首页> 外文期刊>Proceedings of the institution of mechanical engineers >Gear rattle reduction in an automotive driveline by the adoption of a flywheel with an innovative torsional vibration damper
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Gear rattle reduction in an automotive driveline by the adoption of a flywheel with an innovative torsional vibration damper

机译:通过采用具有创新的扭振减振器的飞轮来减少汽车传动系统中的齿轮嘎嘎声

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摘要

An innovative device consisting of a flywheel equipped with a torsional vibration damper, based on the magnetorheological effect in elastomeric spring elements, is proposed in this paper. The feasibility study reports the dynamic behaviour of an automotive driveline equipped with the device aiming to explore the effectiveness of the damper in reducing the torsional oscillations of the flywheel, at low-speed regime, responsible for the vibro-acoustic phenomenon known as "gear rattle". The spring elements of the device are constituted by magneto-rheological elastomeric samples, interposed between the flywheel and the damper disk, working for shear strains. Their dynamical characteristics can be properly tuned by varying the magnetic field surrounding the springs in order to mitigate the forced vibration causes of gear tooth impacts. The good attitude of the device in mitigating the rattle phenomenon is demonstrated by comparing the results provided by a numerical drive line model, equipped with a "monolithic" flywheel, with those obtained by adopting the present innovative vibration damper. The angular accelerations, resulting from the collisions between the teeth during the operation under "idle" conditions at different angular speeds, are thus compared.
机译:基于弹性弹簧元件的磁流变效应,本文提出了一种创新的装置,该装置由配备有扭转减振器的飞轮组成。可行性研究报告了配备该装置的汽车传动系统的动态行为,旨在探讨减震器在降低低速状态下飞轮扭转振动方面的有效性,这种振动是造成称为“齿轮嘎嘎声”的振动现象的原因。 ”。该装置的弹簧元件由磁流变弹性体样本组成,该样本置于飞轮和阻尼盘之间,用于剪切应变。可以通过改变弹簧周围的磁场来适当地调节其动态特性,以减轻齿轮齿撞击的强制振动原因。通过将配备“整体式”飞轮的数值驱动线模型与采用本发明的新型减振器获得的结果进行比较,证明了该装置缓解拨浪鼓现象的良好姿态。因此,比较了在“空转”状态下以不同的角速度在操作过程中由于齿之间的碰撞而产生的角加速度。

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