威布尔分布
可靠性(半导体)
边距(机器学习)
可靠性工程
结构工程
概率逻辑
工程类
统计模型
威布尔模量
统计
数学
计算机科学
功率(物理)
机器学习
物理
量子力学
作者
Jae Phil Park,Junhyuk Ham,Subhasish Mohanty,Dayu Fajrul Falaakh,Ji Hyun Kim,Chi Bum Bahn
标识
DOI:10.1016/j.net.2022.08.005
摘要
In this study, the probabilistic fatigue life model for Ni-base alloys was developed based on the Weibull distribution using statistical analysis of fatigue data reported in NUREG/CR-6909 and the new fatigue data of Alloy 52M/152 and 82/182. The developed Weibull model can consider right-censored data (i.e., non-failed data) and quantify the improved safety (or reliability) based on the level of failure probability. The overall margin in the current fatigue design limit model (ASME design curve + NUREG/CR-6909 <em>F</em><sub>en</sub> model) is similar to that of the Weibull model with a cumulative failure probability of approximately 2.5%. The margin in the current fatigue design limit model demonstrated inconsistencies for the Ni-base alloy weld data, whereas the Weibull model showed a consistent margin. Therefore, the Weibull model can systematically mitigate the excessive safety margin.
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