首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Root cause identification and physics of impact-induced driveline noise in vehicular powertrain systems
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Root cause identification and physics of impact-induced driveline noise in vehicular powertrain systems

机译:车辆动力总成系统中由碰撞引起的传动系噪声的根本原因识别和物理学

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摘要

Numerical and experimental investigations shed light on the root causes leading to the emergence and persistence of an acute metallic noise in rear wheel drive light truck drive-lines. Sudden demands in engine output torque combined with the presence of lash zones give rise to a phenomenon that is onomatopoeically referred to as clonk. Its multi physics nature requires a comprehensive study, which includes rigid multi-body dynamics, flexible body oscillations, and noise radiation computation. The verification of numerical results is achieved through the design and implementation of a transient dynamic experimental rig, which comprises the complete drivetrain from the engine flywheel to the rear axle. Parametric studies reveal high-frequency contributions in the driveline vibration response of certain structural modes of the driveshaft pieces, which are induced by remote impact of meshing transmission teeth through backlash. The numerically predicted spectrum of vibration is in good qualitative agreement with the experimental measurements. Combined study of the aforementioned results reveals the components that amplify the clonk noise.
机译:数值和实验研究揭示了导致后轮驱动轻型卡车传动系统中急性金属噪声出现和持续的根本原因。发动机输出扭矩的突然要求加上间隙区域的存在,引起了一种象声学上称为“堵塞”的现象。它的多物理性质需要进行全面的研究,其中包括刚性多体动力学,柔性体振动和噪声辐射计算。数值结果的验证是通过设计和实施瞬态动态实验装置实现的,该装置包括从发动机飞轮到后轴的完整传动系统。参数研究表明,传动轴部件某些结构模式的动力传动系统振动响应中存在高频贡献,这是由于啮合齿对传动装置齿隙的远程冲击引起的。数值预测的振动频谱与实验测量结果具有很好的定性一致性。对上述结果的综合研究揭示了放大克隆噪音的成分。

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