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Improving vehicle performance and operator ergonomics: Commercial application of smart materials and systems

机译:改善车辆性能和人机工程学:智能材料和系统的商业应用

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This article will discuss how controllable material technology, such as the use of active magnetorheological dampers, improves primary and secondary suspensions of vehicle. Although relatively new to the marketplace, semiactive suspensions in commercial automobiles and off-highway vehicles have been proven through the use of active magnetorheological dampers since 1998. In fact, magnetorheological suspension dampers are found today on the commercial vehicles of an increasing number of automotive original equipment manufacturers and leading off-highway original equipment manufacturers. Magnetorheological fluid dampers are simple in design and have the advantage of no moving parts. The resistive force from a magnetorheological damper is generated as iron particles, suspended in the magnetorheological fluid, pass through a magnetic field controlled by the electrical current passing through an electric coil contained within a moving piston surrounded by the fluid. By adjusting the current to the damper coil in response to feedback from vehicle sensors and a controller, the damping response of the suspension can be optimized and controlled in real time to provide optimal operator comfort. The magnetorheological damper system has a full-scale step response of less than 10 ms. Sophisticated control algorithms adapt to large changes in payload, enabling the vehicle to meet ride metrics without pneumatic load leveling. Other benefits of the magnetorheological damping system include higher speed in North Atlantic Treaty Organization double-lane change tests, reduced risk of rollover, improved accuracy of mounted weapons, and improved vehicle durability and readiness.
机译:本文将讨论可控材料技术(例如使用主动磁流变阻尼器)如何改善车辆的一级和二级悬架。尽管在市场上相对较新,但自1998年以来,通过使用主动磁流变阻尼器已经证明了商用车和非公路车辆中的半主动悬架。事实上,如今,在越来越多的原始汽车商用车中发现了磁流变悬架阻尼器。设备制造商和领先的非公路原始设备制造商。磁流变流体阻尼器设计简单,并且具有无活动部件的优点。当悬浮在磁流变流体中的铁颗粒通过磁场控制时,会产生来自磁流变阻尼器的阻力,该铁颗粒通过电流控制,该电流通过包含在被流体包围的活动活塞中的电线圈。通过响应来自车辆传感器和控制器的反馈来调节流向阻尼线圈的电流,可以实时优化和控制悬架的阻尼响应,以提供最佳的操作员舒适度。磁流变阻尼器系统具有小于10 ms的满量程阶跃响应。先进的控制算法可适应有效负载的巨大变化,使车辆无需气动负载平衡即可满足行驶指标。磁流变阻尼系统的其他好处包括:北大西洋公约组织双车道变更测试的速度更高,降低了翻车的风险,提高了安装武器的准确性以及提高了车辆的耐用性和就绪性。

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