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Reliability-based fatigue life of vehicle spring under random loading

机译:随机载荷下车辆弹簧基于可靠性的疲劳寿命

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Purpose - The purpose of this paper is to analyse fatigue-life prediction based on a reliability assessment for coil springs of vehicle suspension systems using different road excitations under random loading. Design/methodology/approach - In this study, a reliability assessment was conducted to predict the fatigue life of an automobile coil spring during different road data surfaces. Campus, urban and highway road surfaces were considered to capture fatigue load strain histories using a data acquisition system. Random loadings are applied on top of a coil spring where coil is fixed from down. Fatigue reliability was established as a system of correlated events during the service life to predict the probability of fatigue life using Coffin-Manson, Morrow and Smith-Watson-Topper (SWT) models. Findings - Fatigue-life prediction based on a reliability assessment revealed that the Morrow model can predict a safe region of a life data point for the three road surfaces. Highway road data indicated the highest rate of reliability at 0.8 for approximately 1.69 × 10~5 cycles for the SWT model. Originality/value - Reliability assessment of the fatigue life of vehicle coil springs is vital for safe operation. The reliability analysis of a coil spring under random loading excitations can be used for fatigue-life predictioa.
机译:目的-本文的目的是基于随机载荷下使用不同道路激励的车辆悬架系统螺旋弹簧可靠性评估来分析疲劳寿命预测。设计/方法/方法-在这项研究中,进行了可靠性评估,以预测汽车螺旋弹簧在不同路面数据表面期间的疲劳寿命。校园,城市和公路路面被认为可以使用数据采集系统来捕获疲劳载荷应变历史。随机载荷施加在螺旋弹簧的顶部,螺旋弹簧从下方固定。使用Coffin-Manson,Morrow和Smith-Watson-Topper(SWT)模型,将疲劳可靠性建立为使用寿命内的相关事件系统,以预测疲劳寿命的可能性。研究结果-基于可靠性评估的疲劳寿命预测表明,Morrow模型可以预测三个路面的生命数据点的安全区域。公路数据表明,对于SWT模型,在大约1.69×10〜5个循环中,最高的可靠性比率为0.8。原创性/价值-评估车辆螺旋弹簧疲劳寿命的可靠性对于安全操作至关重要。螺旋弹簧在随机载荷激励下的可靠性分析可用于疲劳寿命预测。

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