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Method of Fatigue-Life Prediction for an Asphalt Mixture Based on the Plateau Value of Permanent Deformation Ratio

机译:基于永久变形比平台值的沥青混合料疲劳寿命预测方法

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摘要

Laboratory predictions for the fatigue life of an asphalt mixture under cyclic loading based on the plateau value (PV) of the permanent deformation ratio (PDR) were carried out by three-point bending fatigue tests. The influence of test conditions on the recovery ratio of elastic deformation (RRED), the permanent deformation (PD) and PDR, and the trends of RRED, PD, and PDR were studied. The damage variable was defined by using PDR, and the relation of the fatigue life to PDR was determined by analyzing the damage evolution process. The fatigue equation was established based on the PV of PDR and the fatigue life was predicted by analyzing the relation of the fatigue life to the PV. The results show that the RRED decreases with the increase of the number of loading cycles, and the elastic recovery ability of the asphalt mixture gradually decreases. The two mathematical models proposed are based on the change laws of the RRED, and the PD can well describe the change laws. The RRED or the PD cannot well predict the fatigue life because they do not change monotonously with the fatigue life, and one part of the deformation causes the damage and the other part causes the viscoelastic deformation. The fatigue life decreases with the increase of the PDR. The average PDR in the second stage is taken as the PV, and the fatigue life decreases in a power law with the increase of the PV. The average relative error of the fatigue life predicted by the fatigue equation to the test fatigue life is 5.77%. The fatigue equation based on PV can well predict the fatigue life.
机译:通过三点弯曲疲劳试验,对基于永久变形比(PDR)的平稳值(PV)的循环载荷下沥青混合料的疲劳寿命进行了实验室预测。研究了试验条件对弹性变形回复率(RRED),永久变形(PD)和PDR的影响以及RRED,PD和PDR的趋势。通过使用PDR定义损伤变量,并通过分析损伤演化过程确定疲劳寿命与PDR的关系。基于PDR的PV建立了疲劳方程,并通过分析疲劳寿命与PV的关系来预测疲劳寿命。结果表明,RRED随着加载循环次数的增加而降低,沥青混合料的弹性回复能力逐渐降低。提出的两个数学模型基于RRED的变化规律,PD可以很好地描述变化规律。 RRED或PD无法很好地预测疲劳寿命,因为它们不会随疲劳寿命单调变化,并且变形的一部分会导致损坏,而另一部分会导致粘弹性变形。疲劳寿命随着PDR的增加而降低。将第二阶段的平均PDR用作PV,并且随着PV的增加,疲劳寿命在幂律中减小。由疲劳方程预测的疲劳寿命与试验疲劳寿命的平均相对误差为5.77%。基于PV的疲劳方程可以很好地预测疲劳寿命。

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