首页> 外文期刊>Proceedings >Structural Damage Location by Low-Cost Piezoelectric Transducer and Advanced Signal Processing Techniques
【24h】

Structural Damage Location by Low-Cost Piezoelectric Transducer and Advanced Signal Processing Techniques

机译:低成本压电传感器和先进信号处理技术的结构损伤位置

获取原文
获取外文期刊封面目录资料

摘要

The development of new low-cost transducers and systems has been extensively aimed at in both industry and academia to promote a correct failure diagnosis in aerospace, naval, and civil structures. In this context, structural health monitoring (SHM) engineering is focused on promoting human safety and a reduction in the maintenance costs of these components. Traditionally, SHM aims to detect structural damages at the initial stage, before it reaches a critical level of severity. Numerous approaches for damage identification and location have been proposed in the literature. One of the most common damage location techniques is based on acoustic waves triangulation, which stands out as an effective approach. This method uses a piezoelectric transducer as a sensor to capture acoustic waves emitted by cracks or other damage. Basically, the damage location is defined by calculating the difference in the time of arrival (TOA) of the signals. Although it may be simple, the detection of TOA requires complex statistical and signal processing techniques. Based on this issue, this work proposes the evaluation of a low-cost piezoelectric transducer to determine damage location in metallic structures by comparing two methodologies of TOA identification, the Hinkley criterion and the statistical Akaike criterion. The tests were conducted on an aluminum beam in which two piezoelectric transducers were attached at each end. The damage was simulated by pencil lead break (PLB) test applied at four different points of the specimen and the acoustic signals emitted by the damage were acquired and processed by Hinkley and Akaike criteria. The results indicate that, although both signal processing methodologies were able to determine the damage location, Akaike presented higher precision when compared to Hinkley approach. Moreover, the experimental results indicated that the low-cost piezoelectric sensors have a great potential to be applied in the location of structural failures.
机译:新的低成本传感器和系统的发展已广泛针对行业和学术界,促进航空航天,海军和民间结构的正确失败诊断。在这种情况下,结构健康监测(SHM)工程专注于促进这些组分的维护成本的人性安全性和减少。传统上,SHM旨在检测初始阶段的结构损坏,然后才能达到严重程度的临界程度。在文献中提出了许多损害识别和地点的方法。其中一个最常见的损坏定位技术是基于声波三角测量,其突出为有效的方法。该方法使用压电换能器作为传感器,以捕获由裂缝或其他损坏发射的声波。基本上,通过计算信号的到达时间(TOA)的差异来定义损坏位置。虽然它可能很简单,但是TOA的检测需要复杂的统计和信号处理技术。在此问题的基础上,该工作提出了评估低成本压电换能器,通过比较TOA识别,Hinkley标准和统计Akaike标准的两种方法来确定金属结构中的损伤位置。在铝光束上进行测试,其中两个压电换能器在每个端部附着。通过铅笔铅断裂(PLB)试验在样本的四个不同点施加的铅笔铅(PLB)试验,并通过Hinkley和Akaike标准获得和处理损坏发出的声学信号。结果表明,尽管两个信号处理方法都能够确定损坏位置,但与Hinkley方法相比,Akaike呈现更高的精度。此外,实验结果表明,低成本压电传感器具有在结构故障位置应用的很大潜力。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号