首页> 外文会议>FISITA World Automotive Congress >DESIGN, SIMULATION STUDY AND PRELIMINARY EXPERIMENTAL RESULTS OF THE ELECTROMECHANICAL CLUTCH UNIT FOR THE SPLIT-CRANKSHAFT ENGINE
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DESIGN, SIMULATION STUDY AND PRELIMINARY EXPERIMENTAL RESULTS OF THE ELECTROMECHANICAL CLUTCH UNIT FOR THE SPLIT-CRANKSHAFT ENGINE

机译:分裂曲轴发动机机电离合器单元的设计,仿真研究和初步实验结果

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The Split-Crankshaft Engine (SCE) is an engine layout for passenger cars with a two-piece disengageable crankshaft. The secondary cranktrain can be disconnected through the electromechanically actuated Split-Clutch Unit (SCU). The efficiency gain due to increasing the load point is hereby enhanced by elimination of friction losses of the non-firing cylinders. In the present publication, the challenges encountered while developing such a crankshaft connecting clutch unit in terms of constructive practicability, control strategy for the angular synchronization of the crankshafts, as well as preliminary experimental results regarding the friction behavior of the SCU in engine oil are discussed. The principal feasibility of the SCU can be confirmed and design optimizations have been developed. A first control strategy for the SCU and its angular synchronization over 360°, which ensures the coupling of the partial engines during the full vehicle simulation of the common driving cycles like NEDC and WLTP, has been designed.
机译:分裂曲轴发动机(SCE)是具有两件式离去的曲轴的乘用车发动机布局。可以通过机电致动的分流离合器单元(SCU)断开二次曲轴。由增加负载点的增加引起的效率增益通过消除非烧制圆柱体的摩擦损失而增强。在本出版物中,讨论了在建设性实用性方面开发这种曲轴连接离合器单元的挑战,对曲轴角度同步的控制策略以及关于发动机油中SCU的摩擦行为的初步实验结果。可以确认SCU的主要可行性,并开发了设计优化。 SCU的第一控制策略及其角度同步超过360°,其确保了在NEDC和WLTP等公共驱动周期的全车仿真期间的部分发动机的耦合。

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