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7-XDCT: Compact and Cost-Efficient Dual Clutch Transmission for Small and Mid-Size Vehicles

机译:7-XDCT:用于小型和中型车辆的紧凑型双离合器变速箱

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The automotive industry continues to develop new powertrain technologies aimed at reducing overall vehicle level fuel consumption. The ongoing trends of "downsizing" and "down speeding" have led to the development of turbocharged engines with low displacement and high torque density. In order to meet the launch response requirements with these engines as well as fuel economy needs, transmissions with large ratio spreads will need to be developed. Due to the lack of torque amplification from the torque converter, the next generation of dual clutch transmissions (DCT) will need to have larger launch ratios and ratio spreads than currently available in production today. This paper discusses the development of a new family of DCT (called "xDCT") for use in front wheel drive vehicles, aimed at meeting some of these challenges. The xDCT family features two innovative concepts, the idea of "gear generation" and "supported shifts". A combination of these features results in the development of a highly compact and efficient family of DCTs. The paper will begin with a definition of the xDCT concept followed by a layout of the gear sets for 7 and 10 speed versions of this transmission. Simulation results are used to show the powershift capability as well as efficiency of the developed transmission concept. Finally, a 3D design study is utilized to demonstrate key features of the transmission concept that will result in a highly efficient and compact transmission with low mechanical complexity and full powershift capabilities.
机译:汽车行业继续开发新的动力总成技术,旨在减少整体车辆水平燃料消耗。 “缩小化”和“向下超速”的持续趋势导致了具有低位移和高扭矩密度的涡轮增压发动机的发展。为了满足这些发动机以及燃料经济性需求的发射响应要求,需要开发大比率扩展的传输。由于从变矩器缺乏扭矩放大,下一代双离合器传输(DCT)需要具有比目前在生产中可用的更大的发射比和比率扩展。本文讨论了新款DCT系列(称为“XDCT”)的开发,用于前轮驱动车辆,旨在满足其中一些挑战。 XDCT家族具有两种创新概念,“齿轮发电”和“支持的转变”的想法。这些特征的组合导致开发高度紧凑且有效的DCT系列。本文将从XDCT概念的定义开始,后跟该传输的7和10个速度版本的齿轮组的布局。仿真结果用于显示PowerShift功能以及发达的传输概念的效率。最后,利用3D设计研究来展示传输概念的关键特征,这将导致具有低机械复杂性和完整的电力能力的高效和紧凑的传输。

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