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Experimental Study on Effects of Steel Fiber Volume on Mechanical Properties of SFRC

机译:钢纤维体积对SFRC力学性能影响的实验研究

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In recent years, considerable interest has developed in using fibers to increase the load-carrying capacity of concrete members. Fibers significantly reduce the brittleness of concrete and improve its engineering properties, such as tensile, flexural, impact resistance, fatigue, load bearing capacity after cracking and toughness. However, studies on the exact amount of influence are very limited. Among fibers, steel fibers are one of the most popular and widely used types of fibers in both research and practice. Steel fiber-reinforced concrete (SFRC) has been used increasingly in recent years and has a lot of applications. Previous researchers have mentioned that using fiber as 0.5 - 2.5 % of the volume of concrete can significantly improve the concrete properties. The purpose of this paper is firstly to investigate the effects of fiber volume on the compressive, splitting, and flexural behaviors of SFRC, and secondly to compare modes of failure. Variable items are the steel fiber volume fraction and the curing day. A series of 108 specimens (cube, cylinder and prism) with four different steel fiber volumes are used by a ratio of 0, 0.7, 1.0 and 1.5%. All specimens are cured in a water tank for 7, 14 and 28 days, respectively to provide same conditions. Hooked-ended steel fibers with a length of 30mm and a diameter of 0.75 mm are used.
机译:近年来,在使用纤维来增加混凝土构件的承载能力方面引起了很大的兴趣。纤维可显着降低混凝土的脆性,并改善其工程性能,例如拉伸,挠曲,抗冲击,疲劳,开裂后的承载能力和韧性。但是,关于影响的确切数量的研究非常有限。在纤维中,钢纤维是研究和实践中最流行和使用最广泛的纤维类型之一。近年来,钢纤维增强混凝土(SFRC)的使用越来越广泛,并且具有许多应用。以前的研究人员曾提到使用纤维占混凝土体积的0.5-2.5%可以显着改善混凝土性能。本文的目的是首先研究纤维体积对SFRC的压缩,分裂和弯曲行为的影响,其次要比较破坏模式。可变项目是钢纤维的体积分数和固化日期。使用一系列具有四种不同钢纤维体积的108个样品(立方体,圆柱体和棱柱),比例分别为0、0.7、1.0和1.5%。所有样品在水箱中分别固化7天,14天和28天,以提供相同的条件。使用长度为30mm,直径为0.75mm的钩端钢纤维。

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