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Analysis of a novel actively controlled split path automotive gear powertrain topology

机译:一种新型积极控制的分裂路径汽车齿轮动力系拓扑分析

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Automotive powertrains are susceptible to noise and vibration borne from the dynamical excitation of the gear meshes, particularly at partial loads, such as whine and rattling. A novel design has been proposed, based on the subdivision of the power flow into parallel paths via a compact internal gear preloading subsystem. The design allows the real-time control of mesh stiffness, load sharing and backlash, thereby allowing the instantaneous optimisation of the dynamical response of the system and the elimination of rattling and whine at any torque and speed. This paper performs an analysis of the new topology and discusses some of its advantages over conventional and preloaded zero-backlash gear powertrain designs.
机译:汽车动力系统易受噪声和振动的影响,齿轮网的动力激励,特别是在局部载荷,例如呜咽和嘎嘎声。 已经提出了一种新颖的设计,基于通过紧凑的内部齿轮预加载子系统的功率流入平行路径的细制设计。 该设计允许对网格刚度,负荷共享和间隙的实时控制,从而允许在任何扭矩和速度下瞬时优化系统的动力响应和消除嘎嘎声和呜咽。 本文对新拓扑进行了分析,并讨论了与传统和预加载的零间隙齿轮动力系设计的一些优点。

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