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水力发电学报

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酸性骨料沥青混凝土抗剥落措施试验研究

  

  • 出版日期:2026-06-01 发布日期:2026-06-01

Experimental study on anti stripping measures of acidic aggregate asphalt concrete

  • Online:2026-06-01 Published:2026-06-01

摘要: 为拓展酸性骨料在水工沥青混凝土中的应用,本研究采用OA、OB有机抗剥落剂及水泥、消石灰无机抗剥落剂以提升酸性骨料与沥青的黏附性能。通过红外光谱、沥青三大指标测试、旋转薄膜烘箱老化、接触角测定及水稳定性试验一系列方法,评价了抗剥落剂对沥青及混合料性能的改善效果。研究结果表明:红外光谱分析揭示,OA抗剥落剂中丰富的磷酸酯与芳香族组分分别是增强黏附性与热稳定性的关键成分。相较于OB,OA系列的改性沥青表现出更优的抗老化性能。当掺量为0.4%时,OA改性沥青老化后的软化点仅升高0.5℃,而OB改性沥青升高3.4℃。表面能计算结果显示,增加OA掺量可提高沥青的内聚功、无水黏附功及抗水损害指标R值。在沥青混凝土中,单独使用OA抗剥落剂对劈裂强度与劲度模量不利,复掺100%水泥可恢复劈裂强度至基准水平,同时劲度模量保持在90%。综合而言,采用0.4% OA有机抗剥落剂与100%水泥填料相结合的策略,能够获得良好的水稳定性以及力学性能。研究结果为水利工程中经济高效地利用酸性骨料提供了可行的技术路径。

Abstract: To expand application of acidic aggregates in hydraulic asphalt concrete, this study employed organic anti-stripping agents (OA and OB) and inorganic anti-stripping agents (cement and hydrated lime) to enhance the adhesion between acidic aggregates and asphalt. A series of tests, including Fourier transform infrared spectroscopy (FTIR), conventional asphalt properties, rolling thin film oven aging (RTFOT), contact angle measurement, and water stability test, was conducted to evaluate the influence patterns of anti-stripping agents on the performance of asphalt and mixtures. The results indicate that the abundant phosphate esters and aromatic components in the OA anti-stripping agent are the key components responsible for enhancing adhesion and thermal stability, respectively, as revealed by infrared spectroscopy. Compared with OB, OA-modified asphalt exhibited superior anti-aging properties. At a dosage of 0.4%, the softening point of OA-modified asphalt increased by only 0.5°C after aging, whereas that of OB-modified asphalt increased by 3.4°C. Surface energy tests demonstrated that increasing the OA content improved the cohesive work, dry adhesive work, and water damage resistance index (R-value) of asphalt. For asphalt concrete, OA reduced the splitting strength and stiffness modulus, whereas 100% cement replacement of mineral powder restored the splitting strength to the baseline level while maintaining the stiffness modulus at 90% of the reference. In summary, the strategy combining 0.4% OA organic anti-stripping agent with 100% cement filler significantly enhances the adhesion and water stability between asphalt and acidic aggregate while maintaining good mechanical properties. The findings provide a feasible technical pathway for the cost-effective utilization of acidic aggregates in hydraulic engineering.

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