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Experimental and numerical investigation of active vibration control over wide range of operating temperature

机译:宽工作温度范围内主动振动控制的实验和数值研究

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摘要

In this study, the dynamic response and the active vibration control behavior of cantilever-type structure over wide temperature range (-70 degrees C to 70 degrees C) are investigated experimentally and numerically. A cantilever structure of titanium alloy integrated with the collocated piezoelectric ceramic (PZT-5H) was studied for effective vibration amplitude reduction. The experimental results are verified with the numerical results which show good agreement among them. For the numerical simulations, finite element formulation using first-order shear deformation theory is implemented. The nonlinear fuzzy logic controller is designed as multi-input single-output system using 49 rules and implemented both experimentally and numerically to perform active vibration control. The results show that even moderate fluctuations in the temperature under study can considerably influence the performance of the piezoelectric ceramics used as sensors and actuators resulting in degraded performance for active vibration control.
机译:在这项研究中,对悬臂式结构在宽温度范围(-70摄氏度至70摄氏度)下的动力响应和主动振动控制行为进行了实验和数值研究。为了有效降低振动幅度,研究了钛合金悬臂结构与压电陶瓷(PZT-5H)的集成。数值结果证明了实验结果的正确性。对于数值模拟,使用一阶剪切变形理论实现了有限元公式化。非线性模糊逻辑控制器被设计为使用49条规则的多输入单输出系统,并通过实验和数字方式实现以执行主动振动控制。结果表明,即使研究温度的温和波动也会极大地影响用作传感器和执行器的压电陶瓷的性能,从而导致主动振动控制的性能下降。

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