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NEW AXLE FOR SERIAL HYBRID LOW FLOOR CITY BUS

机译:混合低层城市客车的新车轴

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Introducing hybrid solutions is an important approach to reduce fuel consumption and improve environmental compatibility - for passenger cars as well as for commercial vehicles. For city busses there are designs traced with parallel hybrid configuration as well as with serial hybrid configuration. This paper presents the stage of development of a low-floor bus drive axle for serial hybrid systems, which features integrated liquid cooled asynchronous motors. The axle is designed for use in the hybrid-option of a city bus. The paper discusses the general advantages and possibilities of the serial hybrid drive - especially regarding articulated vehicles - and deals with the special challenges of the axle design and the compatibility between standard bus and hybrid option.Regarding the general advantages of serial configurations, simulations of fuel consumption are touched. The high impact of application cycles on prediction results is presented. Focus is given to the questions of vehicle design architecture. It can be shown that the components in a serial system can be arranged in a very flexible way avoiding e. g. problems with weight distribution or traction.The design features of the new axle are covered in the second part. Starting from a predecessor design it is explained, how it was possible to meet the narrow installation space in a low floor bus. The communality of major components with the proven standard axle is shown. Specific design problems are the portal offset in a high-ratio gear reduction and the integration of the electric motor. The former has been solved with an innovative set of spur gears within a ring gear, which provides a space saving power split at the same time with the offset. The latter required a very sophisticated layout of the motor, which features special internal forced air ventilation and an external cooling jacket. These details are discussed.
机译:引入混合动力解决方案是减少燃油消耗和改善环境兼容性的重要方法-对于乘用车以及商用车。对于城市公交车,可以跟踪并行混合配置以及串行混合配置的设计。本文介绍了用于串行混合动力系统的低地板总线驱动桥的开发阶段,该桥具有集成的液冷异步电动机。该车轴设计用于城市公交车的混合动力选项。本文讨论了串行混合动力驱动的一般优势和可能性,尤其是在铰接车辆方面,并讨论了轴设计以及标准总线与混合动力选件之间兼容性的特殊挑战。 关于串行配置的一般优势,触及了油耗的模拟。提出了应用周期对预测结果的高影响。重点放在车辆设计架构的问题上。可以看出,可以以非常灵活的方式来安排串行系统中的组件,从而避免了e。 G。体重分布或牵引力问题。 第二部分介绍了新车轴的设计特征。从以前的设计开始,它说明了如何满足低地板总线上狭窄的安装空间。显示了主要零件与行之有效的标准车轴的共同性。特定的设计问题是高速齿轮减速时的门架偏移以及电动机的集成。前者已通过在环形齿轮内采用一组创新的正齿轮解决,该解决方案可提供节省空间的动力,同时补偿偏心。后者需要非常复杂的电动机布局,该电动机具有特殊的内部强制通风和外部冷却套。讨论了这些细节。

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