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Damping Effects Introduced by a Nonlinear Vibration Absorber in Automotive Drivelines at Idle Engine Speeds

机译:在空闲发动机速度下汽车驾驶中的非线性减振器引入的阻尼效果

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Legislation on vehicle emissions and the requirements for fuel efficiency are currently the key development driving factors in the automotive industry. Research activities to comply with these targets point to engine downsizing and new boosting technologies, which have adverse effects on the NVH performance, durability and component life. As a consequence of engine downsizing, substantial torsional oscillations are generated due to high combustion pressures. Meanwhile, to attenuate torsional vibrations, the manufacturers have implemented absorbers that are tuned to certain frequency ranges, including clutch dampers, Dual Mass Flywheel (DMF) and centrifugal pendulum dampers. These devices add mass/inertia to the system, potentially introducing negative effects on other vehicle attributes, such as weight, driving performance and gear shiftability.This paper provides a study of torsional damping effects of nonlinear vibration absorbers on drivetrain NVH refinement by attenuating torsional oscillations at the idling engine speeds. The nonlinear absorber concept presented operates on the principle of Targeted Energy Transfer (TET), whereby the energy excess (vibration) from a donor (primary powertrain system) is transferred to a receiver (nonlinear absorber) in a nearly irreversible manner. Thereafter, the received energy can be absorbed, dissipated, or redistributed. This potentially allows the absorber to operate over a broadband frequency range, whilst being light and compact, which is ideal for automotive powertrains. In the present work, simulations are performed using an automotive drivetrain (subsystem) model with a nonlinear absorber. The damping content of the absorber is varied to study its effect on the attenuation of torsional oscillations.
机译:对汽车排放和燃料效率的要求立法目前在汽车行业重点发展的推动因素。研究活动符合这些目标指向发动机小型化和新增强技术,这对NVH性能,耐用性和部件寿命的不利影响。发动机小型化的结果,大量的扭转振荡产生由于高燃烧压力。同时,衰减扭转振动,制造商已经实现被调谐到特定频率范围,包括离合器阻尼器,双质量飞轮(DMF)和离心力摆阻尼器吸收剂。这些装置的质量/惯性添加到系统中,潜在地引入上其它车辆的属性,如重量,驱动性能和齿轮shiftability.This纸负面影响通过衰减扭转振荡提供对传动系NVH细化非线性振动吸收剂的扭转阻尼效果的研究在怠速发动机转速。呈现的非线性吸收概念上定向能量传递(TET),由此从供体(初级动力系系统)的能量过量(振动)以几乎不可逆的方式被转移到接收器(非线性吸收体)的原理工作。此后,接收到的能量可以被吸收,分散,或重新分配。这潜在地允许吸收器通过宽带频率范围内操作,同时又是轻和紧凑的,这是理想的汽车动力传动系。在目前的工作中,模拟可使用具有非线性吸收的汽车传动(子系统)模型进行的。吸收器的阻尼含量是变化的,以研究其对扭转振荡的衰减效果。

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