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A novel monitoring method of wet friction clutches based on the post-lockup torsional vibration signal

机译:基于锁止后扭振信号的新型湿式摩擦离合器监测方法

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摘要

Wet friction clutches play a critical role in vehicles equipped with automatic transmissions, power shift transmissions and limited slip differentials. An unexpected failure occurring in these components can therefore lead to an unexpected total breakdown of the vehicle. This undesirable situation can put human safety at risk, possibly cause long-term vehicle down times, and result in high maintenance costs. In order to minimize the negative impacts caused by the unexpected breakdown, an optimal maintenance scheme driven by accurate condition monitoring and prognostics therefore needs to be developed and implemented for wet friction clutches. In this paper, the development of a condition monitoring system that can serve as a basis for health prognostics of wet friction clutches with a focus in heavy duty vehicle applications is presented. The developed method is based on monitoring the dominant modal parameters extracted from the torsional vibration response occurring in the post-lockup phase, ie. just after the clutch is fully engaged. These modal parameters, namely the damped torsional natural frequency f_d and the decay factor σ, are computed based on the pre-filtered Hankel Total Least Squares (HTLS) method which has an excellent performance in estimating the parameters of transient signals with a relatively short duration. In order to experimentally validate the proposed monitoring method, accelerated life tests were carried out on five different paper-based wet friction clutches using a fully instrumented SAE#2 test setup. The dominant modal parameters extracted from the post-lockup velocity signals are then plotted in function of the service life (duty cycle) of the tested clutches. All the plots exhibit distinct trends that can be associated with the progression of the clutch degradation. Therefore, the proposed quantities can be seen as relevant features that may enable us to monitor and assess the condition of wet friction clutches. Since velocity sensor(s) is typically available in a transmission, the proposed monitoring method allows for the practical implementation.
机译:湿式摩擦离合器在配备有自动变速箱,动力换挡变速箱和有限的差速器的车辆中起着关键作用。因此,在这些组件中发生意外故障会导致车辆意外故障。这种不希望的情况可能会使人身安全受到威胁,可能导致车辆长期停机,并导致高昂的维护成本。为了最大程度地减少意外故障造成的负面影响,因此需要为湿式摩擦离合器开发和实施由准确的状态监视和预测功能驱动的最佳维护方案。在本文中,提出了一种状态监测系统的开发,该系统可以作为湿式摩擦离合器健康预测的基础,重点是重型车辆应用。所开发的方法是基于监视从锁止后阶段即扭转振动响应中提取的主要模态参数。在离合器完全接合之后。这些模态参数,即阻尼扭转固有频率f_d和衰减因子σ,是基于预滤波的汉克总最小二乘法(HTLS)方法计算的,该方法在估计持续时间相对较短的瞬态信号参数方面具有出色的性能。 。为了通过实验验证所提出的监控方法,使用功能齐全的SAE#2测试装置对五个不同的纸基湿式摩擦离合器进行了加速寿命测试。然后,从锁止后速度信号中提取的主要模态参数将根据被测离合器的使用寿命(占空比)进行绘制。所有曲线图都显示出与离合器退化过程相关的不同趋势。因此,建议的数量可以看作是相关的功能,可以使我们能够监视和评估湿式摩擦离合器的状况。由于速度传感器通常在变速器中可用,因此所提出的监视方法允许实际实施。

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