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Optimal design and experimental evaluation of magneto-rheological mount applied to start/stop mode of vehicle powertrain

机译:应用于汽车动力总成启动/停止模式的磁流变支架的优化设计与实验评估

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摘要

Magneto-rheological mount is one of the most effective vibration isolation devices for the vibration isolation system of vehicle powertrain. In this article, a flow type of magneto-rheological mount was proposed to control the vibration and the torque excitation of the engine when vehicle was in start/stop mode. A mathematical model for the flow type of magneto-rheological mount was formulated with consideration of the influence of current on magneto-rheological fluid viscosity and the relationship between liquid resistance effect and flow rate in damping gap. Then, a co-simulation optimal platform was developed by the Isight and the ANSYS, and the non-dominated sorting genetic algorithm II was used to optimize magnetic circuit. Subsequently, two prototypes of magneto-rheological mounts were manufactured according to the initial design and the optimal design model, and the dynamic performance test of magneto-rheological mount monomer and the vibration isolation performance test of the whole vehicle under start/stop mode were carried out, respectively. The experimental results showed that the controllability and the vibration isolation performance of the optimal design magneto-rheological mount were significantly improved compared with the initial design.
机译:磁流变悬架是车辆动力总成隔振系统中最有效的隔振装置之一。在本文中,提出了一种流动型磁流变安装座,以控制车辆在启动/停止模式下的振动和发动机的扭矩激励。考虑电流对磁流变流体粘度的影响以及阻尼间隙中液体阻力效应与流量之间的关系,建立了磁流变支架流动类型的数学模型。然后,由Isight和ANSYS开发了一个协同仿真的最佳平台,并使用非主导的排序遗传算法II来优化磁路。随后,根据初始设计和最佳设计模型制造了两个磁流变悬架原型,并进行了磁流变悬架单体的动态性能测试和整车在启动/停止模式下的隔振性能测试。分别。实验结果表明,与初始设计相比,最优设计的磁流变安装座的可控性和隔振性能得到了显着改善。

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