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首页> 外文期刊>JSME International Journal, Series C. Mechanical Systems, Machine Elements and Manufacturing >Variable Damping and Stiffness Vibration Control with Magnetorheological Fluid Dampers for Two Degree-of-Freedom System
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Variable Damping and Stiffness Vibration Control with Magnetorheological Fluid Dampers for Two Degree-of-Freedom System

机译:变阻尼和刚度的振动控制磁流变液阻尼器的两个二自由度系统

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摘要

Vibration isolation methods that vary damping and stiffness have demonstrated excellent authority over system vibration, thus, potentially making them attractive for many applications. However, conventional devices for controlling variable stiffness are typically complicated and difficult to implement in most applications. To address this issue a new method is proposed that requires two magnetorheological (MR) fluid dampers placed in series. With this configuration, variable damping and stiffness vibration control is simultaneous achieved by varying a small electric current to the MR dampers. This paper presents a theoretical and experimental analysis of a two degree-of-freedom system that is controlled by the MR dampers. Five different control schemes involving combinations of variable damping and variable stiffness are explored. The time and frequency responses of the two degree-of-freedom system to a random input show that combined variable damping and stiffness control provides the best vibration isolation over a frequency range spanning the system's two structural vibration modes. The experimental results agree well with the theoretical analysis.
机译:不同阻尼隔振方法刚度展示了出色的权威对系统振动,因此,潜在的他们为很多应用程序有吸引力。传统的设备控制变量硬度通常是复杂和困难的在大多数应用程序实现。这个问题提出了一种新的方法,需要两流体磁流变(MR)阻尼器在系列。阻尼和刚度的振动控制同时通过不同小电当前的MR阻尼器。理论和实验分析两种二自由度控制系统MR阻尼器。涉及的可变阻尼和组合探讨了变刚度。频率响应的两个自由度系统随机输入显示的总和变阻尼和刚度控制最好的隔振频率范围涵盖系统的两种结构振动模式。理论分析。

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