脉冲压力载荷下全夹紧复合材料层合板的主动振动控制

H. Uyanık
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引用次数: 3

摘要

在这个数值研究中,利用压电片控制全夹紧复合材料板在脉冲压力载荷下的振动。数值解首选有限元法。为了获得智能板结构的有限元模型,采用了考虑压电效应的半壳有限元。采用模态求和法对有限元模型进行自由度化简,由化简后的有限元模型得到状态空间方程,以确定合适的控制策略。采用最优线性二次型调节器(LQR)方法确定了反馈增益矩阵,成功地抑制了平板的振动。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Active vibration control of a fully clamped laminated composite plate subjected to impulsive pressure loadings
In this numerical study vibrations of a fully clamped composite plate subjected to impulsive pressure loadings are controlled by using piezoelectric patches. Finite element methods are preferred for numerical solutions. For obtaining finite element model of the smart plate structure, semiloof shell finite element including piezoelectric effects is used. Mode summation method is used for reducing the degrees of freedom of the finite element model and state-space equations are obtained from the reduced finite element model for determining appropriate control strategies. Optimal linear quadratic regulator (LQR) approach has been used to determine the feedback gain matrix and vibrations of the plate suppressed successfully.
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