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Energy Based Laboratory Fatigue Failure Criteria for Asphalt Materials

机译:基于能量的沥青材料实验室疲劳破坏准则

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The definition of fatigue failure in the laboratory is not only an important but also a controversial issue. Researchers have developed a number of fatigue failure criteria, including the most traditional one, which defines failure at the cycle to 50 % initial modulus reduction. However, this definition is always challenged due to its lack of physical background. Recent studies showed that the dissipated energy ratio approach appears to be a favorable concept, which takes into account the fundamental dissipated energy evolution behavior of asphalt materials during a cyclic fatigue test. This paper conducted a review of three different energy based fatigue failure criteria and evaluated their applicability for fatigue data from asphalt binders and mixtures and under both stress and strain controlled loading modes. A macroscopic failure criterion is recommended, which is defined as the sudden change of the dissipated energy evolution curve and is consistently related to the beginning of macrocrack propagation. In addition, by comparing different failure criteria, the traditional 50 % initial modulus reduction criterion was found to have a strong correlation with energy based macroscopic fatigue failure for both mixtures and binders. It is thus suggested that the 50 % initial modulus reduction failure can be used as a simple but reasonable fatigue criterion, which indicates the transition from microcrack to macrocrack.
机译:实验室中疲劳失效的定义不仅是重要的而且是有争议的问题。研究人员已经制定了许多疲劳破坏准则,其中包括最传统的准则,该准则将循环失效定义为初始模量降低50%。但是,由于缺乏物理背景,该定义始终受到挑战。最近的研究表明,耗散能量比方法似乎是一个很好的概念,它考虑了沥青材料在循环疲劳试验中的基本耗散能量演化行为。本文对三种不同的基于能量的疲劳破坏准则进行了综述,并评估了它们在来自应力和应变控制加载模式下的沥青粘合剂和混合物的疲劳数据中的适用性。建议使用宏观破坏准则,该准则定义为耗散的能量演化曲线的突然变化,并且与宏观裂纹传播的开始始终相关。此外,通过比较不同的破坏准则,发现传统的50%初始模量降低准则与混合物和粘合剂的基于能量的宏观疲劳破坏有很强的相关性。因此,建议将50%的初始模量降低失败作为简单但合理的疲劳判据,这表明从微裂纹到大裂纹的过渡。

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