粉煤灰对钢筋混凝土抗压强度、碳化和耐腐蚀性的影响:系统综述

IF 1.4 Q2 ENGINEERING, MULTIDISCIPLINARY
Prathamesh Gaikwad, Sandeep Sathe
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引用次数: 0

摘要

本文旨在研究和分析粉煤灰(FA)作为矿物掺合料对钢筋混凝土(RC)抗压强度(CS)、抗碳化和抗腐蚀性能的影响。此外,利用价格低廉、来源丰富的粉煤灰作为混凝土中的水泥替代品具有多种益处,包括减少 OPC 用量和消除粉煤灰处置问题。此外,使用 FA 作为绿色缓蚀剂,是一种无毒且环保的替代品。本综述讨论了 FA 对混凝土机械特性的影响。此外,本综述还分析了 FA 作为混凝土中水泥的部分替代品的影响及其对混凝土构件碳化深度和预埋钢筋腐蚀速率的影响,以及 FA 混凝土的化学成分和微观结构(X 射线衍射分析和扫描电子显微镜)。关于混凝土 CS,研究结果表明,掺入 FA 通常会导致早期强度下降。然而,随着养护时间的延长,粉煤灰混凝土(FAC)的强度与传统混凝土的强度相同,甚至超过了传统混凝土。对加速碳化试验的分析表明,在混凝土拌合物中掺入粉煤灰会导致碳化深度变浅,二氧化碳(CO2)在混凝土中的扩散速度变慢。此外,半电池电位测试表明,掺入 FA 可减缓钢筋的腐蚀速度,从而提高 RC 的耐久性。本综述旨在批判性地评估 FAC 和 FA-RC 在机械和耐久性属性(如 CS、碳化和耐腐蚀性)方面的改进。本系统综述对建筑和工程行业具有实际意义。这有助于工程师和设计师在考虑到 FA 的优点和潜在缺点的情况下,就混凝土混合物中 FA 的使用做出明智的决定。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of fly ash on compressive strength, carbonation and corrosion resistance of reinforced concrete: a systematic review
Purpose The purpose of this paper is to study and analyze the effects of fly ash (FA) as a mineral admixture on compressive strength (CS), carbonation resistance and corrosion resistance of reinforced concrete (RC). In addition, the utilization of inexpensive and abundantly available FA as a cement replacement in concrete has several benefits including reduced OPC usage and elimination of the FA disposal problem. Design/methodology/approach Reinforcement corrosion and carbonation significantly affect the strength and durability of the RC structures. Also, the utilization of FA as green corrosion inhibitors, which are nontoxic and environmentally friendly alternatives. This review discusses the effects of FA on the mechanical characteristics of concrete. Also, this review analyzes the impact of FA as a partial replacement of cement in concrete and its effect on the depth of carbonation in concrete elements and the corrosion rate of embedded steel as well as the chemical composition and microstructure (X-ray diffraction analysis and scanning electron microscopy) of FA concrete were also reviewed. Findings This review provides a clear analysis of the available study, providing a thorough overview of the current state of knowledge on this topic. Regarding concrete CS, the findings indicate that the incorporation of FA often leads to a loss in early-age strength. However, as the curing period increased, the strength of fly ash concrete (FAC) increased with or even surpassed that of conventional concrete. Analysis of the accelerated carbonation test revealed that incorporating FA into the concrete mix led to a shallower carbonation depth and slower diffusion of carbon dioxide (CO2) into the concrete. Furthermore, the half-cell potential test shows that the inclusion of FA increases the durability of RC by slowing the rate of steel-reinforcement corrosion. Originality/value This systematic review analyzes a wide range of existing studies on the topic, providing a comprehensive overview of the research conducted so far. This review intends to critically assess the enhancements in mechanical and durability attributes (such as CS, carbonation and corrosion resistance) of FAC and FA-RC. This systematic review has practical implications for the construction and engineering industries. This can support engineers and designers in making informed decisions regarding the use of FA in concrete mixtures, considering both its benefits and potential drawbacks.
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来源期刊
World Journal of Engineering
World Journal of Engineering ENGINEERING, MULTIDISCIPLINARY-
CiteScore
4.20
自引率
10.50%
发文量
78
期刊介绍: The main focus of the World Journal of Engineering (WJE) is on, but not limited to; Civil Engineering, Material and Mechanical Engineering, Electrical and Electronic Engineering, Geotechnical and Mining Engineering, Nanoengineering and Nanoscience The journal bridges the gap between materials science and materials engineering, and between nano-engineering and nano-science. A distinguished editorial board assists the Editor-in-Chief, Professor Sun. All papers undergo a double-blind peer review process. For a full list of the journal''s esteemed review board, please see below.
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