Reliability Evaluation of Transmission Planetary Gears “bottom-up” approach

P. Živković, M. Milutinović, M. Tica, S. Trifković, I. Čamagić
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引用次数: 2

Abstract

The reliability study is the most important part of the engineering design process, as it is the basis of analysis and assessment of future product performance in exploitation. Since performance cannot be predicted with absolute certainty, the application of reliability theory includes probability theory and unreliability modeling. The proposed approach has been applied to assess the reliability of gear planetary power transmissions. The assessment of system reliability was determined on the basis of the block diagram method, as a function of the reliability of individual components, calculated by statistical analysis. Using the Weibull model, the reliability of the planetary gear was defined on the basis of the probability of failure of the gear teeth and the results were interpreted to assess the reliability of the component and the entire planetary train. For a more precise assessment of reliability and to avoid modeling every failure and mode of occurrence, a competitive risk model was developed. The reliability assessment study was conducted with a “bottom-up” approach. Reliability has been assessed, for instantaneous, estimated and assigned failures rate of planetary train and component.
传动行星齿轮“自下而上”可靠性评估方法
可靠性研究是工程设计过程中最重要的组成部分,是开发过程中对未来产品性能进行分析和评估的基础。由于性能不能绝对确定地预测,可靠性理论的应用包括概率论和不可靠性建模。该方法已应用于行星齿轮传动系统的可靠性评估。采用方框图法确定系统可靠性评估,并通过统计分析计算系统各部件可靠性的函数。利用威布尔模型,以齿轮齿的失效概率为基础,定义了行星齿轮的可靠性,并对其结果进行了解释,以评估部件和整个行星系的可靠性。为了更精确地评估可靠性,并避免对每个故障和发生模式进行建模,开发了一个竞争风险模型。可靠性评估研究采用“自下而上”的方法进行。对行星传动及其部件的瞬时故障率、估计故障率和分配故障率进行了可靠性评估。
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