Experimental study on steel fibre reinforced concrete for G-30 concrete

T. Karththekeyan, K. Baskaran
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引用次数: 1

Abstract

Concrete plays a major role in the construction industry. However, concrete is weak in tension, in order to overcome this, normally reinforcements are used in construction. But these reinforcements won't be able to stop initiating tensile cracks and other defects in concrete. Aim of this study is to find the optimum volumetric percentage of steel fibre required to increase the tensile strength of concrete with laboratory experiments. For that, seven groups of grade 30 concrete were produced with the addition of steel fibres at different volumetric percentages: 0% (as a control specimen), 0.77%, 0.86%, 0.93%, 1.00%, 1.07% and 1.47% by absolute weight of concrete. Steel fibres with aspect ratio, l/d = 80 with 0.75 mm diameter and hooked at both ends, were used in this study. The effects of adding Steel fibres in concrete were measured for the cube compressive strength (fcu) and splitting tensile strength (fct). Result data clearly shows higher percentage increase in 7 and 28 days compressive strength and tensile strength for 0.86% steel fibres added concrete.
钢纤维混凝土G-30混凝土试验研究
混凝土在建筑行业中起着重要作用。然而,混凝土的张力较弱,为了克服这一点,通常在施工中使用钢筋。但这些增强材料无法阻止混凝土产生拉伸裂缝和其他缺陷。本研究的目的是通过室内试验,找出提高混凝土抗拉强度所需的最佳钢纤维体积百分比。为此,以不同体积百分比添加钢纤维的7组30级混凝土:混凝土绝对重量为0%(作为对照试样)、0.77%、0.86%、0.93%、1.00%、1.07%和1.47%。采用长径比为l/d = 80、直径为0.75 mm、两端钩接的钢纤维。测定了钢纤维对混凝土的立方体抗压强度(fcu)和劈裂抗拉强度(fct)。结果表明,掺量为0.86%的钢纤维混凝土,其7天抗压强度和28天抗拉强度均有较大的提高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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