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MODELLING OF SHEAR LAG EFFECT FOR PIEZO-ELASTODYNAMIC STRUCTURE FOR ELECTRO-MECHANICAL IMPEDANCE TECHNIQUE

机译:机电阻抗技术的压电弹性动力学结构的剪力滞后效应建模

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The impedance based structural health monitoring (SHM) techniques have utilized the electro-mechanical coupling property of piezoelectric materials (piezo-impedance transducers), due to their self-sensing nature (ability to act both as actuators and sensors), and its diminutive in shape and size, cost effectiveness and ease of installation. The adhesive bond acts as an elastic medium which facilitates the transfer of stresses and strains developed due to piezo displacement and also couples the impedance of PZT patch with that of the host structure. The sensitivity of the electro-mechanical impedance (EMI) technique can be enhanced by understanding shear mechanism phenomena of the adhesive layer. This paper reviews the existing shear lag models and discuss the recent advances in impedance based coupled piezo-structural model duly considering the shear lag effect with all responsible piezo-mechanical parameters.
机译:基于阻抗的结构健康监测(SHM)技术具有压电材料(压电阻抗换能器)的自耦合特性(既可以用作执行器又可以用作传感器),并且利用了压电材料的机电耦合特性,并且在结构设计中不占优势。形状和尺寸,成本效益和易于安装。胶粘剂充当一种弹性介质,可促进由于压电位移而产生的应力和应变的传递,并使PZT贴片的阻抗与主体结构的阻抗耦合。可以通过理解粘合剂层的剪切机制现象来增强机电阻抗(EMI)技术的灵敏度。本文回顾了现有的剪力滞后模型,并讨论了基于阻抗的耦合压电结构模型的最新进展,并充分考虑了具有所有负责的压电力学参数的剪力滞后效应。

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