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Interrelationships in Rheology for Asphalt Binder Specifications

机译:流变学对沥青粘结剂规格的相互关系

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The formation of the Strategic Highway Research Program (SHRP) test parameters implemented in Superpave™ were based upon linear visco-elastic measurements, for example G~*/sinδ, G~*.sinδ, S(t), and m(t). In addition, the SHRP research defined parameters associated with the Christensen-Anderson model, defining ^-value and cross-over frequency. More recently, other test parameters have been proposed for use such as the Multiple Stress Creep Recovery (MSCR) test (Jnr), Glover-Rowe parameter (G~*.cosδ~2/sinδ), the difference between T_(crit) from S(t) & m(t), (ΔTc), visco-elastic transition temperature (T_(VET)) and others. Some of the proposed test parameters relate directly to a linear visco-elastic understanding of the binder whereas other parameters can be best described as non-linear parameters. Both non-linear and linear parameters are important for pavement performance and in many cases these are interrelated through an understanding of time and temperature susceptibility of the asphalt binders. This paper demonstrates how the model parameters can be interrelated through an understanding of the visco-elastic properties and how a simple understanding of a few key asphalt binder parameters can be used to estimate other parameters. Limitations of this approach, especially in the non-linear region will also be discussed.
机译:Superpave™中实施的战略公路研究计划(SHRP)测试参数的形成基于线性粘弹性测量,例如G〜* /sinδ,G〜*.sinδ,S(t)和m(t) 。此外,SHRP研究还定义了与Christensen-Anderson模型相关的参数,定义了^值和交叉频率。最近,还提出了其他测试参数,例如多重应力蠕变恢复(MSCR)测试(Jnr),Glover-Rowe参数(G〜*.cosδ〜2 /sinδ),T_(crit)与S(t)和m(t),(ΔTc),粘弹性转变温度(T_(VET))等。某些建议的测试参数直接与粘合剂的线性粘弹性理解有关,而其他参数可以最好地描述为非线性参数。非线性和线性参数对于路面性能都很重要,并且在许多情况下,通过了解沥青粘合剂的时间和温度敏感性,它们是相互关联的。本文展示了如何通过理解粘弹性质来相互关联模型参数,以及如何简单地理解一些关键沥青结合料参数来估计其他参数。也将讨论这种方法的局限性,特别是在非线性区域。

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