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Strength Mechanism and Influence Factors for Cold Recycled Asphalt Mixture

机译:冷再生沥青混合料的强度机理及影响因素

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This study focused on the key factors affecting the tensile strength of cold recycled asphalt mixture with cement and emulsified asphalt. The specific surface areas and strength of RAP were analyzed. The interaction between the emulsified asphalt and cement was observed. Comprehensive laboratory testing was conducted to evaluate the influences of RAP, emulsified asphalt, and cement on the tensile strength of cold recycled asphalt mixture. It is found that although RAP is used as aggregates, its inner structure and strength are much different from real aggregates. The strength of RAP has decisive effect on the strength of cold recycled asphalt mixture. New aggregates and fine gradation design can help improve the bonding between RAP and binder. For emulsified asphalt, slow setting of asphalt can give sufficient time for cement to hydrate which is helpful for strength formation in the cold recycled asphalt mixture. The high viscosity of asphalt can improve the early strength of cold recycled asphalt mixture that is important for traffic opening in the field. Cement is an efficient additive to improve the strength of cold recycled asphalt mixtures by promoting demulsification of emulsified asphalt and producing cement hydrates. However, the cement content is limited by RAP.
机译:这项研究集中于影响冷再生沥青混合料与水泥和乳化沥青的抗张强度的关键因素。分析了RAP的比表面积和强度。观察到乳化沥青和水泥之间的相互作用。进行了全面的实验室测试,以评估RAP,乳化沥青和水泥对冷再生沥青混合料的抗张强度的影响。发现尽管RAP用作骨料,但其内部结构和强度与实际骨料有很大不同。 RAP的强度对冷再生沥青混合料的强度具有决定性的影响。新的骨料和精细的渐变设计可以帮助改善RAP和粘合剂之间的粘合力。对于乳化沥青,缓慢固化的沥青可以使水泥有足够的时间水合,这有助于在冷再生沥青混合料中形成强度。沥青的高粘度可以提高冷再生沥青混合料的早期强度,这对于现场交通开放非常重要。水泥是通过促进乳化沥青的破乳和生产水泥水合物来提高冷再生沥青混合料强度的有效添加剂。但是,水泥含量受RAP限制。

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