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Simulation of engine's structure-borne noise excitation due to the timing chain drive

机译:由于定时链驱动器仿真发动机结构的噪声激励

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Due to durability and lifetime requirements, the timing drive systems of modern passenger car engines are often equipped with chain drives. Chain-driven systems are usually more critical in view of NVH compared to synchronous belt-drives. Mainly the polygonal effect and the related phenomena, like impacts caused by the meshing between the chain-links and impacts in the engagement/disengagement regions of guides and sprockets, lead to an increased excitation of the engine's structure. Since the polygonal effect occurs with the meshing frequency, the excited vibrations are basically narrow banded and can finally be recognized as an annoying whine-noise. This paper describes the modelling (MBS) of the entire timing-drive system containing a bushing-chain-drive, camshafts and all connected single valve trains. The investigations carried out are mainly focused on the primary dynamics of the chain drive and the forces which are transferred to the engine's structure. A comparison with measurements serves to assess the validity of the MBS-Model used in view of the primary chain-drive dynamics and induced structural excitation.
机译:由于耐用性和寿命要求,现代乘用车发动机的定时驱动系统通常配备链式驱动器。与同步带驱动器相比,链驱动系统通常更为危重。主要是多边形效应和相关现象,如引导和链轮的接合/脱离区域的啮合和冲击之间的啮合引起的影响,导致发动机结构的激发增加。由于多边形效果随着啮合频率发生,因此激发的振动基本上是窄的带状,并且最终可以被识别为令人讨厌的呜呜声。本文介绍了包含衬套链轮驱动,凸轮轴和所有连接的单阀列车的整个时序驱动系统的建模(MBS)。进行的调查主要集中在链条驱动和转移到发动机结构的力的主要动力学上。与测量的比较有助于评估用于考虑主要链驱动动态和诱导的结构激发的MBS模型的有效性。

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