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Experimental investigation on flexural toughness of hybrid fiber reinforced concrete (HFRC) containing metakaolin and pumice

机译:含偏高岭土和浮石的混杂纤维增强混凝土(HFRC)的弯曲韧性试验研究

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摘要

Fiber reinforced concrete (FRC) has been widely used due to its advantages over plain concrete. It can be an appropriate material for the repair of structures in a variety of situations. However there is a weak zone between fibers and paste in fiber reinforced concretes and this weak zone is full of porosity, especially in hybrid fiber reinforced concretes. Therefore, using of pozzolanic materials is required to reduce the porosity. Pumice and kaolin are two pozzolanic materials that have been found abundantly in some regions of the world. In this paper, the mechanical properties of concretes containing various amounts of the pozzolanic materials and steel and polypropylene fibers are investigated. At the first step of this paper, the flexural and impact resistance tests were carried out to choose the optimum percentage of steel and polypropylene fibers. Results showed that hybrid fiber reinforced concrete with 0.75% steel fibers and 0.25% polypropylene fibers had higher toughness indexes, modulus of rupture and impact resistance than other hybrid mixtures. Afterward, compressive strength and flexural tests on hybrid fiber reinforced concretes containing pumice and metakaolin were carried. Results showed that, metakaolin with highest substitution of cement had the best performance of mechanical properties of concrete. Moreover, this pozzolan caused increasing in compressive strength in comparison with control mixture. However, replacing pumice into the specimens had negative effect on the mechanical properties results.
机译:纤维增强混凝土(FRC)由于其优于普通混凝土的优势而被广泛使用。它可以是在各种情况下修复结构的合适材料。但是,在纤维增强混凝土中,纤维和浆料之间存在一个薄弱区域,该薄弱区域充满了孔隙,尤其是在混合纤维增强混凝土中。因此,需要使用火山灰材料来降低孔隙率。浮石和高岭土是在世界某些地区大量发现的两种火山灰材料。本文研究了含有各种火山灰材料以及钢和聚丙烯纤维的混凝土的力学性能。在本文的第一步,进行了抗弯和抗冲击测试,以选择钢和聚丙烯纤维的最佳比例。结果表明,具有0.75%钢纤维和0.25%聚丙烯纤维的混杂纤维增强混凝土具有比其他混杂混合物更高的韧性指数,断裂模量和抗冲击性。之后,对含浮石和偏高岭土的混合纤维增强混凝土进行了抗压强度和抗弯试验。结果表明,水泥取代度最高的偏高岭土具有最佳的混凝土力学性能。此外,与对照混合物相比,这种火山灰引起抗压强度的增加。然而,将浮石替换成样品对机械性能结果有负面影响。

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