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Evaluate the effect of steel, polypropylene and recycled plastic fibers on concrete properties

机译:评价钢,聚丙烯和再循环塑料纤维对混凝土性能的影响

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摘要

The impacts of reinforcing concrete matrix with steel fibers, polypropylene fibers and recycled plastic fibers using different volume fractions of 0.15%, 0.5%, 1.5% and 2.5% on the compressive and tensile characteristics are experimentally investigated in the current research. Also, flexural behavior of plain concrete (PC) beams, shear performance of reinforced concrete (RC) beams and compressive characteristics of both PC and RC columns reinforced with recycled plastic fibers were studied. The experimental results showed that the steel fibers improved the splitting tensile strength of concrete higher than both the polypropylene fibers and recycled plastic fibers. The end-hooked steel fibers had a positive effect on the compressive strength of concrete while, the polypropylene fibers, the recycled plastic fibers and the rounded steel fibers had a negative impact. Compressive strength of end-hooked steel fiber specimen with volume fraction of 2.5% exhibited the highest value among all tested samples of 32.48 MPa, 21.83% higher than the control specimen. The ultimate load, stiffness, ductility and failure patterns of PC and RC beams in addition to PC and RC columns strengthened with recycled plastic fibers enhanced remarkably compared to non-strengthened elements. The maximum ultimate load and stiffness of RC column reinforced with recycled plastic fibers with 1.5% volume fraction improved by 21 and 15%, respectively compared to non-reinforced RC column.
机译:在目前的研究中,使用不同体积分数的钢纤维,聚丙烯纤维和再循环塑料纤维的钢纤维,聚丙烯纤维和再循环塑料纤维的影响在目前的研究中进行了实验研究。此外,研究了普通混凝土(PC)光束,钢筋混凝土(RC)梁的剪切性能以及用再循环塑料纤维增强的PC和RC柱的抗压特性的弯曲行为。实验结果表明,钢纤维提高了比聚丙烯纤维和再生塑料纤维高的混凝土分裂拉伸强度。端钩钢纤维对混凝土的抗压强度进行了积极影响,而聚丙烯纤维,再循环的塑料纤维和圆形钢纤维的抗压纤维具有负面影响。封端钢纤维样品的压缩强度为2.5%的体积分数显示出所有测试样品的最高值32.48MPa,比对照样品高出21.83%。除了使用再循环的塑料纤维加强的PC和RC柱之外,PC和RC柱的最终负载,刚度,延展性和故障模式,与未加强的元件相比,可显着增强。与非增强的RC柱相比,通过再循环塑性纤维加强了RC柱的最大载荷和刚度,再循环率为1.5%的体积分别,增加了21%和15%。

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