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Using the Three-Stage Weibull Equation and Tree-Based Model to Characterize the Mix Fatigue Damage Process

机译:使用三阶段威布尔方程和基于树的模型来表征混合疲劳损伤过程

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摘要

The primary purpose of this paper is to demonstrate the applicability of the three-stage Weibull equation to describe the fatigue damage process using flexural controlled deformation fatigue tests. A data set of 179 beam fatigue tests originally designed for exploring the fatigue performance of conventional dense graded asphalt concrete (DGAC) and asphalt-rubber hot-mix gap-graded (ARHM-GG) mixes was used to inspect the three-stage Weibull parameters that were estimated using a genetic algorithm. The tree-based regression-category models were then used to uncover the data structure of the estimated parameters as a function of material properties, conditioning methods, temperatures, compaction methods, and strain levels. In general, the three-stage Weibull equation provides satisfactory fitting results for the three-stage fatigue damage process occurring in a beam test. It was found that the tree-based models of three-stage Weibull parameters associated with the crack initiation stage were statistically adequate and reliable compared with the models of parameters related to the warm-up stage and the crack propagation stage. It might suggest that these crack initiation parameters are better indexes to assess the fatigue performance.
机译:本文的主要目的是证明三阶段Weibull方程使用弯曲控制变形疲劳试验描述疲劳损伤过程的适用性。一组179个梁疲劳试验的数据集最初用于探究常规密实梯度沥青混凝土(DGAC)和沥青-橡胶热拌间隙梯度(ARHM-GG)混合料的疲劳性能,以检查三阶段的Weibull参数使用遗传算法进行估算。然后使用基于树的回归类别模型来揭示估计参数的数据结构,该数据结构是材料特性,调节方法,温度,压实方法和应变水平的函数。通常,三阶段威布尔方程可为梁测试中发生的三阶段疲劳损伤过程提供令人满意的拟合结果。研究发现,与预热阶段和裂纹扩展阶段相关的参数模型相比,与裂纹萌生阶段相关的三阶段威布尔参数的基于树的模型在统计上是足够可靠的。这可能表明这些裂纹萌生参数是评估疲劳性能的更好指标。

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