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Dynamic characterization of controlled multi-channel semi-active magnetorheological fluid mount

机译:受控多通道半主动磁流液钻井动态特征

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In this paper, a novel structure of a controlled multi-channel semi-active magnetorheological (MR) fluid mount is proposed, including four controlled channels and one rate-dip channel. Firstly, the magnetic circuit analysis, rate-dip channel optimization design, and MR fluid mount damping analysis are given. Secondly, the mathematical model of the controlled multi-channel semi-active MR fluid mount is constructed. We analyze the effect of controlled multi-channel closing on the dynamic characteristics of the mounts and the effect of the presence or absence of the rate-dip channel on the low-frequency isolation of the mount. Finally, the controlled multi-channel semi-active MR fluid mount was applied to the 1 / 4 vehicle model (a model consisting of an engine, a single engine mount, a single suspension and a vehicle frame), with the transmissibility of the engine relative to the vehicle frame at low frequency and the transmissibility of the engine reciprocating unbalanced force to the vehicle frame magnitude at high frequency as the evaluation index. Numerical simulation shows the following points. (1) The controllable multi-channel semi-active MR fluid mount can achieve adjustable dynamic stiffness and damping with applied 2? A current to different channels. (2) With known external excitation source, applied currents to different controllable channels can achieve the minimum transmissibility and meet the mount wide-frequency vibration isolation requirement, while adding a rate-dip channel can improve the low-frequency vibration isolation performance of the MR fluid mount. (3) Switching and closing different controllable channels in the 1 / 4 vehicle model can achieve the minimum transmissibility of low-frequency engine vibrations relative to the vehicle frame and high-frequency engine vibrations reciprocating an unbalanced force to the vehicle frame. Therefore, the design of the controllable multi-channel semi-active MR fluid mount can meet the wide-frequency isolation.
机译:本文提出了一种受控多通道半极管半极管磁流学(MR)流体支架的新颖结构,包括四个受控通道和一个速率达到通道。首先,给出了磁路分析,速率 - 达频通道优化设计和MR流体安装阻尼分析。其次,构造了受控多通道半极管MR流体安装件的数学模型。我们分析了控制多通道关闭对安装率的动态特性的影响以及速率 - DIP通道的存在或不存在对安装的低频隔离的影响。最后,将受控的多通道半极管MR流体安装件应用于1/4车辆模型(由发动机,单个发动机安装,单个悬架和车辆框架组成的模型,发动机的传动率相对于低频的车​​辆框架和发动机的传递率往复运动在高频上以高频的车辆帧幅度作为评估指标。数值模拟显示以下几点。 (1)可控的多通道半主动MR流体支架可实现可调节的动态刚度和施加2的阻尼?电流到不同的频道。 (2)具有已知的外部激励源,应用于不同可控通道的施加电流可以实现最小的传输性并满足安装宽频率振动隔离要求,同时添加速率 - DIP通道可以提高MR的低频振动隔离性能流体安装。 (3)在1/4车型中切换和关闭不同的可控通道,可以实现相对于车架的低频发动机振动的最小传动性,以及往复到车架的不平衡力的高频发动机振动。因此,可控多通道半主动MR流体支架的设计可以满足宽频隔离。

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