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Design parameters of the timing chain drive and their influence on structure borne noise excitation - a numerical approach based on a fully coupled MBS-model of the timing drive

机译:定时链驱动器的设计参数及其对结构响应激励的影响 - 一种基于全耦合MBS模型的数值方法

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Durability and lifetime requirements are the main reasons why timing drive systems of recent passenger car engines are often equipped with chain drives. From the NVH point of view chain driven systems are usually more critical than synchronous belt-drives. In particular meshing impacts between chain and sprockets as well as impacts in the engagement/disengagement regions of sprockets/guides, lead to a considerable excitation of the engine's structure (whine noise). The MBS modeling of the entire timing drive as a filly coupled system and the assessment of the models validity by measurements of primary dynamics and structural excitation is presented. The influence of selected chain drive's design parameters on structure borne noise is evaluated.
机译:耐久性和寿命要求是近期乘用车发动机的定时驱动系统的主要原因是连锁驱动器。从NVH的角度来看,链驱动系统通常比同步带驱动器更为关键。特别是链条和链轮之间的啮合冲击以及链轮/导向器的接合/脱离区域的冲击,导致发动机结构的相当大激发(呼啸噪声)。将整个定时驱动器的MBS建模作为索端耦合系统,并提出了通过测量主要动力学和结构激发的模型有效性的评估。评估了所选链驱动器设计参数对结构噪声的影响。

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