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Crank-Lever Electromagnetic Damper (CLEMD) Design for Automobile Suspension System

机译:汽车悬架系统的曲柄杆电磁阻尼器(CLEMD)设计

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摘要

An effective damper is among the most important components of the suspension system. It ensures the right amount of damping force is acting on the suspension system to provide comfort to the passengers and proper road holding to tires. Unfortunately, the energy absorbed by the dampers from the suspension system gets wasted in the form of heat. In this article, it is proposed to use innovative electromagnetic damper (EMD) with a crank-lever mechanism to recover energy from the suspension system. The goal is to develop a lightweight design of EMD that can recover a high amount of power. For the design, an off-road vehicle is used since in off-road vehicles the amount of power wasted in the suspension system is high. Three different design approaches are used, which include single-stage gearbox type, two-stage gearbox type, and three-stage gearbox type of CLEMD. Out of them, the best design, i.e. three-stage gearbox type of CLEMD is selected because of minimum weight and inertia of the components. This article is focused on the design and analysis of the three-stage gearbox type of CLEMD. On the basis of the output of numerical simulations of vehicle model, specifications for crank-lever electromagnetic damper (CLEMD) are driven and design is carried out. Also, performance analyses of CLEMD are carried out by interfacing model of CLEMD with the model of a vehicle. The advantage of CLEMD is it can act as an actuator to provide active force in an active suspension system.
机译:有效的阻尼器是悬架系统最重要的组件之一。它确保了适当的阻尼力作用在悬架系统上,为乘客提供舒适性,并持有到轮胎的适当道路。不幸的是,阻尼器从悬架系统吸收的能量以热量的形式浪费。在本文中,建议使用具有曲柄杆机构的创新电磁阻尼器(EMD)来从悬架系统中恢复能量。目标是开发一种能够恢复高功率的EMD的轻量级设计。对于该设计,越野车辆以来,悬架系统中浪费的功率量高。使用三种不同的设计方法,包括单级变速箱型,两级变速箱类型和三级变速箱类型的钢铁。除了它们中,最好的设计,即,由于组件的最小重量和惯性,选择了三级变速箱类型的钢铁。本文专注于三级变速箱钢铁型钢铁设计和分析。在车型数值模拟的输出的基础上,驱动曲柄杆电磁阻尼器(CLEMD)的规格并进行设计。此外,通过用车辆的模型接合钢铁的型号来进行CLEMD的性能分析。铁丝德的优点是它可以用作致动器,以在有源悬架系统中提供有源力。

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