Experimental evaluation of steel fiber effect on mechanical properties of steel fiber-reinforced cement matrix

A. Jadidi, M. Amiri, E. Zeighami
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引用次数: 4

Abstract

This paper investigates the possibility of combining steel fibers with different weight percentages along with their functions in increasing compressive strength, indirect tensile strength and bending strength. In this study, two types of steel fibers, hooked and crimped, have been employed in the preparation of samples. These fibers have a length to diameter ratio of 30 mm and 50 mm (L/D=30 and L/D=50). Further, the combination of these fibers caused a reduction in concrete flow and reduced its efficiency. The combination of these fibers caused considerable increase of concrete bending strength compared to fibreless and single-fiber type concretes. In this research, tensile strength and bending strength of samples with 1.5%, 2% and 2.5% fibers were investigated in which the tensile strength and bending strength of all samples increased. However, there were very considerable increases in tensile strength and bending strength of samples made with hybrid crimped fibers. The results indicated that steel fibers did not have much impact on concrete compressive strength.
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钢纤维对钢纤维增强水泥基体力学性能影响的试验评价
探讨了不同重量百分比钢纤维复合的可能性及其在提高抗压强度、间接抗拉强度和抗弯强度方面的作用。在本研究中,两种类型的钢纤维,钩和卷曲,已被用于制备样品。这些纤维的长径比分别为30mm和50mm (L/D=30和L/D=50)。此外,这些纤维的组合导致混凝土流量减少并降低了其效率。与无纤维和单纤维型混凝土相比,这些纤维的组合使混凝土的抗弯强度显著提高。在本研究中,研究了1.5%、2%和2.5%纤维含量的样品的抗拉强度和弯曲强度,结果表明,所有样品的抗拉强度和弯曲强度都有所提高。然而,用混杂卷曲纤维制成的样品的拉伸强度和弯曲强度有相当大的提高。结果表明,钢纤维对混凝土抗压强度影响不大。
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