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首页> 外文期刊>Journal of materials in civil engineering >Recycled Concrete Aggregate Modified with Polyvinyl Alcohol and Fly Ash for Concrete Pavement Applications
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Recycled Concrete Aggregate Modified with Polyvinyl Alcohol and Fly Ash for Concrete Pavement Applications

机译:聚乙烯醇和粉煤灰改性的再生混凝土骨料,用于混凝土路面

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Recycled concrete aggregate (RCA) is traditionally limited to nonstructural applications. Although the crushing process results in weak mortar particles and surface cracks throughout the RCA, RCA concrete can be employed as rigid pavement materials after its mechanical strength has been improved. This research evaluated the novel use of polyvinyl alcohol (PVA) and fly ash (FA) for the improvement of mechanical strengths of RCA concrete. The influence of PVA to binder (p/b) and FA/cement (FA/c) ratios on the mechanical strength of RCA-PVA-FA concrete was assessed by compressive, split tensile, and flexural strength tests. The mechanisms controlling the improvement of mechanical strengths were discussed based on the results of microstructural analysis using scanning electron microscopy (SEM) and energy-dispersive X-ray (EDX) methods. The results of this research indicate that the addition of PVA resulted in a reduction of the compressive strength of RCA concrete in both the short and the long term. However, with an optimum p/b of 1%, both the flexural and tensile strengths increased significantly. At the optimal p/b, the PVA films infiltrated into cementitious matrixes and enhanced the reinforcing ability within the matrixes. However, excess p/b retarded the hydration process and caused reductions in the cementitious tensile bonding. The long-term mechanical strength (28 days) was remarkably improved by FA addition at optimum FA/c of 20:80, and the presence of cementitious products on the FA grains and in the voids was clearly observed. The highest long-term flexural and tensile strengths were found at p/b=1% and FA/c=20:80, whereby the 28-day flexural strength was higher than the requirement specified by the US Army and the US Air Force. The 28-day compressive strengths were also higher than the requirements specified by Department of Highways, Thailand. The outcome of this research will result in the promotion of using wastes, namely RCA and FA, in rigid pavement application, which is practical and preferred from engineering, economic, and environmental perspectives. (c) 2019 American Society of Civil Engineers.
机译:再生混凝土骨料(RCA)传统上仅限于非结构性应用。尽管压碎过程会导致整个RCA中的砂浆颗粒变弱和表面开裂,但在提高其机械强度之后,RCA混凝土可以用作刚性路面材料。这项研究评估了聚乙烯醇(PVA)和粉煤灰(FA)在改善RCA混凝土机械强度方面的新颖用途。通过抗压强度,劈裂抗张强度和抗弯强度试验评估了PVA对粘合剂(p / b)和FA /水泥(FA / c)比例对RCA-PVA-FA混凝土机械强度的影响。基于使用扫描电子显微镜(SEM)和能量色散X射线(EDX)方法进行微观结构分析的结果,讨论了控制机械强度提高的机制。这项研究的结果表明,添加PVA会导致RCA混凝土的短期和长期抗压强度降低。但是,当最佳p / b为1%时,抗弯强度和抗拉强度均显着提高。在最佳p / b时,PVA膜渗入水泥基体中,并增强了基体内的增强能力。但是,过量的p / b会延迟水合过程,并导致胶凝拉伸粘合力降低。通过在最佳FA / c为20:80的条件下添加FA,可以显着改善长期机械强度(> 28天),并且可以清楚地观察到在FA晶粒和空隙中存在胶结产物。发现最高的长期抗弯强度和拉伸强度为p / b = 1%和FA / c = 20:80,因此28天抗弯强度高于美国陆军和美国空军的要求。 28天的抗压强度也高于泰国公路部规定的要求。这项研究的结果将促进在刚性路面应用中使用废物,即RCA和FA,这是实用的,并且从工程,经济和环境的角度来看都是首选。 (c)2019美国土木工程师学会。

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