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What Transmission Systems can do for Downsizing and Downspeeding of Powertrains and Cylinder Deactivation

机译:哪些传输系统可以用于发电机和汽缸停用的缩小和倒置

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The reduction of fuel consumption and CO_2 emissions by optimization of the whole powertrain is shown by introducing measures in the transmission system supporting the ICE to operate in areas of better specific consumption. One of the topics is the optimized damper technology for achieving downsizing and high turbocharging pressures along with effective downspeeding. As a result of investigations of cylinder deactivation in engines with different number of cylinders a new approach is introduced for implementing "RCD 1.5" rolling cylinder deactivation for three-cylinder engines to attain 1.5-cylinder operation or "RCD 2.5" for five-cylinder engines. The resultant torsional vibration excitation of 0.75th order in 13 or 1.25th order in 15N5 engine with rolling cylinder deactivation is controlled by the innovative damper technology, which entails a dual mass flywheel with an optimized characteristic and the use of centrifugal pendulum-type absorbers on the secondary DMF mass that are matched to the main excitation order. The fuel economy improvement including optimized cylinder filling by flexible valve control will be more than 6% in NEDC.
机译:通过在支撑冰的传输系统中引入支撑冰的措施来示出通过优化整个动力系的燃料消耗和CO_2排放的减少,以便在更好的特定消耗的区域中操作。其中一个主题是用于实现缩小和高涡轮增压压力的优化阻尼技术以及有效的倒下。由于在具有不同数量的气缸中的发动机中的汽缸停用的结果,引入了用于实现三缸发动机的“RCD 1.5”滚动气缸停用,以实现1.5缸动发动机的“RCD 1.5”滚动缸停用,或者为五缸发动机的“RCD 2.5” 。在15N5发动机中的13或1.25th订单中由轧缸停用的15n5ts排序所产生的扭转振动激励是由创新阻尼器技术控制的,这需要一种具有优化特性的双重批量飞轮,并使用离心摆型吸收器与主要激发顺序相匹配的次级DMF质量。燃油经济性改善,包括柔性阀控制的优化气缸填充将在NEDC中占6%以上。

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