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首页> 外文期刊>International Journal of Precision Engineering and Manufacturing >Active Vibration Control of Smart Composite Laminates with Partial Debonding of Actuator
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Active Vibration Control of Smart Composite Laminates with Partial Debonding of Actuator

机译:智能复合材料层压板的主动振动控制与执行器的部分剥离

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摘要

The effect of actuator debonding on the performance of active vibration control is analytically investigated through an optimal control strategy An improved layerwise theory with Heaviside step functions, which addresses discontinuous displacement fields, is used for modeling the actuator debonding. General finite element procedures are developed to derive the governing equation taking into consideration the electro-mechanical coupling effect. A reduced-order model based on the state-space model is adopted for the design of the active controller Generally, debonding in actuators reduces their load carrying capability, dynamic properties and vibration control characteristics. The effect of debonding on the vibration control is investigated by the proposed analytical modeling. Numerical results using a 16-layer cross-ply laminate with healthy actuator and partially debonded actuator are given for the investigation of the vibration suppression efficiency and control effort. It is observed that the control authority of the composite laminates with partially debonded piezoelectric actuator is dramatically reduced by increasing the size of the actuator debonding Since debonding failure may occur during the service life of smart composite laminates, the results showed that actuator debonding must be considered as an uncertainty parameter in the design of active controllers.
机译:通过最佳控制策略分析了执行机构脱胶对主动振动控制性能的影响。采用具有Heaviside阶跃函数的改进的分层理论(针对不连续位移场)对执行机构脱胶进行建模。考虑到机电耦合效应,开发了通用的有限元程序来导出控制方程。主动控制器的设计采用基于状态空间模型的降阶模型。通常,执行器中的脱胶会降低其负载能力,动态特性和振动控制特性。通过提出的解析模型研究了脱胶对振动控制的影响。为研究减振效率和控制效果,给出了使用具有健康执行器和部分脱胶执行器的16层交叉层压板的数值结果。可以观察到,通过增大执行器的脱胶尺寸,可以显着降低具有部分脱胶的压电执行器的复合层压板的控制权限。由于在智能复合材料层压板的使用寿命期间可能发生脱胶失败,因此结果表明必须考虑执行器的脱胶作为有源控制器设计中的不确定性参数。

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