Experimental Investigation on the Properties of Recycled Concrete Using Hybrid Fibers

S. Khoso, J. Raad, A. Parvin
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引用次数: 9

Abstract

Due to the inherent property of concrete being very weak in tension, efforts have been made to overcome this deficiency by adding various type of fibers like carbon fiber reinforced polymer (CFRP), glass fiber reinforced polymer (GFRP), polypropylene fiber (PPF) and stainlesssteel fiber (SSF) smeared into the concrete mix. The present study involves experimental investigation on the use of GFRP, CFRP and SSF fibers alone or as combination to improve the mechanical properties of concrete. Furthermore, concrete cylinders were cast and tested for compression and tension using 10% fly ash as cement replacement in all specimens. Besides fiber material types, fiber reinforcement ratios of 1% and 1.5% were tested to investigate the mechanical properties of concrete. In all concrete cylinder tests, the fiber reinforcement ratio of 1% had a significant contribution in increasing the tensile strength as oppose to compressive strength. As a result, the tensile and compressive strengths were increased by 26% and 11%, respectively as compared to the control specimen. Increasing the fiber reinforcement ratio from 1% to 1.5%, resulted in diminishing the mechanical properties of concrete. However, reduction in concrete compressive strength was more prominent than the tensile strength. Furthermore, it was observed that, the crack propagation was decreased with the increase of fiber content when compared to the control specimen.
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混杂纤维再生混凝土性能的试验研究
由于混凝土固有的抗拉性能非常弱,人们一直在努力克服这一缺点,在混凝土混合料中加入各种类型的纤维,如碳纤维增强聚合物(CFRP)、玻璃纤维增强聚合物(GFRP)、聚丙烯纤维(PPF)和不锈钢纤维(SSF)。本研究对GFRP、CFRP和SSF纤维单独使用或组合使用对混凝土力学性能的改善进行了试验研究。此外,浇筑混凝土柱,并在所有试件中使用10%粉煤灰替代水泥进行压缩和拉伸试验。除纤维材料类型外,还试验了1%和1.5%的纤维配筋率对混凝土力学性能的影响。在所有混凝土圆柱体试验中,1%的纤维配筋率对抗拉强度的提高贡献显著,而不是抗压强度的提高。结果,与对照试样相比,拉伸和抗压强度分别提高了26%和11%。纤维配筋率从1%增加到1.5%,导致混凝土力学性能下降。然而,混凝土抗压强度的降低比抗拉强度的降低更为突出。此外,与对照试样相比,随着纤维含量的增加,裂纹扩展减小。
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