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田间老化因素对沥青流变性能的影响及贡献率研究

Study on the Influence and Contribution Rates of Field Aging Factors on Rheological Performance of Bitumen.

作者信息

Song Shanglin, Zhu Yunding, Wang Zhen, Gao Ziyang, Guo Meng, Huang Jing, Jiang Xiaoqiang

机构信息

Gansu Provincial Highway Development Group Co., Ltd., Lanzhou 730070, China.

Scientific Observation and Research Base of Transport Industry of Long Term Performance of Highway, Infrastructure in Northwest Cold and Arid Regions, Dunhuang 736200, China.

出版信息

Materials (Basel). 2025 Apr 13;18(8):1775. doi: 10.3390/ma18081775.

Abstract

Laboratory simulation of aging cannot restore the complex aging behavior of bitumen well. The objective of study is to reveal the role of various field aging factors on the aging process of virgin bitumen and SBS(Styrene-Butadiene-Styrene)-modified bitumen. The influence of different field aging factors on aging behavior of virgin bitumen and SBS-modified bitumen were discussed. To achieve this goal, three different field aging styles were used to carry out field aging of virgin bitumen and SBS-modified bitumen. The aging behavior of the two types of bitumen were characterized based on rheological performance, and the influence degree of various aging factors on the rheological performance of bitumen was quantitatively analyzed through the contribution rates. The findings indicated that field aging had an obvious influence on the rheological performance of the two types of bitumen, which showed that the complex modulus, G-R parameter and stiffness modulus increased, and creep rate decreased. The contribution rates significantly indicated the degree of influence of hot oxygen, light and other factors (wind, water, dust, etc.) on the two types of bitumen. Among them, hot oxygen was the main factor leading to the aging of two types of bitumen. The virgin bitumen was not sensitive to aging caused by light, and the aging of SBS-modified bitumen was greatly affected by light. Other field aging factors (wind, water, dust, etc.) led to the aging of virgin bitumen to a certain extent, but inhibited the aging of SBS-modified bitumen.

摘要

实验室老化模拟无法很好地还原沥青复杂的老化行为。研究目的是揭示各种现场老化因素对原始沥青和SBS(苯乙烯-丁二烯-苯乙烯)改性沥青老化过程的作用。讨论了不同现场老化因素对原始沥青和SBS改性沥青老化行为的影响。为实现这一目标,采用三种不同的现场老化方式对原始沥青和SBS改性沥青进行现场老化。基于流变性能对两种沥青的老化行为进行表征,并通过贡献率定量分析各种老化因素对沥青流变性能的影响程度。研究结果表明,现场老化对两种沥青的流变性能有明显影响,表现为复数模量、G-R参数和劲度模量增大,蠕变速率降低。贡献率显著表明了热氧、光照及其他因素(风、水、灰尘等)对两种沥青的影响程度。其中,热氧是导致两种沥青老化的主要因素。原始沥青对光照引起的老化不敏感,而SBS改性沥青的老化受光照影响较大。其他现场老化因素(风、水、灰尘等)在一定程度上导致了原始沥青的老化,但抑制了SBS改性沥青的老化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6e43/12028774/e4fa6c90c74a/materials-18-01775-g001.jpg

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