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Fatigue life-based reliability assessment of a heavy vehicle leaf spring

机译:重型汽车钢板弹簧基于疲劳寿命的可靠性评估

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Purpose - This study aims to determine the reliability assessment based on the predicted fatigue life of leaf spring under random strain loading. Design/methodology/approach - Random loading data were extracted from three various road conditions at 200 Hz using a strain gauge for a duration of 100 s. The fatigue life was predicted using strain-life approaches of Coffin-Manson, Morrow and Smith-Watson-Topper (SWT) models. Findings - The leaf spring had the highest fatigue life of 1,544 cycle/block under highway data compared uphill (1,299 cycle/block) and downhill (1,008 cycle/block) data. Besides that, the statistical properties of kurtosis showed that uphill data were the highest at 3.81 resulted in the presence of high amplitude in the strain loading data. For fatigue life-based reliability assessment, the SWT model provided a narrower shape compared to the Coffin-Manson and Morrow models using the Gumbel distribution. The SWT model had the lowest mean cycle to failure of 1,250 cycle/block followed by Morrow model (1,317 cycle/block) and the Coffin-Manson model (1,429 cycle/block). The SWT model considers the mean stress effects by interpreting the strain energy density that will influence the reliability assessment. Research limitations/implications - The reliability assessment based on fatigue life prediction is conducted using the Gumbel distribution to investigate the behaviour of fatigue random loading, where most previous studies had concentrated on a Weibull distribution on random data. Originality/value - Thus, this study proposes that the Gumbel distribution is suitable for analysing the reliability of random loading data in assessing with the fatigue life prediction of a heavy vehicle leaf spring.
机译:目的-本研究旨在基于随机应变载荷下板簧的预测疲劳寿命来确定可靠性评估。设计/方法/方法-使用应变仪从200 Hz的三种不同道路条件中提取随机载荷数据,持续100 s。使用Coffin-Manson,Morrow和Smith-Watson-Topper(SWT)模型的应变寿命方法预测了疲劳寿命。研究结果-与上坡(1,299个循环/块)和下坡(1,008个循环/块)数据相比,公路数据下的板簧疲劳寿命最高,为1,544个循环/块。除此之外,峰度的统计特性表明,上坡数据在3.81处最高,导致应变加载数据中存在高振幅。对于基于疲劳寿命的可靠性评估,与使用Gumbel分布的Coffin-Manson和Morrow模型相比,SWT模型提供了更窄的形状。 SWT模型的故障平均周期最低,为1,250个循环/块,其次是Morrow模型(1,317个循环/块)和Coffin-Manson模型(1,429个循环/块)。 SWT模型通过解释会影响可靠性评估的应变能密度来考虑平均应力效应。研究局限性/含意-基于疲劳寿命预测的可靠性评估是使用Gumbel分布进行的,以研究疲劳随机载荷的行为,而以前的大多数研究都集中在随机数据的Weibull分布上。独创性/价值-因此,本研究提出,在评估重型车辆钢板弹簧的疲劳寿命时,Gumbel分布适用于分析随机载荷数据的可靠性。

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