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首页> 外文期刊>Journal of Adhesion Science and Technology: The International Journal of Theoredtical and Basic Aspects of Adhesion Science and Its Applications in All Areas of Technology >Surface free energy method for evaluating the effects of anti-stripping agents on the moisture damage to asphalt mixtures
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Surface free energy method for evaluating the effects of anti-stripping agents on the moisture damage to asphalt mixtures

机译:用于评估抗汽提试剂对沥青混合物水分损伤的影响的表面自由能方法

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The moisture stability of an asphalt mixture was enhanced with cement, hydrated lime, and an anti-stripping agent (called AMR II) to improve the adhesive bond of asphalt with the aggregate. A total of eight asphalt binders and three aggregates (crushed gravel, limestone, and granite) were used for the preparation of different asphalt mixtures. Indirect tensile strength and residual stability tests were carried out to determine the moisture stability. The surface free energy (SFE) of the asphalt binder and aggregates were measured using the sessile drop method and universal sorption device method, respectively. Based on the SFE method, the cohesive, adhesive, and stripping energies of the asphalt and asphalt mixtures were studied. Moreover, the SFE parameters were introduced while analyzing the correlation of the cohesive, adhesive, and stripping energies of the asphalt with the moisture stability. The results show that the incorporation of a single or compound anti-stripping agent can improve the moisture stability of the asphalt mixture, and the improvement effect of compound agents is greater. Furthermore, the SFE components improved after the addition of the anti-stripping agent. The addition of the anti-stripping agent influenced the cohesive and adhesive energy remarkably, whereas the aggregate type, especially its silica content and specific surface area, has a significant effect on the adhesive and stripping energy of the asphalt mixture. A linear regression analysis suggested that the SFE parameters have a good correlation with the moisture damage properties. The SFE parameters can be used to determine the moisture damage performance, and the SFE method can be used to verify the moisture stability of asphalt mixtures.
机译:使用水泥、熟石灰和抗剥落剂(称为AMR II)增强沥青混合料的水分稳定性,以改善沥青与骨料的粘结性。共使用八种沥青粘合剂和三种骨料(碎砾石、石灰石和花岗岩)制备不同的沥青混合料。进行了间接拉伸强度和残余稳定性试验,以确定水分稳定性。采用固定滴法和通用吸附装置法分别测定了沥青结合料和集料的表面自由能(SFE)。基于SFE方法,研究了沥青和沥青混合料的内聚能、粘附能和剥离能。此外,在分析沥青的内聚能、粘附能和剥离能与水分稳定性的相关性时,引入了SFE参数。结果表明,加入单一或复合抗剥落剂均能改善沥青混合料的水稳定性,复合抗剥落剂的改善效果更大。此外,添加抗剥离剂后,SFE组分得到改善。抗剥落剂的加入对沥青混合料的粘结能和剥离能有显著影响,而骨料类型,尤其是其二氧化硅含量和比表面积,对沥青混合料的粘结能和剥离能有显著影响。线性回归分析表明,SFE参数与湿害特性具有良好的相关性。SFE参数可用于确定沥青混合料的水损害性能,SFE方法可用于验证沥青混合料的水稳定性。

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