Effects of Kortta fibres and microsilica on the mechanical properties of lightweight concrete in oil product environments

IF 0.8 Q4 ENGINEERING, CIVIL Advances in Civil and Architectural Engineering Pub Date : 2023-03-04 DOI:10.13167/2023.26.2
A. Jafari, Sajad Rezaei
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Abstract

Crude oil and its products are strategic and vital goods for most countries in the world. It is necessary to store these products in the production and transfer chain and send them to refineries, ports, and airports for military and national purposes. Lightweight concrete is propounded as a useful replacement for normal concrete due to its low specific weight and acceptable resistance property; however, compared to normal concrete, it is considered to be more permeable, less durable, and less resistant. Therefore, in this study, the reliability of this synthetic material in oil conditions has been investigated. In this regard, two groups of samples were investigated under normal and oil environmental conditions, polymer Kortta fibres with percentages of 0; 0,5; 1,0; 1,5; and 2,0 % and microsilica with percentages of 0 and 15 % by cement weight were incorporated alone and combined. Subsequently, tests were performed on the specimens after 90 days. The results showed that the combination of microsilica and Kortta fibres causes a significant increase in lightweight concrete strength and impermeability.
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Kortta纤维和微二氧化硅对石油产品环境中轻质混凝土力学性能的影响
原油及其产品是世界上大多数国家的战略物资和重要物资。有必要将这些产品储存在生产和运输链中,并将其运送到炼油厂、港口和机场,用于军事和国家目的。轻质混凝土由于其低比重和可接受的阻力性能而被提出作为普通混凝土的有用替代品;然而,与普通混凝土相比,它被认为渗透性更强,耐久性更差,阻力更小。因此,在本研究中,研究了这种合成材料在油品条件下的可靠性。在这方面,在正常和石油环境条件下研究了两组样品:百分比为0的聚合物Kortta纤维;0、5;1, 0;1、5;将水泥质量比分别为0、15%的二氧化硅和微二氧化硅单独掺入和复合掺入。随后,在90天后对标本进行了测试。结果表明,微二氧化硅和Kortta纤维的结合使轻质混凝土的强度和抗渗性显著提高。
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