Review and prospect of four-point bending fatigue test of asphalt mixture

Yongjun Meng , Dichao Liu , Hongliu Rong , Xiaolong Yang
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Abstract

Fatigue cracking is one of the principal failure modes of asphalt pavement. The chief factors affecting the fatigue failure of asphalt pavement are load, environment, pavement structure and the fatigue resistance of asphalt mixture itself. Among them, the most important part is the research on the fatigue resistance of asphalt mixture, which has been studied deeply at home and abroad. This paper summarized some important research results and fatigue characterization parameters of the four-point bending fatigue test method in recent years, and suggested the future research direction of the four-point bending test. In the analysis and comparison of loading modes of four-point bending test, further research on various analysis methods is required. Researchers can appropriately refine the test method to account for nonlinear viscoelastic energy dissipation, as well as plastic and permanent deformation per cycle. The fatigue evaluation index of asphalt mixture can be comprehensively evaluated by four indicators, and can be combined with new fatigue characterization parameters in the future. It is suggested to develop a complete set of four-point bending fatigue test methods under various stress states consistent with the service state of asphalt pavement. This method can be used to eliminate the influences of environment, test condition and specimen size on the fatigue test results of asphalt mixture to improve the effectiveness and completeness of asphalt mixture fatigue performance characterization.
沥青混合料四点弯曲疲劳试验的回顾与展望
疲劳开裂是沥青路面的主要破坏形式之一。影响沥青路面疲劳破坏的主要因素是荷载、环境、路面结构和沥青混合料本身的抗疲劳性能。其中,最重要的部分是沥青混合料的抗疲劳性研究,这在国内外已经得到了深入的研究。总结了近年来四点弯曲疲劳试验方法的一些重要研究成果和疲劳表征参数,提出了四点弯曲试验今后的研究方向。在四点弯曲试验加载模式的分析与比较中,还需要对各种分析方法进行进一步的研究。研究人员可以适当地改进测试方法,以考虑非线性粘弹性能量耗散,以及每个循环的塑性和永久变形。沥青混合料的疲劳评价指标可由4个指标综合评价,未来可与新的疲劳表征参数相结合。建议制定一套与沥青路面使用状态相一致的各种应力状态下的四点弯曲疲劳试验方法。该方法可以消除环境、试验条件和试件尺寸对沥青混合料疲劳试验结果的影响,提高沥青混合料疲劳性能表征的有效性和完整性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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