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A seat suspension with a rotary magnetorheological damper for heavy duty vehicles

机译:用于重型车辆的带有旋转磁流变阻尼器的座椅悬架

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摘要

This paper presents the development of an innovative seat suspension working with a rotary magnetorheological (MR) fluid damper. Compared with a conventional linear MR damper, the well-designed rotary MR damper possesses several advantages such as usage reduction of magnetorheological fluid, low sealing requirements and lower costs. This research starts with the introduction of the seat suspension structure and the damper design, followed by the property test of the seat suspension using an MTS machine. The field-dependent property, amplitudedependent performance, and the frequency-dependent performance of the new seat suspension are measured and evaluated. This research puts emphasis on the evaluation of the vibration reduction capability of the rotary MR damper by using both simulation and experimental methods. Fuzzy logic is chosen to control the rotary MR damper in real time and two different input signals are considered as vibration excitations. The experimental results show that the rotary MR damper under fuzzy logic control is effective in reducing the vibrations.
机译:本文介绍了与旋转磁流变(MR)流体阻尼器一起工作的创新型座椅悬架的开发。与传统的线性MR阻尼器相比,设计合理的旋转MR阻尼器具有多个优点,例如减少了磁流变流体的使用,较低的密封要求和较低的成本。这项研究首先介绍了座椅悬架结构和减震器设计,然后使用MTS机器对座椅悬架进行了性能测试。测量并评估了新座椅悬架的场相关特性,幅度相关性能和频率相关性能。本研究着重于通过仿真和实验方法来评估旋转MR阻尼器的减振能力。选择模糊逻辑来实时控制旋转MR阻尼器,并将两个不同的输入信号视为振动激励。实验结果表明,旋转MR阻尼器在模糊逻辑控制下可以有效地减小振动。

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