首页> 外文会议>Conference on Smart Materials, Adaptive Structures and Intelligent Systems >ACTIVE CONTROL OF GEOMETRICALLY NONLINEAR TRANSIENT RESPONSE OF SMART LAMINATED COMPOSITE PLATE INTEGRATED WITH AFC ACTUATOR AND PVDF SENSOR
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ACTIVE CONTROL OF GEOMETRICALLY NONLINEAR TRANSIENT RESPONSE OF SMART LAMINATED COMPOSITE PLATE INTEGRATED WITH AFC ACTUATOR AND PVDF SENSOR

机译:AFC执行器和PVDF传感器集成的智能层压复合板几何非线性瞬态响应的主动控制

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A coupled electromechanical finite element formulation for active control of geometrically nonlinear transient response of laminated composite plate is studied. First order shear deformation theory and Von Karman type nonlinear strain displacements are used. The plate is discritised using eight noded quadratic isoparametric elements with five mechanical degrees of freedom and one electrical degree of freedom per node. Newton-Raphson iterative method in association with Newmark time integration method is used to solve the nonlinear finite element equilibrium equation. Negative velocity feedback control algorithm is used to control the dynamic response of the smart laminated composite plate. Active fiber composite (AFC) layer poled in fiber direction acting as distributed actuator and PVDF layer poled in thickness direction acting as sensor are considered. Present study involves two types of actuator sensor arrangements. Case I: the substrate is sandwiched between AFC actuator and PVDF sensor. Case II: AFC actuator and PVDF sensor are collocated on top of the substrate. The effect of piezoelectric fiber orientation in actuator layer on vibration control for both cross ply and angle ply laminates are examined.
机译:研究了用于主动控制层压复合板的几何非线性瞬态响应的主动控制的耦合机电有限元制剂。使用一阶剪切变形理论和von Karman型非线性应变位移。使用八个点向二次异戊酰胺元素进行区分,使用具有五种机械自由​​度和每个节点的一个电气自由度。牛顿 - 拉文森迭代方法与纽马克时间集成方法相关联用于解决非线性有限元平方程。负速度反馈控制算法用于控制智能层压复合板的动态响应。考虑了用作作为传感器的厚度方向上的分布式致动器和PVDF层的光纤方向上抛光的活性纤维复合(AFC)层。目前的研究涉及两种类型的执行器传感器装置。案例I:基板夹在AFC致动器和PVDF传感器之间。案例II:AFC致动器和PVDF传感器在基板的顶部并置。研究了致动器层在交叉层和角度层层压板上致动器层中压电纤维取向对振动控制的影响。

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