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Dynamic responses of flexible-link mechanisms with passive/active damping treatment

机译:被动/主动阻尼处理的柔性连杆机构的动态响应

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This work presents a finite element formulation for non-linear transient dynamic analysis of adaptive beams. The main contribution of this work concerns the development of an original co-rotational sandwich beam element, which allows large displacements and rotations, and takes active/passive damping into account. This element is composed of a viscoelastic core and elastic/piezoelectric laminated faces. The latter are modeled using classical laminate theory, where the electromechanical coupling is considered by modifying the stiffness of the piezoelectric layers. For the core, a four-parameter fractional derivative model is used to characterize its viscoelastic dissipa-tive behavior. Equations of motion are solved using an incremental-iterative method based on the Newmark direct time integration scheme in conjunction with the Grunwald approximation of fractional derivatives, and the Newton-Raphson algorithm.
机译:这项工作为自适应梁的非线性瞬态动态分析提出了一个有限元公式。这项工作的主要贡献涉及原始同向旋转夹层梁元件的开发,该元件允许较大的位移和旋转,并考虑了主动/被动阻尼。该元件由粘弹性芯和弹性/压电层压面组成。后者是使用经典的叠层理论建模的,其中通过修改压电层的刚度来考虑机电耦合。对于岩心,使用四参数分数阶导数模型来表征其粘弹性耗散行为。使用基于Newmark直接时间积分方案,分数阶导数的Grunwald逼近和Newton-Raphson算法的增量迭代方法,求解运动方程。

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