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Electro-Mechanical Response and Engineering Properties of Piezocomposite with Imperfect Interface

机译:界面不完善的压电复合材料的机电响应及工程特性

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Composites of piezoelectric materials are widely use in practical applications such as nondestructive testing devices, smart adaptive structures and medical devices. A thorough understanding of coupled electro-elastic response and properties of piezocomposite are crucial for the development and design of piezoelectric composite materials used in advanced applications. The micromechanics analysis is employed in this paper to determine the response and engineering properties of the piezocomposite. A mechanical imperfect interface bonding between piezoelectric inclusion and polymer matrix is taken into consideration in the analysis. The micromechanics analysis is based on the Boundary Element Method (BEM) together with the periodic micro-field micromechanics theory. A selected set of numerical results is presented to investigate the influence of volume ratio and interface bonding condition on effective piezocomposite material coefficients and portray basic features of coupled electroelastic response within the domain of piezocomposite unit cell.
机译:压电材料的复合材料在无损检测设备,智能自适应结构和医疗设备等实际应用中被广泛使用。充分理解压电复合材料的耦合电弹性响应和性能对于开发和设计用于高级应用的压电复合材料至关重要。本文采用微力学分析来确定压电复合材料的响应和工程特性。分析中考虑了压电夹杂物和聚合物基体之间的机械缺陷。微观力学分析是基于边界元方法(BEM)以及周期性微观场微力学理论。提出了一组选定的数值结果,以研究体积比和界面键合条件对有效压电复合材料系数的影响,以及描绘压电复合晶胞域内耦合电弹性响应的基本特征。

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