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Analysis and application of relationships between low-temperature rheological performance parameters of asphalt binders

机译:沥青粘结剂低温流变性能参数关系的分析与应用

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摘要

The paper explored the physical and statistical relationships between different low-temperature performance parameters of asphalt binders. First of all, a physical equation between the creep stiffness S(t) and creep rate m(t) at any time t was established through mathematical deduction, the geometric and physical meaning of the equation was explained, and then a method considering S and m-value (which are creep stiffness and creep rate at t = 60 s, respectively) synthetically to choose binders with better low-temperature performances was put forward on the base of the equation. Secondly, based on the bending beam rheometer (BBR) test results of rubberized warm asphalt studied, the paper verified the physical relationship, and further showed how to select a type of asphalt binder according to the S and m-value. Besides, the statistical relationships between low-temperature performance parameters and other parameters were investigated, and the analysis results show that there exist a good linear correlation between m-value and relaxation time, m-value and dissipation energy ratio, relaxation time and dissipation energy ratio, dissipation energy and m/S, and the m/S and ratio of dissipated energy to the 0.5 power of storage energy, respectively.
机译:本文探讨了沥青粘结剂不同低温性能参数之间的物理和统计关系。首先,通过数学推导建立了任意时刻t的蠕变刚度S(t)和蠕变速率m(t)之间的物理方程,解释了该方程的几何和物理含义,然后考虑了S和在该方程的基础上,提出了m值(分别为t = 60 s时的蠕变刚度和蠕变速率)以选择具有更好低温性能的粘结剂。其次,根据研究的橡胶热沥青的弯曲梁流变仪(BBR)测试结果,验证了其物理关系,并进一步说明了如何根据S和m值选择一种沥青粘结剂。此外,研究了低温性能参数与其他参数之间的统计关系,分析结果表明,m值与弛豫时间,m值与耗散能比,弛豫时间与耗散能之间存在良好的线性关系。比率,耗散能量和m / S,以及耗散能量与存储能量的0.5幂的m / S和比率。

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