Analytical Approach to Product Reliability Estimation Based on Life Test Data for an Automotive Clutch System

Hamed Niknafs, Morteza Faridkhah, Camelia Kazemi
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引用次数: 5

Abstract

Abstract The study of reliability is an important part of engineering design process which forms the basis of analysis and judgment on future performance of the product. Since the future couldn’t be predicted with an absolute certainty, the nature of reliability would lead us to probability theory and uncertainty modeling. The quantitative calculation of this parameter for mechanical systems within different steps of production requires an analytical and systematic approach which has been focused in this paper. The proposed approach has been applied for calculating reliability of a clutch system as a case study. The system reliability in this work is determined based on the block diagram method as a function of individual component reliabilities which are calculated by statistical analysis of life test results. Using Weibull model, reliability of a typical clutch system has been formulated based on durability bench test and results has been interpreted to estimate field reliability.
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基于汽车离合器系统寿命试验数据的产品可靠性分析方法
摘要可靠性研究是工程设计过程中的重要组成部分,是对产品未来性能进行分析和判断的基础。由于未来不能以绝对的确定性来预测,可靠性的本质将导致我们使用概率论和不确定性建模。在不同的生产步骤中,机械系统的这一参数的定量计算需要一种分析和系统的方法,这是本文的重点。该方法已应用于离合器系统的可靠性计算实例。本文采用方框图法确定系统的可靠性,并将其作为各部件可靠性的函数,通过对寿命试验结果的统计分析计算得到各部件可靠性。利用威布尔模型,在台架耐久性试验的基础上建立了典型离合器系统的可靠性模型,并对试验结果进行了解释,以估计现场可靠性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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Mechanics and Mechanical Engineering
Mechanics and Mechanical Engineering Engineering-Automotive Engineering
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