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基于压力增强的磁流变阻尼器中高频阻尼性能研究
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Study on Medium and High Frequency Damping Performance of Magnetorheological Damper Based on Pressure Enhancement
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    摘要:

    为减小磁流变阻尼器在微振幅中高频激励下磁控耗能能力降低带来的影响,提出 采用增加磁流变液初始压强来增加工作压强的方法以改善磁流变阻尼器在中高频激励下的 磁控耗能能力. 基于磁流变液的可压缩特性,构建磁流变阻尼器的力学模型,分析中高频时工 作压强对阻尼力的影响;设计加工了无补偿装置的单杆直线液体弹簧式磁流变阻尼器,通过 实验测试验证力学模型的准确性 . 正弦激励下的实验结果表明:增加磁流变阻尼器工作压强 可以使阻尼曲线更饱满,且工作压强较高时,磁流变阻尼器耗能能力明显优于工作压强较低 时磁流变阻尼器耗能能力;根据实验结果发现:相比于初始压强为标准大气压,当初始压强为 5 MPa时,阻尼增幅最大为 31.3%,耗能增幅最大为 78.5%;此外,增加工作压强后工作区域磁 场更容易饱和,等效刚度和等效阻尼系数都会随着工作压强的增加而上升.

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    In order to reduce the effect of reduction of the magnetron energy dissipation capacity of the magneto? rheological damper under a micro-amplitude,medium and high frequency excitation,this paper proposes a method to increase the working pressure by increasing the initial working pressure of the magnetorheological fluid in order to improve the magnetorheological damper energy dissipation capability under a medium and high frequency excitation. Based on compressible characteristics of magnetorheological fluids,a mechanical model of magnetorheological damper was constructed. The effect of working pressure on the damping force at medium and high frequency excitation was analyzed. A single rod linear liquid spring-type magnetorheological damper without a compensation device was designed and processed,and the accuracy of the mechanical model was verified through experimental tests. The experimental results under sinusoidal excitation showed that:increasing the working pressure of the magnetorheologi? cal damper can make the damping curve much fuller. When the working pressure is higher,the energy consumption capacity of the magnetorheological damper is significantly better than that of the magnetorheological damper when the working pressure is lower. According to the experimental results,it is also found that compared with the initial pressure of standard atmospheric pressure,when the initial pressure is 5 MPa,the maximum damping is increased up to 31.3%. The maximum increase in energy consumption is 78.5%. In addition,by increasing the working pres? sure,the magnetic field in the working area is more likely to saturate. The equivalent stiffness and equivalent damp? ing coefficient are increased with the increase of the working pressure.

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董小闵 ,晏茂森 ,于建强 ,李鑫 ,宋现宇 ,邢建伟 .基于压力增强的磁流变阻尼器中高频阻尼性能研究[J].湖南大学学报:自然科学版,2022,49(6):16~24

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  • 在线发布日期: 2022-06-23
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