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首页> 外文期刊>Journal of Reinforced Plastics and Composites >Bending Behavior of Piezo-hygrothermo-elastic Smart Laminated Composite Flat and Curved Plates with Active Control
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Bending Behavior of Piezo-hygrothermo-elastic Smart Laminated Composite Flat and Curved Plates with Active Control

机译:主动控制的压电-湿热弹性智能层合平板和弯曲板的弯曲行为

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摘要

The actuation and sensing behavior of piezo-hygrothermo-elastic flat and curved plates with active control is presented.A finite element procedure involving coupled piezoelectric field with hygrothermal strain is derived using first order shear deformation theory and is implemented in a nine-noded Lagrangian plate element.The accuracy of the element to model the piezoelectric,pyroelectric,hygroelastic,and thermoelastic behaviors of flat and doubly curved plates is validated with standard benchmark problems.The directional actuation that represents the piezoelectric anisotropy is introduced in the analysis and a comparison is made with isotropic actuation to control the thermal and moisture induced deformation in the laminated plates.Numerical studies are carried out with different fiber orientations to capture the influence of piezoelectric anisotropy on the actuation and sensing characteristics of the active lamina.The directionally actuated piezoelectric lamina that has a reduced piezoelectric capability in transverse direction is efficient,if properly tailored along the fiber directions.However,it is observed that the isotropic actuation has the potential to control the thermal and moisture developed deflection in angle-ply and cross-ply laminates.The actuator lamina is efficient if placed on the top of curved laminates in controlling the deflection.
机译:提出了具有主动控制的压电-湿热弹性平板和弯曲板的激励和传感行为。利用一阶剪切变形理论推导了包含湿热应变的压电场的有限元程序,并在九节点拉格朗日板中实现通过标准基准问题验证了用于模拟平板和双曲板的压电,热电,吸湿和热弹性行为的元件精度。分析中引入了代表压电各向异性的方向驱动,并进行了比较具有各向同性致动以控制层压板中的热和湿气引起的变形。进行了不同纤维取向的数值研究,以捕获压电各向异性对有源层板的致动和传感特性的影响。减少派如果沿纤维方向进行适当调整,则横向方向的压电能力会很有效。但是,观察到各向同性的驱动力有可能控制角层和交叉层状层压板中热和湿气产生的挠度。如果将其放置在弯曲层压板的顶部,则可有效控制偏转。

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