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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Classification and analysis of electric-powered lateral torque-vectoring differentials
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Classification and analysis of electric-powered lateral torque-vectoring differentials

机译:电动侧向转矩矢量差速器的分类与分析

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摘要

An electric-powered lateral torque-vectoring differential utilizes the output torque of an electric motor for generating the torque difference between the right and the left wheels. Compared with conventional torque-vectoring differentials which utilize the slipping clutch or brake for torque vectoring, electric-powered lateral torque-vectoring differentials have advantages, namely the response and the control accuracy of the torque difference. However, an electric-powered lateral torque-vectoring differential is complex as it is composed of a single electric motor and some planetary gear units; therefore it is difficult to understand its mechanism and characteristics. This paper describes the classification and analysis of electric-powered lateral torque-vectoring differentials. Electric-powered lateral torque-vectoring differentials are studied using the velocity diagram which is utilized for analysis of the conventional torque-vectoring differentials. The analysis shows that the simplest electric-powered lateral torque-vectoring differential is a mechanism of five elements with two degrees of freedom; the mechanism is composed of a single electric motor, one differential gear unit and two planetary gear units; the gear ratios of the planetary gear units are equal to each other. The simplest mechanisms are classified into nine kinds and these have two differences in their characteristics, namely the torque amplification factor between the electric motor and the vectoring torque, and the revolution speeds of one rotational element. Finally, the best mechanism is evaluated from the differences of the characteristics.
机译:电动横向扭矩矢量差速器利用电动机的输出扭矩来产生左右车轮之间的扭矩差。与利用滑动离合器或制动器进行扭矩矢量控制的常规扭矩矢量差速器相比,电动侧向扭矩矢量差速器具有优势,即扭矩差的响应和控制精度。但是,电动侧向转矩矢量差速器很复杂,因为它由单个电动机和一些行星齿轮组组成。因此很难理解其机理和特征。本文介绍了电动侧向转矩矢量差速器的分类和分析。使用速度图研究电动横向扭矩矢量差速器,该速度图用于分析常规扭矩矢量差速器。分析表明,最简单的电动侧向转矩矢量差速器是由五个具有两个自由度的元件组成的机构。该机构由一台电动机,一个差速器和两个行星齿轮组成。行星齿轮箱的齿轮比彼此相等。最简单的机构分为九种,它们在特性上有两个差异,即电动机和矢量转矩之间的转矩放大系数以及一个旋转元件的转速。最后,从特性差异中评估最佳机制。

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