首页> 外文期刊>SAE International Journal of Passenger Cars - Mechanical Systems >Friction Behavior of Diamond-Like Carbon Coated Ball Joint: Approach to Improving Vehicle Handling and Ride-Comfort
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Friction Behavior of Diamond-Like Carbon Coated Ball Joint: Approach to Improving Vehicle Handling and Ride-Comfort

机译:类金刚石碳涂层球形接头的摩擦行为:改善车辆操纵和乘坐舒适性的途径

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摘要

Research to respond to demands for improving usability of passenger vehicles has played important roles. Some aspects can be attributed to friction behavior of the steering and suspension components. In this study, we focus on an approach to improve handling, steering feel and ride-comfort of a vehicle by applying the appropriate friction behavior to tie-rod end ball joint. To control not only friction coefficient but also static-kinetic transient behavior, we investigate the potential use of diamond-like carbon (DLC) coatings. Different DLC coatings varied widely in hydrogen content, mechanical properties and micro-surface roughness are applied to the ball studs. Friction behavior corresponds to material characteristics and surface roughness of DLC. The "polymer-like" DLC with higher hydrogen tend to show higher kinetic friction and remarkable stick-slip behavior at the static-kinetic transient period, whereas the "graphite-like" DLC with lower hydrogen show lower kinetic friction and smooth transient behavior. From dynamic evaluation results of actual vehicle, the "graphite-like" DLC gives an appropriate friction behavior for the ball joint, leading to an improved steering feel, vehicle stability and ride-comfort. In contrast, the excessive friction causes a sticky steering feel and an increased harshness with high frequency vibration. We discuss the effectiveness in friction behavior of DLC-coated ball joints depending on the DLC coating properties, with either positive or negative effects found for vehicle handling and ride-comfort.
机译:响应于提高乘用车可用性的需求的研究已经发挥了重要作用。一些方面可以归因于转向和悬架部件的摩擦行为。在这项研究中,我们重点研究一种通过在横拉杆端部球窝接头上施加适当的摩擦性能来改善车辆的操纵性,转向感和乘坐舒适性的方法。为了不仅控制摩擦系数,而且还控制静动力学的瞬态行为,我们研究了类金刚石碳(DLC)涂层的潜在用途。不同的DLC涂层的氢含量,机械性能和微表面粗糙度变化很大,已应用于球头螺栓。摩擦行为对应于DLC的材料特性和表面粗糙度。氢含量较高的“类聚合物” DLC在静运动瞬态期间倾向于表现出较高的动摩擦和显着的粘滑行为,而氢含量较低的“石墨类” DLC具有较低的动摩擦和平稳的过渡行为。根据实际车辆的动态评估结果,“类石墨” DLC为球形接头提供了适当的摩擦性能,从而改善了转向感,车辆稳定性和乘坐舒适性。相反,过度的摩擦会导致发粘的转向感,并在高频振动的情况下增加刺耳的声音。我们将讨论DLC涂层球窝接头在摩擦行为方面的有效性,具体取决于DLC涂层的性质,以及对车辆操纵和乘坐舒适性的正面或负面影响。

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