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Numerical and Experimental Analysis of Manual Transmissions - Gear Rattle

机译:手动变速器的数值和实验分析-齿轮拨浪鼓

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摘要

Manual transmission gear rattle is the result of repetitive impacts of gear meshing teeth within their backlash. This phenomenon can occur under various loaded or lightly loaded conditions. It fundamentally differs from other transient NVH phenomena, such as clonk or thud, which are due to impulsive actions [1]. However, they all have their lowest common denominator in the action of contact/impact forces through lubricated contacts. Various forms of rattle have been cited, owing to the mechanism of manifestation and operating conditions [2-4], among which drive rattle, creep rattle and over-run rattle can be found. In this work, a transmission model for creep rattle conditions has been developed taking into account the lubricated impacts of the gear teeth pairs during a meshing cycle and the friction between the contacting teeth flanks. Hertzian contact conditions are applied to the gear pair along the torque path and iso-viscous hydrodynamic lubrication is modelled for the lightly loaded gears. The model is further compared to experimental data, validating the results. The experimental and numerical signal analysis comprises short FFT.
机译:手动变速器的齿轮嘎嘎声是齿轮啮合齿在其齿隙内反复冲击的结果。在各种负载或轻负载条件下都可能发生此现象。从根本上来说,它与其他短暂的NVH现象(例如,发声或撞击)不同,后者是由冲动引起的[1]。但是,在通过润滑触点的接触/冲击力作用下,它们都具有最低的公分母。由于出现的机制和操作条件的影响,已经引用了各种形式的拨浪鼓[2-4],其中可以发现驱动拨浪鼓,蠕动拨浪鼓和超限拨浪鼓。在这项工作中,考虑到啮合周期中齿轮副对的润滑冲击和接触齿面之间的摩擦,已经开发出一种用于蠕动拨浪鼓条件的传动模型。沿扭矩路径对齿轮副施加赫兹接触条件,并为轻载齿轮建模了等粘流体动力润滑。该模型进一步与实验数据进行比较,验证了结果。实验和数字信号分析包括短FFT。

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