首页> 外文会议>International Conference on Mechatronics and Automation >Design of a Hybrid Electromagnetic/Hydraulic Damper for Automotive Suspension Systems
【24h】

Design of a Hybrid Electromagnetic/Hydraulic Damper for Automotive Suspension Systems

机译:汽车悬架系统混合电磁/液压阻尼器的设计

获取原文

摘要

Vehicle suspension systems have been extensively explored in the past decades, contributing to ride comfort, handling and safety improvements. The new generation of power-train and propulsion systems, as a new trend in modern vehicles, poses significant challenges to suspension system design. Consequently, novel suspension concepts are required, not only to improve the vehicle's dynamic performance, but also to enhance the fuel economy by utilizing regeneration functions. However, the development of new-generation suspension systems necessitates advanced suspension components, such as springs and dampers. This paper presents the concept, design, and modeling of a novel hybrid electromagnetic/hydraulic damper for automotive suspension applications. This study indicates that the coupling of active/passive systems benefits the power consumption issue in active systems, while saving cost and weight. A potential hybrid damper design is proposed, where hydraulic damping effect is employed as a source of passive damping. The active part of the damper is designed to satisfy the required active force. The designed damper is analyzed under the steady-state conditions to determine the correlation between the passive damper performance and design parameters. It is demonstrated that a passive damping of ~1700 Ns/m can be achieved, by the addition of the viscous fluid to the active damper, which guaranties a fail-safe damper in case of power failure.
机译:车辆悬架系统已经在过去几十年中得到了广泛的探讨,有助于乘坐舒适性,操控和安全方面的改进。新一代动力系和推进系统,作为现代汽车的新趋势,提出了对悬挂系统的设计显著的挑战。因此,新的悬架概念是必要的,不仅提高了车辆的动力性能,而且通过利用再生功能,以提高燃油经济性。然而,新一代的悬架系统的发展就必须先进的悬架部件,如弹簧和减震器。本文呈现的概念,设计,和用于汽车悬架应用的新颖的混合电磁/液压阻尼器的建模。这项研究表明,主动/被动系统的耦合中受益有源系统的功耗问题,同时节省成本和重量。提出了一种潜在的混合阻尼器设计,其中液压阻尼效应被用作无源阻尼的来源。阻尼器的活性部分被设计成满足所要求的主动力。所设计的阻尼器的稳态条件下分析,以确定被动阻尼器的性能和设计参数之间的相关性。已经证明,一被动阻尼〜1700 Ns的/米可通过加入粘性流体向有源阻尼器,其担保故障安全阻尼器在断电的情况下实现的,。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号