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Compressive Strength Chloride Ion Penetrability and Carbonation Characteristic of Concrete with Mixed Slag Aggregate

机译:混合矿渣骨料混凝土的抗压强度氯离子渗透性和碳化特性

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摘要

The shortage of natural aggregates has recently emerged as a serious problem owing to the tremendous growth of the concrete industry. Consequently, the social interest in identifying aggregate materials as alternatives to natural aggregates has increased. In South Korea’s growing steel industry, a large amount of steel slag is generated and discarded every year, thereby causing environmental pollution. In previous studies, steel slag, such as blast furnace slag (BFS), has been used as substitutes for concrete aggregates; however, few studies have been conducted on concrete containing both BFS and Ferronickel slag (FNS) as the fine aggregate. In this study, the compressive strength, chloride ion penetrability, and carbonation characteristic of concrete with both FNS and BFS were investigated. The mixed slag fine aggregate (MSFA) was used to replace 0, 25%, 50%, 75%, and 100% of the natural fine aggregate volume. From the test results, the highest compressive strength after 56 days was observed for the B/F100 sample. The 56 days chloride ion penetrability of the B/F75, and B/F100 samples with the MSFA contents of 75% and 100% were low level, approximately 34%, and 54% lower than that of the plain sample, respectively. In addition, the carbonation depth of the samples decreased with the increase in replacement ratio of MSFA.
机译:由于混凝土工业的巨大发展,天然骨料的短缺最近已成为一个严重的问题。因此,增加了将骨料识别为天然骨料的替代品的社会兴趣。在韩国不断发展的钢铁行业中,每年都会产生并丢弃大量的钢渣,从而造成环境污染。在以前的研究中,钢渣(例如高炉渣(BFS))已被用作混凝土骨料的替代品。但是,对于同时含有BFS和镍铁矿渣(FNS)作为细骨料的混凝土,很少进行研究。在这项研究中,研究了FNS和BFS共同作用下混凝土的抗压强度,氯离子渗透性和碳化特性。混合矿渣细骨料(MSFA)用于代替天然细骨料体积的0%,25%,50%,75%和100%。根据测试结果,B / F100样品在56天后观察到最高的抗压强度。 MSFA含量分别为75%和100%的B / F75和B / F100样品的56天氯离子渗透性较低,分别比普通样品低约34%和54%。此外,样品的碳酸化深度随MSFA置换率的增加而降低。

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