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首页> 外文期刊>Journal of intelligent material systems and structures >Design and Characterization of a Variable-Length Piezocomposite Transducer for Structural Health Monitoring
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Design and Characterization of a Variable-Length Piezocomposite Transducer for Structural Health Monitoring

机译:用于结构健康监测的变长压电复合换能器的设计与表征

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摘要

A modally selective, variable-length anisotropic piezocomposite transducer is designed for guided wave (GW) structural health monitoring applications. The transducer dimensions needed to maximize individual modes are selected based on 3D elasticity models for GW excitation by finite dimensional transducers. This theory is used to determine these transducer dimensions as a function of the wave phase velocity, and normalized by the substrate thickness. The design and fabrication of the transducer are subsequently described, and a set of experimental tests is conducted in pristine isotropic structures to characterize the actuation and sensing performance of the device. It is shown that the transducer dimensions can be tailored to obtain specific symmetric to antisymmetric mode transmission and sensing ratios.
机译:模态选择性,变长各向异性压电复合换能器设计用于导波(GW)结构健康监测应用。基于3D弹性模型,通过有限维换能器进行GW激发,选择最大化各个模式所需的换能器尺寸。该理论用于确定这些换能器尺寸作为波相速度的函数,并通过基板厚度进行归一化。随后描述了换能器的设计和制造,并在原始的各向同性结构中进行了一组实验测试,以表征设备的驱动和感测性能。示出了可以调整换能器的尺寸以获得特定的对称至反对称模式的传输和感测比。

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