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Nonlinear finite element analysis of laminated composite shells with actuating layers

机译:带驱动层的复合材料层合壳的非线性有限元分析

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摘要

Nonlinear finite element analysis of laminated composite shell structures with smart material laminae is presented in the study. Third-order shear deformation theory based on Sanders nonlinear shell kinematics is chosen for the shell formulation and it is used to study deflection suppression characteristics of laminated composite shells. The smart material used in this study to achieve damping of transverse deflection is a magnetostrictive material, Terfenol-D, with a linear constitutive model. A negative velocity feedback control is used with a constant control gain. Newmark's time integration scheme and Newton-Raphson iteration method are used to solve the resulting nonlinear equations. A number of parametric studies are carried out to understand the damping characteristics of laminated composite shells with embedded smart material layers.
机译:本研究提出了具有智能材料层板的层合复合壳结构的非线性有限元分析。选择基于桑德斯非线性壳运动学的三阶剪切变形理论作为壳的配方,用于研究层合复合壳的挠度抑制特性。在这项研究中使用的用于实现横向偏转阻尼的智能材料是具有线性本构模型的磁致伸缩材料Terfenol-D。负速度反馈控制用于恒定的控制增益。 Newmark的时间积分方案和Newton-Raphson迭代方法用于求解所得的非线性方程。为了了解具有嵌入式智能材料层的层压复合材料壳的阻尼特性,进行了许多参数研究。

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