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Degradation reliability modeling of plain concrete for pavement under flexural fatigue loading

机译:弯曲疲劳负荷下路面普通混凝土的劣化可靠性建模

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摘要

This study aims to establish a new methodological framework for the evaluation of the evolution of the reliability of plain concrete for pavement vs number of cycles under flexural fatigue loading. According to the framework, a new method calculating the reliability was proposed through probability simulation in order to describe a random accumulation of fatigue damage, which combines reliability theory, one-to-one probability density functions transformation technique, cumulative fatigue damage theory and Weibull distribution theory. Then the statistical analysis of flexural fatigue performance of cement concrete tested was carried out utilizing Weibull distribution. Ultimately, the reliability for the tested cement concrete was obtained by the proposed method. Results indicate that the stochastic evolution behavior of concrete materials under fatigue loading can be captured by the established framework. The flexural fatigue life data of concrete at different stress levels is well described utilizing the two-parameter Weibull distribution. The evolution of reliability for concrete materials tested in this study develops by three stages and may corresponds to develop stages of cracking. The proposed method may also be available for the analysis of degradation behaviors under non-fatigue conditions.
机译:本研究旨在建立一种新的方法论框架,用于评估弯曲疲劳负荷下循环循环循环的普通混凝土可靠性的演变。根据该框架,通过概率模拟提出了一种计算可靠性的新方法,以描述疲劳损坏的随机累积,这使得可靠性理论相结合,一对一概率密度函数变换技术,累积疲劳损伤理论和Weibull分布理论。然后利用Weibull分布进行水泥混凝土抗弯疲劳性能的统计分析。最终,通过所提出的方法获得了测试水泥混凝土的可靠性。结果表明,疲劳负荷下的混凝土材料的随机演化行为可以通过既定框架捕获。利用双参数Weibull分布很好地描述了在不同应力水平下混凝土的抗弯疲劳寿命数据。本研究中测试的混凝土材料可靠性的演变开发了三个阶段,可以对应于开发裂化的阶段。所提出的方法也可用于在非疲劳条件下分析降解行为。

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