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Reliability-based residual life prediction of large-size low-speed slewing bearings

机译:大型低速回转支承基于可靠性的剩余寿命预测

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摘要

Critical failure of a slewing bearing used in large machines would bring disastrous loss to an enter-prise. Accurate residual life prediction of a slewing bearing can reduce unexpected accidents and unnecessary maintenances. In this paper, a residual life reliability prediction approach for slewing bearings was firstly presented based on the Weibull distribution. Afterwards, a novel approach for parameter estimation was proposed based on a small-sample test, which built the relationship between the characteristic life of a slewing bearing and the maximal load over the raceway. To verify the proposed approach, a full-load accelerated life test was implemented on a QNA-730-22 slewing bearing. It was observed that the damage of the outer (fixed) ring caused the failure of the slewing bearing, while the inner (rotatable) ring was still in good condition. After which, the residual life prediction model was then established by the proposed approach. Compared to ISO 281 and NREL design guide 03, the proposed approach is closer to engineering practice, and thus has the potential for slewing bearing prognostics.
机译:大型机器中使用的回转轴承的严重故障将给企业带来灾难性的损失。回转轴承的准确剩余寿命预测可以减少意外事故和不必要的维护。本文首先基于威布尔分布提出了一种回转支承剩余寿命可靠性预测方法。然后,提出了一种基于小样本测试的参数估计新方法,该方法建立了回转支承的特性寿命与滚道上最大载荷之间的关系。为了验证所提出的方法,对QNA-730-22回转支承进行了满负荷加速寿命测试。观察到,外(固定)环的损坏引起了回转轴承的故障,而内(可旋转)环仍处于良好状态。之后,通过所提出的方法建立剩余寿命预测模型。与ISO 281和NREL设计指南03相比,该方法更接近于工程实践,因此具有回转支承预测的潜力。

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