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Dynamic modeling and vibration analysis of rotating beams with active constrained layer damping treatment in temperature field

机译:温度场主动约束层阻尼处理的旋转梁动力学建模与振动分析

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摘要

A new rigid-flexible coupled dynamic model considering temperature variation is developed for rotating beams with active constrained layer damping (ACLD) treatment in closed-loop and open-loop cases. By solving the corresponding linearized vibration equations of the smart system, the thermal vibration characteristics of the system in the two cases are analyzed. Influences of parameters, such as the angular velocity, the temperature, the gains of PD control, on the modal frequencies and damping ratios of the smart beam are discussed. Simulation results show that the variation of temperature can strongly affect the modal frequencies and damping performance of the ACLD beam, and there are critical temperatures that can change the damping performance of the ACLD beam in both open-loop and closed-loop cases. Research in this paper will be helpful for the dynamics of high speed rotating blades operating under thermal environment.
机译:针对在闭环和开环情况下采用主动约束层阻尼(ACLD)处理的旋转梁,开发了一种考虑温度变化的新的刚柔耦合动力学模型。通过求解智能系统的相应线性化振动方程,分析了两种情况下系统的热振动特性。讨论了角速度,温度,PD控制增益等参数对智能梁的模态频率和阻尼比的影响。仿真结果表明,温度的变化会严重影响ACLD光束的模态频率和阻尼性能,并且在开环和闭环情况下,都有一些临界温度会改变ACLD光束的阻尼性能。本文的研究将有助于在热环境下运行的高速旋转叶片的动力学。

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