检测中将柔性印刷线圈用于基于磁致伸缩的纵向导波传感器的创新设计

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Magnetostrictive sensors (MsSs) that can excite and receive guided waves are commonly used in detecting defects that may occur in cables and strands for supporting heavy structures. A?conventional MsS has a hard sensing coil that is wound onto a bobbin with electric wires to generate the necessary dynamic magnetic field to excite the desired guided waves. This tailor-made hard coil is usually bulky and is not flexible enough to fit steel strands of various sizes. The conventional MsS also cannot be mounted to any steel strand that does not have a free end to allow the bobbin to pass through the structure of the tested strand. Such inflexibilities limit the use of conventional MsSs in practical situations. To solve these limitations, an innovative type of coil, called a flexible printed coil (FPC), which is made out of flexible printed film, has been designed to replace the inflexible hard coil. The flexible structure of the FPC ensures that the new MsS can be easily installed on and removed from steel strands with different diameters and without free ends. Moreover, the FPC-based MsS can be wrapped into multiple layers due to its thin and flexible design. Although multi-layer FPC creates a minor asymmetry in the dynamic magnetic field, the results of finite element analysis and experiments confirm that the longitudinal guided waves excited by a FPC-based MsS are comparable to those excited by a conventional hard coil MsS. No significant reduction in defect inspection performance was found; in fact, further advantages were identified when using the FPC-based MsS. When acting as the transmitter, the innovative FPC-based MsS can cover a longer inspection length of strand. When acting as the receiver, the FPC-based MsS is more sensitive to smaller defects that are impossible to detect using a hard coil MsS. Hence, the multi-layer FPC-based MsS has great potential for replacing the conventional hard coil MsS because of its convenient installation, and ease of fitting to different strand diameters; it is smaller, and, most importantly, performs much better in strand defect detection.
机译:能够激发和接收导波的磁致伸缩传感器(MsSs)通常用于检测可能在支撑重型结构的电缆和线束中出现的缺陷。传统的MsS具有一个硬感应线圈,该感应线圈用电线缠绕在绕线架上,以产生必要的动态磁场来激发所需的导波。这种量身定做的硬质卷通常笨重,并且柔韧性不足以适合各种尺寸的钢绞线。常规的MsS也不能安装在没有自由端以允许线轴穿过测试线束结构的任何钢线束上。这样的灵活性限制了在实际情况下常规MsS的使用。为了解决这些限制,已经设计出一种创新类型的线圈,称为柔性印刷线圈(FPC),该线圈由柔性印刷薄膜制成,可以代替刚性的硬线圈。 FPC的灵活结构确保了新的MsS可以轻松安装在具有不同直径且没有自由端的钢绞线上或从钢绞线上拆除。而且,基于FPC的MsS由于其薄而灵活的设计而可以包装成多层。尽管多层FPC在动态磁场中产生较小的不对称性,但有限元分析和实验结果证实,基于FPC的MsS激发的纵向导波与常规硬线圈MsS激发的纵向导波相当。未发现缺陷检查性能显着降低;实际上,在使用基于FPC的MsS时,还发现了其他优势。当用作发送器时,基于FPC的创新型MSS可以覆盖更长的线束检查长度。当用作接收器时,基于FPC的MsS对较小的缺陷更为敏感,这些缺陷无法使用硬线圈MsS进行检测。因此,基于多层FPC的MsS具有安装方便,易于适应不同钢绞线直径的巨大潜力,可以替代传统的硬线圈MsS。它更小,最重要的是,在钢绞线缺陷检测中的性能要好得多。

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