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首页> 外文期刊>Journal of materials in civil engineering >Improving the Properties of RAP-RCCP Mixes by Incorporating Supplementary Cementitious Materials as Part Addition of Portland Cement
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Improving the Properties of RAP-RCCP Mixes by Incorporating Supplementary Cementitious Materials as Part Addition of Portland Cement

机译:通过将补充胶凝材料掺入作为波特兰水泥的零件添加的补充水泥材料,改善RAP-RCCP混合物的性质

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摘要

Efforts have been made in the recent past to enhance the strength properties of reclaimed asphalt pavement (RAP) concrete via inclusions of supplementary cementitious materials (SCMs), but only some of the durability problems could be rectified. In this study, an attempt is made to improve the performance of a roller compacted concrete pavement (RCCP) matrix containing 50% combined RAP fraction (R50 mix) by adopting a nontraditional methodology, i.e., including SCMs in additions of portland cement. The studied SCMs were silica fume (SF), fly ash (FA), and bagasse ash (BA). The results indicated that inclusions of all the SCMs (except BA) would not affect the fresh properties of R50 mix to a great extent but could degrade the quality of RCCP considerably. Microstructural analysis confirmed that asphalt cohesion failure is mainly associated with RAP mixes, with or without SCMs, and therefore, attempts to enhance the performance of RAP concrete would not be possible without removing the asphalt film. Interestingly, the considered mixes demonstrated higher flexural strength than the permissible ACI 325.10R-95 (ACI 2001) limit of 3.67 MPa for pavement application. Also, the SF and BA mixes exhibited better durability properties, in fact, better than the reference conventional mix, in terms of abrasion resistance and resistance to aggressive sulfate and chloride ions, indicating their suitability, especially in regions of aggressive ions and high-speed moving vehicles.
机译:最近的努力已经在近来提高了回收沥青路面(RAP)混凝土的强度特性,通过补充水泥材料(SCM),但只能纠正一些耐用性问题。在这项研究中,通过采用非传统方法,即包括Portland水泥的非传说方法,提高含有50%组合RAP级分(R50混合物)的辊压缩混凝土路面(RCCP)基质的性能。学习的SCMS是二氧化硅烟气(SF),飞灰(FA)和Bagasse Ash(Ba)。结果表明,所有SCM(BA除外)的夹杂物不会影响R50混合的新特性,但可以大大降解RCCP的质量。微观结构分析证实,沥青内聚失效主要与RAP混合有关,有或没有SCM,因此,在不除去沥青薄膜的情况下,将不可能增强RAP混凝土的性能。有趣的是,所考虑的混合物表现出比允许的ACI 325.10R-95(ACI 2001)限制为3.67MPa的脉冲强度较高。此外,SF和BA混合物表现出更好的耐久性,实际上,在耐磨性和抗侵蚀性硫酸盐和氯离子方面,比参考常规混合物更好,表明它们的适用性,特别是在侵略性离子区域和高速区域中移动车辆。

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