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Analysis and Prediction of Defect Size and Remaining Useful Life of Thrust Ball Bearings: Modelling and Experiment Procedures

机译:推力球轴承的缺陷尺寸和剩余使用寿命的分析和预测:建模和实验程序

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摘要

A new methodology based on full factorial design (FFD) for the prediction of the size of the spalls on the rolling contact surfaces of thrust ball bearings and its remaining useful life is presented in this research work. The FFD is used to analyse the effect of the following factors: rotational speed, load, spalling size, position of the sensors and frequency range on the vibrations level and the interaction effects between these factors. Data collected from vibratory signals generated by thrust ball bearings operating in the fatigue test rig are used. Statistical analyses show that the full factorial model with sixteen coefficients leads to more precise spalling size estimates. Analysis of variance showed that these results were statistically significant [P value is less than 0.0001 where significance level a (alpha = 0.05)]. A modified exponential model used in the prediction of the remaining useful life shows its efficiency and applicability.
机译:在这项研究工作中,提出了一种基于全因子设计(FFD)的新方法,用于预测推力球轴承的滚动接触面上的剥落尺寸及其剩余使用寿命。 FFD用于分析以下因素的影响:转速,负载,散裂尺寸,传感器的位置和频率范围对振动水平的影响以及这些因素之间的相互作用。使用从在疲劳试验台上运行的推力球轴承产生的振动信号收集的数据。统计分析表明,具有十六个系数的完整阶乘模型可导致更精确的散裂尺寸估计。方差分析表明,这些结果具有统计学意义[P值小于0.0001,显着性水平a(alpha = 0.05)]。预测剩余使用寿命的改进指数模型表明了其有效性和适用性。

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