加硫聚合物改性沥青流变及老化特性研究

IF 2.7 Q2 CONSTRUCTION & BUILDING TECHNOLOGY
Ana Luiza Rodrigues, Caio Falcão, R. Christopher Williams
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引用次数: 0

摘要

交联剂,特别是硫,用于沥青粘结剂改性,以促进聚合物链和沥青粘结剂之间的化学键合。尽管之前的一些研究表明,硫交联可以提高聚合物改性沥青(PMA)的稳定性,但对其流变性能和抗老化潜力的影响缺乏全面的了解。本研究通过深入研究不同硫含量(粘合剂总重量的0.03%至0.5%)对PMA流变特性的影响,解决了这些空白。该研究利用Glover-Rowe参数、FTIR分析、动态模量和相角主曲线等多种方法评估了硫对PMA抗老化的有效性。结果表明,添加硫,特别是添加到0.3%时,使PMA的高温性能等级提高了一个等级,并显着提高了弹性,使PMA能够承受更大的交通而不会发生车辙,同时保持抗低温开裂的能力。此外,添加硫的PMA抗老化能力增强,在最佳硫配方下,其老化潜力降低了约15%。这种增强的耐用性可以减少维护活动的频率,从而节省成本,减少道路工程排放,延长路面寿命。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Rheological and Aging Characteristics of Polymer-Modified Asphalt with the Addition of Sulfur
Crosslinking agents, notably sulfur, are used in asphalt binder modification to facilitate chemical bonding between polymer chains and the asphalt binder. Despite some prior research indicating the benefits of sulfur crosslinking in enhancing polymer-modified asphalt’s (PMA) stability, there is a lack of comprehensive understanding regarding its impact on rheological properties and its anti-aging potential. This study addresses these gaps by thoroughly investigating the effects of varying the sulfur content (ranging from 0.03% to 0.5% by total weight of binder) on PMA’s rheological properties. The research assesses the effectiveness of sulfur in enhancing PMA’s resistance to aging using various methods, including the Glover-Rowe parameter, FTIR analysis, and the examination of the dynamic modulus and phase angle master curves. The results indicated that the addition of sulfur, particularly up to 0.3%, bumps the high-temperature performance grade by one level, and significantly improves elasticity, allowing the PMA to support heavier traffic without experiencing rutting, all while maintaining resistance to low-temperature cracking. Furthermore, PMA with sulfur demonstrated an increase in resistance to aging, reducing the aging potential by approximately 15% with the best sulfur formulation. This enhanced durability can reduce the frequency of maintenance activities, leading to cost savings, reduced roadwork emissions, and prolonged pavement life.
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来源期刊
Infrastructures
Infrastructures Engineering-Building and Construction
CiteScore
5.20
自引率
7.70%
发文量
145
审稿时长
11 weeks
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