Influence of the Sleeve Teeth Shape Parameters on the Shifting Process of Automated Manual Transmission for Electric Vehicles

IF 0.7 Q4 TRANSPORTATION SCIENCE & TECHNOLOGY SAE International Journal of Electrified Vehicles Pub Date : 2020-05-28 DOI:10.4271/14-09-02-0008
Bin Wu, Cun-Gin Chen
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Abstract

Electric vehicles equipped with automated manual transmission (AMT) provide the potential for improving the power and economic performance. However, due to the direct connection between the driving motor and the input shaft of the transmission, the higher moment of inertia at the input of AMT would lead to a poor shift quality. Based on the dynamic analysis of the engagement process of AMT without synchronizer, the dynamic model of the engagement process was established by using AMESim software. Through the analysis of the engagement process, it was concluded that the higher contact force and longer meshing duration under reverse contacting engagement condition is the main reason for the shift difficulty. In order to improve the shift quality, the influences of the sleeve teeth shape parameters of reverse contacting chamfer on the engagement process were analyzed and the simulation validation was performed. The simulation results showed that reducing the width and increasing the angle of the reverse contacting chamfer can effectively reduce the engagement duration and the contact force impulse, although the vehicle jerk was increased slightly, which did not exceed the most stringent criterion value of 10 m·s-3. Optimization of teeth shape parameters of reverse contacting chamfer can be considered to improve the shift quality of the electric vehicle equipped with an AMT.
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套筒齿形参数对电动汽车自动手动变速器换挡过程的影响
配备自动手动变速器(AMT)的电动汽车提供了提高动力和经济性能的潜力。然而,由于驱动电机与变速器输入轴直接连接,AMT输入处的转动惯量较大,会导致换档质量较差。在对无同步器AMT接合过程进行动态分析的基础上,利用AMESim软件建立了AMT接合过程的动态模型。通过对啮合过程的分析,得出在反向接触啮合条件下,较大的接触力和较长的啮合时间是造成换挡困难的主要原因。为了提高换档质量,分析了反接触倒角套筒齿形参数对啮合过程的影响,并进行了仿真验证。仿真结果表明,减小倒角宽度和增大倒角角度可有效减小啮合持续时间和接触力冲击,但车辆震动略有增加,未超过10 m·s-3的最严格判据值。通过对反接触倒角齿形参数的优化,可以提高电动汽车AMT换挡质量。
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来源期刊
SAE International Journal of Electrified Vehicles
SAE International Journal of Electrified Vehicles Engineering-Automotive Engineering
CiteScore
1.40
自引率
0.00%
发文量
15
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