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Wireless Module for Nondestructive Testing/Structural Health Monitoring Applications Based on Solitary Waves

机译:基于孤立波的无损检测/结构健康监测应用无线模块

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摘要

In recent years, there has been an increasing interest in the use of highly nonlinear solitary waves (HNSWs) for nondestructive evaluation and structural health monitoring applications. HNSWs are mechanical waves that can form and travel in highly nonlinear systems, such as granular particles in Hertzian contact. The easiest setup consists of a built-in transducer in drypoint contact with the structure or material to be inspected/monitored. The transducer is made of a monoperiodic array of spherical particles that enables the excitation and detection of the solitary waves. The transducer is wired to a data acquisition system that controls the functionality of the transducer and stores the time series for post-processing. In this paper, the design and testing of a wireless unit that enables the remote control of a transducer without the need to connect it to sophisticated test equipment are presented. Comparative tests and analyses between the measurements obtained with the newly designed wireless unit and the conventional wired configuration are provided. The results are corroborated by an analytical model that predicts the dynamic interaction between solitary waves and materials with different modulus. The advantages and limitations of the proposed wireless platform are given along with some suggestions for future developments.
机译:近年来,人们越来越关注将高度非线性的孤立波(HNSW)用于无损评估和结构健康监测应用。 HNSW是可以在高度非线性系统中形成和传播的机械波,例如赫兹接触中的颗粒。最简单的设置包括一个内置的传感器,该传感器与要检查/监视的结构或材料发生干点接触。换能器由球形颗粒的单周期阵列制成,从而可以激发和检测孤立波。传感器连接到数据采集系统,该系统控制传感器的功能并存储时间序列以进行后处理。在本文中,提出了一种无线单元的设计和测试,该无线单元可以实现传感器的远程控制,而无需将其连接到复杂的测试设备。提供了使用新设计的无线单元和常规有线配置获得的测量结果之间的对比测试和分析。分析模型可预测结果,该模型预测孤立波与具有不同模量的材料之间的动态相互作用。给出了所提出的无线平台的优点和局限性,以及一些对未来发展的建议。

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