通过析因分析两相混合过程对wma的影响及其性能

IF 1.3 Q3 CONSTRUCTION & BUILDING TECHNOLOGY Proceedings of the Institution of Civil Engineers-Construction Materials Pub Date : 2023-10-12 DOI:10.1680/jcoma.23.00039
Hemanta Kumar Behera, Sudhanshu Sekhar Das, Debabrata Giri
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引用次数: 0

摘要

采用无添加剂、沥青乳液包覆集料和沥青在不同混合温度下的两相混合工艺制备了温拌沥青。采用热混合沥青(HMA)分析确定的8%磨粒型高炉渣填料,在不同沥青与乳状液比和不同mt的条件下制备沥青样品,利用因子设计技术,通过交互作用图和主效应图研究了所选因素对马歇尔性能参数的影响。等高线图分析表明,在120℃条件下,沥青与乳液比为80:20时制备的WMA性能最佳,其间接抗拉强度、抗拉强度比、保持稳定性、车辙试验和松散损失值均满足标准规范限值。与HMA相比,选择的WMA的散失率降低了37%。
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Effects of two-phase mixing process on wma by factorial analysis and its performance
Warm-mix asphalt (WMA) was produced using a two-phase mixing process without additives, with bitumen–emulsion-coated aggregates and with bitumen at different mixing temperatures (MTs). The asphalt samples were prepared with 8% ground granulated blast-furnace slag fillers determined from hot-mix asphalt (HMA) analysis, with different bitumen-to-emulsion ratios and different MTs. Using the factorial design technique, the effects of the selected factors on Marshall performance parameters were investigated using interaction plots and main effect plots. The analysis from contour plots revealed that WMA prepared at 120°C with a bitumen-to-emulsion ratio of 80:20 performed best, with indirect tensile strength, tensile strength ratio, retained stability, rutting tests and ravelling loss values all meeting the standard code limits. Compared with HMA, the chosen WMA had a 37% lower ravelling loss.
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CiteScore
3.80
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0.00%
发文量
23
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