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Electro-elastic analysis of fiber-reinforced multilayered cylindrical composites with integrated piezoelectric actuators

机译:集成压电致动器的纤维增强多层圆柱复合材料的电弹性分析

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摘要

Based on the electro-mechanical coupling theory and the laminate elasticity theory, an electro-elastic solution is obtained for the fiber-reinforced cylindrical composites with integrated piezoelectric actuators when subjected to mechanical and electrical loadings. The hybrid composite is composed of three parts: internal piezoelectric actuator, fiber-reinforced laminated interlayer, and external piezoelectric actuator. The general solution in each piezoelectric smart layer is obtained by introducing three undetermined constants, and the general solutions in the fiber-reinforced laminated interlayer are obtained by means of the state-space method. The mechanical behaviors of the hybrid fiber-reinforced cylindrical composites are investigated. The illustrative examples show that the fiber's angle, the stacking sequence as well as the applied electric loading strongly affect the physical fields in the fiber-reinforced multilayered cylindrical composites.
机译:基于机电耦合理论和层合弹性理论,获得了带有集成压电致动器的纤维增强圆柱形复合材料在受到机械和电气载荷时的电弹性解决方案。混合复合材料由三部分组成:内部压电致动器,纤维增强层压夹层和外部压电致动器。通过引入三个未确定的常数,可以得到每个压电智能层中的一般解,而借助于状态空间法可以得到纤维增强层压夹层中的一般解。研究了混杂纤维增强圆柱形复合材料的力学性能。说明性的例子表明,纤维的角度,堆叠顺序以及施加的电负荷强烈影响纤维增强的多层圆柱形复合材料的物理场。

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