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首页> 外文期刊>Journal of Sound and Vibration >Dynamic modeling and analysis of rotating beams with partially covered enhanced active constrained layer damping treatment
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Dynamic modeling and analysis of rotating beams with partially covered enhanced active constrained layer damping treatment

机译:具有部分覆盖增强有源约束层阻尼处理的旋转梁动态建模与分析

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摘要

A new dynamic model for vibration analyses of rotating flexible beams with partially covered enhanced active constrained layer damping (EACLD) treatment is developed. To improve the previous EACLD beam modeling method that only considers the edge element stiffness, the edge element of the EACLD patch is modeled as an equivalent spring with attached point mass so that the mass effect of the two added edge elements are included. The discrete rigid-flexible coupled dynamic equations of the hub-beam systems with EACLD treatment in the open-loop and closed-loop cases are derived by using the assumed mode method and Lagrange's equations. The effect of the angular velocity, edge element stiffness, edge element mass, and coverage ratio of the EACLD on the vibration characteristics of the system are investigated. Simulation results show that the edge element stiffness will increase the natural frequencies of the system and make the system become stiffer, while the edge element mass will decrease the natural frequencies of the system. Results from the traditional ACLD beam model, the EACLD beam model without edge element mass and the present EACLD beam model with edge element mass are also compared with each other. It is indicated that the mass effect of the added edge elements should be considered in practical applications and it could even play a positive role in stiffness or damping regulation of systems in conjunction with the vibration controller design. (C) 2019 Elsevier Ltd. All rights reserved.
机译:开发了一种具有部分覆盖增强有源约束层阻尼(EACLD)处理的旋转柔性梁的振动分析的新动态模型。为了提高仅考虑边缘元件刚度的先前EACLD波束建模方法,EACLD贴片的边缘元件被建模为具有附加点质量的等效弹簧,使得包括两个附加的边缘元件的质量效果。通过使用假定的模式方法和拉格朗日的方程,导出具有EACLD处理的集线器系统的离散刚性灵活耦合动态方程。研究了角速度,边缘元件刚度,边缘元件质量和EACLD的覆盖率对系统的振动特性的影响。仿真结果表明,边缘元件刚度将增加系统的自然频率,使系统变得更硬,而边缘元件质量将降低系统的自然频率。传统ACLD光束模型的结果,没有边缘元件质量的EACLD光束模型和具有边缘元件质量的现有EACLD光束模型也是相互比较的。结果表明,在实际应用中应考虑添加边缘元件的质量效果,并且甚至可以与振动控制器设计一起在系统的刚度或阻尼调节中发挥积极作用。 (c)2019 Elsevier Ltd.保留所有权利。

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