首页> 外文会议>Conference on Smart Structures and Materials 2002: Smart Structures and Integrated Systems Mar 18-21, 2002 San Diego, USA >Design of a piezoelectric-based structural health monitoring system for damage detection in composite materials
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Design of a piezoelectric-based structural health monitoring system for damage detection in composite materials

机译:用于复合材料损伤检测的基于压电的结构健康监测系统的设计

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Cost-effective and reliable damage detection is critical for the utilization of composite materials. This paper presents the conclusions of an experimental and analytical survey of candidate methods for in-situ damage detection in composite structures. Experimental results are presented for the application of modal analysis and Lamb wave techniques to quasi-isotropic graphite/epoxy test specimens containing representative damage. Piezoelectric patches were used as actuators and sensors for both sets of experiments. Modal analysis methods were reliable for detecting small amounts of global damage in a simple composite structure. By comparison, Lamb wave methods were sensitive to all types of local damage present between the sensor and actuator, provided useful information about damage presence and severity, and present the possibility of estimating damage type and location. Analogous experiments were also performed for more complex built-up structures. These techniques are suitable for structural health monitoring applications since they can be applied with low power conformable sensors and can provide useful information about the state of a structure during operation. Piezoelectric patches could also be used as multipurpose sensors to detect damage by a variety of methods such as modal analysis, Lamb wave, acoustic emission and strain based methods simultaneously, by altering driving frequencies and sampling rates. This paper presents guidelines and recommendations drawn from this research to assist in the design of a structural health monitoring system for a vehicle. These systems will be an important component in future designs of air and spacecraft to increase the feasibility of their missions.
机译:具有成本效益且可靠的损坏检测对于复合材料的利用至关重要。本文介绍了对复合结构进行现场损伤检测的候选方法进行实验和分析调查的结论。给出了将模态分析和兰姆波技术应用于含有代表性损伤的准各向同性石墨/环氧树脂试样的实验结果。两组实验均使用压电贴片作为执行器和传感器。模态分析方法可用于检测简单复合结构中的少量整体损坏。相比之下,兰姆波方法对传感器和执行器之间存在的所有类型的局部损坏均敏感,提供了有关损坏的存在和严重程度的有用信息,并提供了估算损坏类型和位置的可能性。还对更复杂的组合结构进行了类似的实验。这些技术适用于结构健康监测应用,因为它们可以与低功率适应传感器一起使用,并且可以提供有关操作过程中结构状态的有用信息。压电贴片还可以用作多用途传感器,通过多种方法(例如模态分析,兰姆波,基于声发射和基于应变的方法)通过更改驱动频率和采样率来同时检测损坏。本文提出了从这项研究中得出的指导方针和建议,以帮助设计车辆的结构健康监测系统。这些系统将成为未来航空航天器设计中的重要组成部分,以增加其执行任务的可行性。

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