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Fatigue Performance Prediction of Asphalt Pavement Based on Semicircular Bending Test at Intermediate Temperature

机译:基于中温半圆弯曲试验的沥青路面疲劳性能预测

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摘要

The objective of this study is to correlate asphalt mixtures' crack resistance with their in situ cracking performance. Ten mixtures were obtained from a full-scale experiment at the Federal Highway Administration (FHWA) Accelerated Loading Facility (ALF), which were constructed with various contents of reclaimed asphalt pavement (RAP) and recycled asphalt shingles (RAS), two warm-mix technologies, and two asphalt binder grades. The mixtures' linear viscoelastic properties were assessed through dynamic modulus testing. Fracture resistance was characterized by the critical strain energy release rate (Jc), which was obtained from semicircular bending (SCB) tests at intermediate temperature. The increase in RAP/RAS content was found to enhance mixture's stiffness while reducing the mix crack resistance. No significant difference in terms of crack resistance was observed between the two used warm-mix technologies. The use of a soft binder was effective in improving the crack resistance of mixtures with a high RAP content. The generic fatigue model from the literature did not correlate well with the ALF test results; modification was achieved by introducing Jc as an indicator of crack resistance into the model form. The resulting Jc-based model exhibited an adequate correlation with field performance measured by the ALF test results.
机译:这项研究的目的是将沥青混合料的抗裂性与其原位抗裂性能相关联。从美国联邦公路管理局(FHWA)的加速加载设施(ALF)的大规模试验中获得了十种混合物,这些混合物由各种含量的再生沥青路面(RAP)和再生沥青瓦(RAS),两种温拌混合物组成技术和两种沥青粘合剂等级。通过动态模量测试评估混合物的线性粘弹性性能。通过临界应变能释放速率(Jc)表征抗断裂性能,该临界应变能释放速率是在中间温度下通过半圆弯曲(SCB)测试获得的。发现RAP / RAS含量的增加增强了混合物的刚度,同时降低了混合物的抗裂性。在两种使用的热混合技术之间,在抗裂性方面没有观察到显着差异。使用软粘合剂可有效提高RAP含量高的混合物的抗裂性。文献中的通用疲劳模型与ALF测试结果没有很好的相关性。通过将Jc作为抗裂性指标引入模型形式来实现修改。所得的基于Jc的模型与ALF测试结果测得的野外性能表现出足够的相关性。

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