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Design and testing of a MRF rotational damper for vehicle applications

机译:用于车辆的MRF旋转阻尼器的设计和测试

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Adaptive dampers are an interesting solution for conjugating the necessity of controllable devices and low power consumption. Magneto-rheological fluids (MRF) can be profitably employed in adaptive dampers because of the significant variation of fluid parameters with magnetic field properties. This paper focuses on the design process of an innovative rotational MR damper specifically created to be placed in the front-wheel suspension of a compact car. The advantages of the rotational damper and the definition of the optimal design are described. The proposed damper significantly reduces several key problems associated with MR devices: the quantity of fluid required, the sedimentation of ferromagnetic particles in the suspension and the abrasion of the seals. In fact, with this solution, low average working pressure, low flow velocity through valves, a wide range of variable damping characteristics, and high durability of the damper can be achieved. Thanks to this innovative component, different new architectures for adaptive suspension systems can be developed to have a planar distribution of the suspension components with a consequent space optimization and size reduction in the vertical direction.
机译:自适应阻尼器是一种有趣的解决方案,可用于控制可控设备和低功耗。磁流变流体(MRF)可以有利地用于自适应阻尼器,因为流体参数随磁场特性的变化很大。本文重点介绍了创新的旋转MR阻尼器的设计过程,该阻尼器专门用于放置在紧凑型汽车的前轮悬架上。描述了旋转阻尼器的优点以及最佳设计的定义。所提出的阻尼器大大减少了与MR设备相关的几个关键问题:所需的流体量,悬浮液中铁磁颗粒的沉积以及密封件的磨损。实际上,通过这种解决方案,可以实现较低的平均工作压力,较低的通过阀的流速,宽范围的可变阻尼特性以及阻尼器的高耐用性。由于有了这种创新的组件,可以开发出适用于自适应悬架系统的不同新架构,使悬架组件具有平面分布,从而在垂直方向上实现空间优化和尺寸减小。

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