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A comparison of buckling and postbuckling behavior of FGM plates with piezoelectric fiber reinforced composite actuators

机译:压电纤维增强复合材料执行器的FGM板的屈曲和后屈曲性能比较

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摘要

Compressive postbuckling under thermal environments and thermal postbuckling due to a uniform temperature rise are presented for a simply supported, shear deformable functionally graded plate with piezoelectric fiber reinforced composite (PFRC) actuators. The material properties of functionally graded materials (FGMs) are assumed to be graded in the thickness direction according to a simple power law distribution in terms of the volume fractions of the constituents, and the material properties of both FGM and PFRC layers are assumed to be temperature-dependent. The governing equations are based on a higher order shear deformation plate theory that includes thermo-piezoelectric effects. The initial geometric imperfection of the plate is taken into account. A two step perturbation technique is employed to determine buckling loads (temperature) and postbuckling equilibrium paths. The numerical illustrations concern the compressive and thermal postbuckling behaviors of perfect and imperfect, geometrically mid-plane symmetric FGM plates with fully covered or embedded PFRC actuators under different sets of thermal and electric loading conditions. The results for monolithic piezoelectric actuator, which is a special case in the present study, are compared with those of PFRC actuators. The results reveal that, in the compressive buckling case, the applied voltage usually has a small effect on the postbuckling load-deflection curves of the plate with PFRC actuators, whereas in the thermal buckling case, the effect of applied voltage is more pronounced for the plate with PFRC actuators, compared to the results of the same plate with monolithic piezoelectric actuators.
机译:对于带有压电纤维增强复合材料(PFRC)执行器的简单支撑,可剪切变形的功能梯度板,提出了热环境下的压缩后屈曲和由于温度均匀升高而引起的热后屈曲。假定功能梯度材料(FGM)的材料特性是根据成分的体积分数按照简单的幂律分布在厚度方向上进行渐变的,并且假定FGM和PFRC层的材料特性均为与温度有关。控制方程基于包括热压电效应的高阶剪切变形板理论。考虑了板的初始几何缺陷。采用两步扰动技术来确定屈曲载荷(温度)和屈曲后的平衡路径。数值说明涉及在不同的热负荷和电负荷条件下,具有完全覆盖或嵌入的PFRC执行器的完美且不完美的几何中平面对称FGM板的压缩和热后屈曲行为。将单片压电致动器的结果(在本研究中是特例)与PFRC致动器的结果进行比较。结果表明,在压缩屈曲情况下,外加电压通常对带有PFRC致动器的板的后屈曲载荷-挠度曲线影响较小,而在热屈曲情况下,外加电压的影响更明显。与带有单片压电致动器的相同板的结果相比,具有PFRC致动器的板的结果。

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