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首页> 外文期刊>International journal of structural stability and dynamics >Damage Detection of Beams by a Vibration Characteristic Tuning Technique Through an Optimal Design of Piezoelectric Layers
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Damage Detection of Beams by a Vibration Characteristic Tuning Technique Through an Optimal Design of Piezoelectric Layers

机译:压电层优化设计的振动特性调谐技术检测梁的损伤

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摘要

An advanced technique for damage detection in beam structures, using a vibration characteristic tuning procedure is developed by an optimal design of piezoelectric materials. Piezoelectric sensors and actuators are mounted on the surface of the host beam to generate excitations for the tuning via a feedback process. The excitations induced by the piezoelectric effect are used to magnify the effect of the damage in the vibration characteristics of the damaged structure to realize an effective damage detection process. To describe the detection process, theoretical models of the cantilevered beams with and without tuning induced by piezoelectric effect are built first, while the damage is represented by a crack at the fixed end. From the established models, the natural frequencies of the tuned beams with and without the crack are obtained to study the sensitivity of the proposed technique. As a result of the tuning process, more obvious changes on the natural frequencies due to the existence of a crack are observed. The results also indicate a shorter distance from the piezoelectric actuators to the crack leads to a higher detection sensitivity. An optimal length of the piezoelectric actuators is also obtained for better detection.
机译:通过压电材料的最佳设计,开发了一种使用振动特性调整程序的梁结构损伤检测的先进技术。压电传感器和执行器安装在主梁的表面上,以通过反馈过程产生用于调谐的激励。由压电效应引起的激励被用于放大损伤对受损结构的振动特性的影响,以实现有效的损伤检测过程。为了描述检测过程,首先建立带有和不带有由压电效应引起的调谐的悬臂梁的理论模型,而损伤以固定端的裂纹表示。从建立的模型中,获得带有和不带有裂纹的调谐梁的固有频率,以研究所提出技术的灵敏度。调谐过程的结果是,观察到由于裂纹的存在,固有频率上的变化更加明显。结果还表明,从压电致动器到裂纹的距离越短,检测灵敏度越高。压电致动器的最佳长度也获得了更好的检测。

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