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Time to failure assessment of products at service conditions from accelerated lifetime tests with stress-dependent spread in life

机译:通过加速寿命测试以及寿命相关应力扩展来对产品在使用条件下进行故障评估的时间

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In accelerated lifetime testing (ALT) the assumption of stress-independent spread in life is commonly used and accepted because the resulting models are typically easier to use and data or past experience suggest that such a constrain is sometimes valid. However in many situations and with a variety of products the spread in life does depend on stress, i.e., the failure mechanism is not the same for all stress levels. In this paper the assessment of product time to failure at service conditions from ALT with stress-dependent spread is addressed by formulating a Bayesian framework where the time to failure follows a Weibull distribution, scale parameter dependency on stress is given by the Power Law, and two cases for the dependency between shape parameter and stress are discussed: linear relationship and, in order to allow a comparative analysis, stress-independent shape parameter. A previously published dataset is used to illustrate the procedure.
机译:在加速寿命测试(ALT)中,通常使用并接受与应力无关的寿命分布的假设,因为生成的模型通常更易于使用,并且数据或过去的经验表明,这种约束有时是有效的。但是,在许多情况下以及使用各种产品时,寿命的分布确实取决于应力,即,对于所有应力水平而言,失效机理都不相同。本文通过建立贝叶斯框架来评估服务条件下ALT在服务条件下的产品失效时间,该贝叶斯框架的失效时间服从Weibull分布,尺度参数对应力的依赖性由幂定律给出,并且讨论了形状参数和应力之间的相关性的两种情况:线性关系,以及为了进行比较分析,应力无关的形状参数。先前发布的数据集用于说明该过程。

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