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Using combined Avrami-Ozawa method to evaluate low-temperature reversible aging in asphalt binders

机译:使用组合的Avrami-Ozawa方法评估沥青粘合剂的低温可逆老化

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This paper aims to reasonably evaluate the reversible aging resistance of asphalt binders and comprehend the effects of low-temperature gradually hardening on fundamental properties of asphalt binders. To do so, extended bending beam rheometer (ExBBR) test with prolonged different conditioning times were performed on different kinds of asphalt binders, and viscoelastic mechanics model (Burgers model) was employed for describing the rheological properties. The combined Avrami-Ozawa equation was applied to characterise the non-isothermal crystallization process of asphalt binders which have a significantly different degree of physical hardening. The results showed that stiffness or m-value obtained from extended BBR test with logarithmic conditioning time has high coefficient of determination. Predicted stiffness and m-value from proposed empirical formula can be used to estimate extended BBR low temperature limiting grade (LTPG) that could be applicable for quality control (QC) purposes in the future. Lastly, the combined Avrami-Ozawa method can be successfully used to describe the non-isothermal crystallization process of asphalt binders used in this study.
机译:本文旨在合理评估沥青粘合剂的可逆老化性,并了解低温逐渐硬化对沥青粘合剂基本性能的影响。为此,对不同种类的沥青粘合剂进行了延长弯曲时间和不同条件的弯曲梁流变仪(ExBBR)试验,并采用粘弹性力学模型(Burgers模型)来描述流变性能。应用组合的Avrami-Ozawa方程来表征物理硬化程度明显不同的沥青粘合剂的非等温结晶过程。结果表明,扩展BBR试验在对数条件下得到的刚度或m值具有较高的测定系数。根据经验公式预测的刚度和m值可用于估算扩展的BBR低温极限等级(LTPG),该等级将来可用于质量控制(QC)。最后,结合Avrami-Ozawa方法可以成功地描述本研究中所用沥青粘合剂的非等温结晶过程。

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