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Active vibration control of smart plates with partially debonded multilayered PZT actuators

机译:带有部分去粘的多层PZT执行器的智能板的主动振动控制

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摘要

The influence of actuator damage on the performance of closed loop vibration control is numerically evaluated. Debonding is considered a damage mode and finite element procedures are subsequently developed to introduce its effect on system matrices, namely elastic and electro-elastic stiffness. A simple modelling scheme for multiple debonding is proposed, which can also idealize multiple delamination in the host laminate. Debonding in actuators in general has reduced their load carrying appreciably as well as vibration control characteristics. Therefore, incorporating such a damage mode in the control design as an uncertainty parameter would help to realize a damage-tolerant active vibration control system. It is interesting to note that debonding in actuators has influenced both active damping and active stiffening effects.
机译:数值评估了执行器损坏对闭环振动控制性能的影响。脱胶被认为是一种破坏模式,随后开发了有限元程序来引入其对系统矩阵的影响,即弹性和电弹性刚度。提出了一种用于多重剥离的简单建模方案,该方案还可以使主体层压板中的多重剥离理想化。通常,执行器中的脱胶可显着降低其负载以及振动控制特性。因此,将这种破坏模式作为不确定性参数纳入控制设计将有助于实现耐损伤主动振动控制系统。有趣的是,执行器中的脱胶影响了主动阻尼和主动加劲效果。

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