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首页> 外文期刊>Journal of intelligent material systems and structures >Development and simulation evaluation of a magnetorheological elastomer isolator for seat vibration control
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Development and simulation evaluation of a magnetorheological elastomer isolator for seat vibration control

机译:用于座椅振动控制的磁流变弹性体隔离器的开发和仿真评估

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摘要

Driver fatigue is one of the leading factors contributing to road crashes. Environmental stress, such as unwanted seat vibration, is a key contributor to fatigue. This article presents the design and development of a magnetorheological elastomer isolator for a seat suspension system. By altering the magnetorheological elastomer isolator's stiffness through a controllable magnetic field and selecting suitable control strategy, the system's natural frequency can be changed to avoid resonance, which consequently reduce the vehicle's vibration energy input to seat, and thus suppress the seat's response. Experimental results show that the developed magnetorheological elastomer isolator is able to reduce vibration more when compared with the passive isolation system, indicating the significant potential of its application in vehicle seat vibration control.
机译:驾驶员疲劳是导致道路交通事故的主要原因之一。环境压力(例如不希望的座椅振动)是导致疲劳的关键因素。本文介绍了用于座椅悬架系统的磁流变弹性体隔离器的设计和开发。通过通过可控制的磁场改变磁流变弹性体隔离器的刚度并选择合适的控制策略,可以更改系统的固有频率以避免共振,从而减少了车辆输入到座椅的振动能量,从而抑制了座椅的响应。实验结果表明,与被动隔振系统相比,研制出的磁流变弹性体隔振器能够更加减少振动,表明其在车辆座椅振动控制中的巨大潜力。

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