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Determining the volumetric characteristics of a passive linear electromagnetic damper for vehicle applications.

机译:确定用于车辆应用的无源线性电磁阻尼器的体积特性。

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摘要

Previous research has shown that passive electromagnetic damping could be feasible for automotive applications, but there would be a severe weight penalty, particularly in light weight vehicles. With modern advances in permanent magnets the feasibility of passive electromagnetic dampers is re-examined. A model of a permanent magnet and coil system is developed and validated in small scale. This magnet model is used to model a dynamic damper system which is again tested. This dynamic model is then scaled up to a two degree of freedom system to determine the damping for a quarter car model. Two damper designs are created each of which would produce a damping coefficient of 1,600 Ns/m. The proposed dampers require more than three times the volume of the equivalent hydraulic dampers.
机译:先前的研究表明,无源电磁阻尼对于汽车应用是可行的,但是会带来严重的重量损失,特别是在轻型车辆中。随着永磁体的现代发展,无源电磁阻尼器的可行性得到了重新检验。永磁线圈系统的模型已开发并进行了小规模验证。该磁体模型用于对动态阻尼器系统进行建模,然后对其进行测试。然后将此动态模型放大到两个自由度系统,以确定四分之一汽车模型的阻尼。创建了两个阻尼器设计,每个阻尼器设计将产生1,600 Ns / m的阻尼系数。所提出的缓冲器需要的体积是等效液压缓冲器的三倍以上。

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