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A Bi-Directional, Liquid-Spring-Magnetorheological-Fluid-Damper System

机译:双向,液体弹簧 - 磁流变学 - 流体阻尼系统

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The goal of this study was to demonstrate the feasibility of a novel fail-safe, bi-directional liquid spring, controllable magnetorheological fluid damper (BDLS-CMRD). This research introduces a device with independently pre-set spring forces in compression and rebound combined with controllable MR fluid damping. The BDLS-CMRD can potentially replace traditional metal spring-damper suspension systems. Bulky and heavy metal spring-damper suspension systems can be upgraded to the smaller and lighter BDLS-CMRD, reducing the mass of vehicle suspensions. In this work, a BDLS-CMRD was designed, fabricated, tested and evaluated in three phases. The first design phase demonstrates the concept of a liquid spring with different spring forces in compression and rebound. The second phase incorporates viscous fluid damping of pure silicone fluid with the first phase BDLS. The final design phase combines a controllable magnetorheological fluid (MRF) damper with the first phase BDLS. This study presents the response of the BDLS-CMRD in a wide range of preloaded conditions and frequencies. Experiments were performed for sinusoidal displacements in the quasistatic and dynamic ranges to evaluate the performance of the BDLS-CMRD under different magnetic fields. The experimental results demonstrate that the device operates with significantly different spring forces from the compression to rebound regions, while providing passive viscous fluid damping or controllable MR fluid damping. This system has successfully demonstrated that the utility of a bi-directional liquid spring can be combined with the reliability of passive viscous fluid damping and the capabilities of controllable MR fluid damping into one compact and versatile device.
机译:本研究的目标是展示新型故障安全,双向液体弹簧,可控磁流变流体阻尼器(BDLS-CMRD)的可行性。该研究介绍了一种具有独立预先设定的弹簧力的装置,用于压缩和反弹与可控MR流体阻尼结合。 BDLS-CMRD可能会替换传统的金属弹簧阻尼器悬架系统。笨重和重金属弹簧阻尼器悬架系统可以升级到较小和更轻的BDLS-CMRD,降低车辆悬浮液的质量。在这项工作中,三相设计,制造,测试和评估了BDLS-CMRD。第一个设计阶段演示了液体弹簧的概念,其中具有不同的弹簧力在压缩和反弹中。第二相用第一相BDL掺入纯硅氧烷流体的粘性流体阻尼。最终的设计阶段将可控磁流变流体(MRF)阻尼器与第一相BDL组合。本研究介绍了BDLS-CMRD在各种预载条件和频率范围内的响应。对Quasistatic和动态范围内的正弦位移进行实验,以评估不同磁场下BDLS-CMRD的性能。实验结果表明,该装置与从压缩到回弹区域的显着不同的弹簧力操作,同时提供被动粘性流体阻尼或可控的MR流体阻尼。该系统已成功证明双向液体弹簧的效用可以与被动粘性流体阻尼的可靠性以及可控MR流体阻尼成一个紧凑型和多功能装置的可靠性。

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