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Development of a Novel Guided Wave Generation System Using a Giant Magnetostrictive Actuator for Nondestructive Evaluation

机译:一种使用巨型磁致伸缩执行器进行非破坏性评价的新型引导波生成系统的开发

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摘要

As a common approach to nondestructive testing and evaluation, guided wave-based methods have attracted much attention because of their wide detection range and high detection efficiency. It is highly desirable to develop a portable guided wave testing system with high actuating energy and variable frequency. In this paper, a novel giant magnetostrictive actuator with high actuation power is designed and implemented, based on the giant magnetostrictive (GMS) effect. The novel GMS actuator design involves a conical energy-focusing head that can focus the amplified mechanical energy generated by the GMS actuator. This design enables the generation of stress waves with high energy, and the focusing of the generated stress waves on the test object. The guided wave generation system enables two kinds of output modes: the coded pulse signal and the sweep signal. The functionality and the advantages of the developed system are validated through laboratory testing in the quality assessment of rock bolt-reinforced structures. In addition, the developed GMS actuator and the supporting system are successfully implemented and applied in field tests. The device can also be used in other nondestructive testing and evaluation applications that require high-power stress wave generation.
机译:作为一种常用的方法,以无损检测和评估,基于导波的方法已经吸引了,因为他们的检测范围宽和检测效率高的多的关注。人们非常希望开发具有高能量的致动和可变频率的便携式导波检测系统。在本文中,具有高的致动功率的新型超磁致伸缩致动器被设计并实现的基础上,超磁致伸缩(GMS)的效果。新颖的GMS致动器设计包括一个圆锥形的聚焦能量头,其能够焦点时,由致动器GMS产生的放大的机械能。这种设计使应力波的产生具有高能量,并且将所生成的应力波的测试物体上的聚焦。导波发生系统使两个种输出模式:编码脉冲信号和扫描信号。功能和开发的系统的优点是通过在岩石锚杆,钢筋结构的质量评估实验室测试,验证。此外,开发的GMS致动器和支撑系统被成功地实现,并且在现场试验中施加。所述装置还可以在需要高功率压力波产生其它非破坏性测试和评价的应用中。

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