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Vehicle Implementation of a GM RWD Six-Speed Integrated-Friction-Launch Automatic Transmission

机译:车辆实施GM RWD六速综合摩擦启动自动变速箱

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Friction Launch transmissions use a wet multi-plate clutch to replace the torque converter in an automatic transmission. By using one of the range clutches inside the transmission, the benefits of this integrated friction launch technology (IFL), such as reduction in mass, packaging, and cost, can be enhanced. The availability of new automatic transmissions with higher number of speeds and wider ratio spreads makes IFL technology more viable than ever before. The new General Motors Corporation Rear-Wheel-Drive (RWD), six-speed transmission has paved the way for a full implementation of integrated friction launch technology in a General Motors Corporation full-size, Sport-Utility Vehicle (SUV). This project focuses on both hardware and control issues with the friction launch clutch. The hardware issues include designing the clutch for launch energy, cooling, and durability. The control issues include developing robust control algorithms for launch and creep, and providing damping to the driveline, when required, and ensuring acceptable vehicle driveability. This paper describes in detail the design of the clutch and the cooling system, and the development of the launch and creep control algorithms. Vehicle test data presented in this report show that High-Energy-Capacity Clutch (HECC) design as a friction-launch device can handle a wide-open throttle launch for a full-size truck application. The control strategy developed in this project significantly reduces the gap between the driveability of a starting clutch vehicle and a torque-converter-equipped vehicle. Also, vehicle fuel economy tests revealed promising fuel economy improvements over production intent 6-speed RWD transmission.
机译:摩擦发射变速器使用湿多板离合器在自动变速器中更换扭矩转换器。通过使用传动装置内的范围内的一个范围内的一个,可以提高这种集成摩擦发射技术(IFL)的益处,例如弥补质量,包装和成本,可以提高。具有较多速度和更广泛的比例扩展的新型自动变速箱的可用性使IFL技术比以往任何时候都更加可行。新型通用电机公司追逐轮车(RWD),六速传动铺平了通用汽车公司全尺寸,运动型电机(SUV)的综合摩擦发射技术。该项目侧重于摩擦发射离合器的硬件和控制问题。硬件问题包括设计用于发射能量,冷却和耐用的离合器。控制问题包括开发用于发射和蠕变的强大控制算法,并在需要时向传动系提供阻尼,并确保可接受的车辆驾驶。本文详细介绍了离合器和冷却系统的设计,以及发射和蠕变控制算法的开发。本报告中提供的车辆测试数据显示,作为摩擦发射装置的高能电容离合器(HECC)设计可以为全尺寸卡车应用处理宽开放的节流发射。该项目中开发的控制策略显着降低了起动离合器车辆和装备扭矩转换器的驾驶性之间的间隙。此外,车辆燃油经济性测试揭示了对生产意图6速RWD变速器的有前途的燃油经济性。

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