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The Response Time of a Magnetorheological Fluid Squeeze Film Damper Rotor System

机译:磁流变液挤压膜阻尼转子系统的响应时间

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The response time of a rotor system on a magnetorheological(MR) fluid squeeze film damper was measured experimentally. The effects of rotating speed, step voltage and rotor imbalance on the response time were dealt with. It is shown that the MR fluid damper rotor system is a second-order dynamic system. The rapid response time defined by the time taken for the vibration amplitude to rise (fall) from 10 % (or 90%) to 90 % (or 10%) of the vibration amplitude difference between the initial and final states is 0.05~0.7s in applying a step voltage and 0.01-1.225s in dropping a step voltage, respectively. It is impossible for the response time to be within a few milliseconds. The response time is determined not only by magnetic field strength, MR fluid specification, rotational speed, but operation mode of the power supply. There is a zero initial delay time at either applying or dropping the step voltage, which is caused by the magnetizing or de-magnetizing process.
机译:实验测量转子系统对磁流变(MR)流体挤压膜阻尼器的响应时间。处理旋转速度,阶跃电压和转子不平衡的影响。结果表明,MR流体阻尼器转子系统是二阶动态系统。由初始和最终状态之间的振动幅度的振动幅度(或90%)到90%(或10%)所花费的快速响应时间为初始和最终状态之间的振动幅度为0.05〜0.7s在施加阶跃电压和0.01-1.225s时,分别丢弃阶梯电压。响应时间不可能在几毫秒内。响应时间不仅通过磁场强度,MR流体规格,转速而是电源的操作模式而确定的响应时间。在施加或丢弃阶梯电压任一期间存在零初始延迟时间,这是由磁化或脱模过程引起的。

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