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Nonlinear analysis of smart composite plate and shell structures

机译:智能复合板壳结构的非线性分析

摘要

Theoretical formulations, analytical solutions, and finite element solutions for laminated composite plate and shell structures with smart material laminae are presented in the study. A unified third-order shear deformation theory is formulated and used to study vibration/deflection suppression characteristics of plate and shell structures. The von K??rm??n type geometric nonlinearity is included in the formulation. Third-order shear deformation theory based on Donnell and Sanders nonlinear shell theories is chosen for the shell formulation. The smart material used in this study to achieve damping of transverse deflection is the Terfenol-D magnetostrictive material. A negative velocity feedback control is used to control the structural system with the constant control gain. The Navier solutions of laminated composite plates and shells of rectangular planeform are obtained for the simply supported boundary conditions using the linear theories. Displacement finite element models that account for the geometric nonlinearity and dynamic response are developed. The conforming element which has eight degrees of freedom per node is used to develop the finite element model. Newmark's time integration scheme is used to reduce the ordinary differential equations in time to algebraic equations. Newton-Raphson iteration scheme is used to solve the resulting nonlinear finite element equations. A number of parametric studies are carried out to understand the damping characteristics of laminated composites with embedded smart material layers.
机译:研究中提出了具有智能材料层板的层压复合板壳结构的理论公式,解析解和有限元解决方案。建立了统一的三阶剪切变形理论,用于研究板壳结构的振动/挠度抑制特性。公式中包括von K ?? rm ?? n型几何非线性。选择基于Donnell和Sanders非线性壳理论的三阶剪切变形理论作为壳的配方。在本研究中,用于实现横向挠度阻尼的智能材料是Terfenol-D磁致伸缩材料。负速度反馈控制用于以恒定的控制增益控制结构系统。利用线性理论,针对简单支撑的边界条件,获得了层压复合板和矩形平面壳的Navier解。建立了考虑几何非线性和动态响应的位移有限元模型。每个节点具有八个自由度的合格元素用于开发有限元模型。 Newmark的时间积分方案用于将常微分方程及时地简化为代数方程。牛顿-拉夫森迭代方案用于求解所得的非线性有限元方程。进行了许多参数研究,以了解具有嵌入式智能材料层的层压复合材料的阻尼特性。

著录项

  • 作者

    Lee Seung Joon;

  • 作者单位
  • 年度 2005
  • 总页数
  • 原文格式 PDF
  • 正文语种 en_US
  • 中图分类

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