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一种用于复合材料压力容器的集成声/超声结构健康监测系统。

An Integrated Acousto/Ultrasonic Structural Health Monitoring System for Composite Pressure Vessels.

作者信息

Bulletti Andrea, Giannelli Pietro, Calzolai Marco, Capineri Lorenzo

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2016 Jun;63(6):864-73. doi: 10.1109/TUFFC.2016.2545716. Epub 2016 Mar 23.

Abstract

This paper describes the implementation of a structural health monitoring (SHM) method for mechanical components and structures in composite materials with a focus on carbon-fiber-overwrapped pressure vessels (COPVs) used in the aerospace industry. Two flex arrays of polyvinylidene fluoride (PVDF) interdigital transducers have been designed, realized, and mounted on the COPV to generate guided Lamb waves (mode A0) for damage assessment. We developed a custom electronic instrument capable of performing two functions using the same transducers: passive-mode detection of impacts and active-mode damage assessment using Lamb waves. The impact detection is based on an accurate evaluation of the time of arrival and was successfully tested with low-velocity impacts (7 and 30 J). Damage detection and progression is based on the calculation of a damage index matrix which compares a set of signals acquired from the transducers with a baseline. This paper also investigates the advantage of tuning the active-mode frequency to obtain the maximum transducer response in the presence of structural variations of the specimen, and therefore, the highest sensitivity to damage.

摘要

本文描述了一种用于复合材料机械部件和结构的结构健康监测(SHM)方法的实施情况,重点关注航空航天工业中使用的碳纤维缠绕压力容器(COPV)。设计、制作并将两个聚偏二氟乙烯(PVDF)叉指换能器的柔性阵列安装在COPV上,以产生用于损伤评估的导波兰姆波(A0模式)。我们开发了一种定制电子仪器,该仪器能够使用相同的换能器执行两项功能:对撞击进行被动模式检测以及使用兰姆波进行主动模式损伤评估。撞击检测基于对到达时间的精确评估,并已成功通过低速撞击(7焦耳和30焦耳)进行了测试。损伤检测和损伤发展基于损伤指数矩阵的计算,该矩阵将从换能器采集的一组信号与基线进行比较。本文还研究了在试样结构发生变化的情况下,调整主动模式频率以获得最大换能器响应的优势,从而获得对损伤的最高灵敏度。

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