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DESIGN OF AN ELECTRIC MOTOR TRANSMISSION SYSTEM WITHOUT FRICTION SYNCHRONIZATION

机译:无摩擦同步的电动机传动系统设计

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摘要

This paper investigates the design of a new transmission system without a friction synchronizer for high-performance hybrid vehicles. Manual and automated manual transmission systems traditionally use friction synchronizers to facilitate smooth transitions during a gearshift, ensuring speed matching and proper engagement of the gears. Active position sensing technology for dogteeth is being developed, along with the potential of speed matching using electric motors, eliminating the need for the friction synchronizer. However, in removing these friction synchronizer components, significant shock could be introduced to the transmission system with speed or position errors during a shift. This paper proposes a solution through a gear system that utilizes a face mesh design, torsional springs, and alternating teeth height. A prototype of this design was created and successfully tested as a proof of concept for a transmission system, which has the potential to improve hybrid, automated manual transmission design.
机译:本文研究了一种用于高性能混合动力汽车的不带摩擦同步器的新型变速箱系统的设计。手动和自动手动变速器系统传统上使用摩擦同步器来促进换档过程中的平稳过渡,从而确保速度匹配和齿轮正确接合。正在开发用于狗牙的主动位置传感技术,以及使用电动机进行速度匹配的潜力,从而消除了对摩擦同步器的需求。然而,在移除这些摩擦同步器部件时,可能在变速过程中以速度或位置误差将明显的震动引入变速箱系统。本文提出了一种通过齿轮系统的解决方案,该齿轮系统采用了面网设计,扭力弹簧和交替的齿高。创建了此设计的原型,并成功进行了测试,以作为变速箱系统的概念验证,该变速箱系统有可能改善混合动力,自动手动变速箱设计。

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