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Importance of Thermal Contraction Coefficient in Low Temperature Cracking of Asphalt Concrete

机译:沥青混凝土低温破裂中热收缩系数的重要性

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A major distress mode in asphalt pavements is low temperature cracking, which results from the contraction and expansion of the asphalt pavement under extreme temperature changes. The potential for thermal cracking involves interplay between the environment, the road structure, and importantly the properties of the asphalt mixture. In the present study, the low temperature cracking performance of asphalt mixture has been investigated numerically and experimentally. A low temperature cracking model has been utilized, which was developed by integrating fracture energy threshold into an asphalt concrete thermal fracture model considering non-linear thermal contraction coefficients. Based on the asphalt concrete mixture viscoelastic properties, this enhanced model can predict thermally-induced stresses and fracture temperatures. It was observed that the thermal contraction coefficient in asphalt concrete is nonlinear in the temperature range of interest for low temperature cracking. The implications of having nonlinear thermal contraction coefficient were investigated numerically. From the analysis, it was found that this enhanced model can be utilized to evaluate the low temperature cracking performance of asphalt mixtures and rank them accordingly. Interestingly, non-linear thermal contraction coefficient gave much better prediction than the linear approach.
机译:沥青路面中的主要痛苦模式是低温开裂,这是由于极端温度变化下沥青路面的收缩和膨胀。热裂纹的潜力涉及环境,道路结构和重要的沥青混合物的性质。在本研究中,在数值和实验上研究了沥青混合料的低温开裂性能。利用了低温裂化模型,通过将裂缝能量阈值集成到考虑非线性热收缩系数的沥青混凝土热断裂模型中来开发。基于沥青混凝土混合物粘弹性,这种增强模型可以预测热引起的应力和断裂温度。观察到沥青混凝土中的热收缩系数是低温裂化的温度范围内的非线性。在数值上研究了具有非线性热收缩系数的含义。从分析中,发现这种增强型模型可用于评估沥青混合物的低温开裂性能,并相应地对其进行排序。有趣的是,非线性热收缩系数比线性方法更好地提高了预测。

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