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Influence of SBS Modifier on Aging Behaviors of SBS-Modified Asphalt

机译:SBS改性剂对SBS改性沥青老化性能的影响

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Aging behaviors of styrene-butadiene-styrene copolymer (SBS)-modified asphalt are complex due to combined effects of hardening of asphalt matrix and degradation of SBS. In order to investigate aging mechanism of SBS-modified asphalt more clearly, a novel method to extract SBS modifier from SBS-modified asphalt was introduced in this paper. Aging methods adopted in this study included thin film oven test (TFOT), pressure aging vessel (PAV), and ultraviolet light (UV) aging. After different aging methods, the physical and rheological characteristics of SBS-modified asphalt were evaluated. Chemical structures and molecular weight of extracted SBS modifier and SBS-modified asphalt were analyzed by Fourier-transform infrared spectroscopy (FTIR) and gel permeation chromatography (GPC) tests. The results illustrated that aging led to the degradation of the SBS structures, which could influence the physical and rheological properties of asphalt significantly. According to FTIR and GPC analyses, PAV aging had the obvious influence on the oxidation, fracture, or crosslinking of polybutadiene chain segment, and UV aging had the most obvious effect on degradation of large modifier molecules. Based on this extraction method, the peaks for butadiene structure in FTIR spectrum and the peaks of SBS molecular weight in GPC became increasingly apparent, and changes of those peaks before and after aging were clearer than that based on SBS-modified asphalt. All the previous results indicated that the new extraction method was useful for investigating the aging behaviors of SBS modifier without the influence of base asphalt. Furthermore, methyl index (MI) could be utilized to investigate the aging of SBS modifier based on this new extraction method. Pearson correlation coefficient result showed that the new extraction method was more suitable to characterize the close relationship between the aging of SBS modifier and the changes of asphalt rheological properties after aging.
机译:苯乙烯-丁二烯-苯乙烯共聚物(SBS)改性沥青的老化行为是复杂的,这归因于沥青基质硬化和SBS降解的综合作用。为了更清楚地研究SBS改性沥青的老化机理,提出了一种从SBS改性沥青中提取SBS改性剂的新方法。本研究采用的老化方法包括薄膜烘箱测试(TFOT),压力老化容器(PAV)和紫外线(UV)老化。经过不同的老化方法,评估了SBS改性沥青的物理和流变特性。提取的SBS改性剂和SBS改性沥青的化学结构和分子量通过傅里叶变换红外光谱(FTIR)和凝胶渗透色谱(GPC)测试进行分析。结果表明,老化会导致SBS结构的退化,这可能会显着影响沥青的物理和流变性能。根据FTIR和GPC分析,PAV老化对聚丁二烯链段的氧化,断裂或交联有明显影响,而UV老化对大改性剂分子的降解影响最明显。采用这种萃取方法,FTIR光谱中的丁二烯结构峰和GPC中的SBS分子量峰变得越来越明显,老化前后这些峰的变化比基于SBS改性沥青的峰更清晰。所有先前的结果表明,新的提取方法可用于研究SBS改性剂的老化行为,而不受基础沥青的影响。此外,基于这种新的提取方法,可以利用甲基指数(MI)来研究SBS改性剂的老化。 Pearson相关系数结果表明,新的萃取方法更适合表征SBS改性剂的老化与老化后沥青流变性能变化之间的密切关系。

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