Enhancing Concrete Properties by Adding Shred-like Steel Fibres and Steel Dust

A. Ajwad, Abdullah, Muhammad Usman, Shakir Ahmad, U. Ilyas, Abdul Waqar Akhtar, B. Zahid
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引用次数: 1

Abstract

In this research, fine and coarse aggregates present in the concrete were replaced with steel dust and shred-like steel fibres respectively in different ratios and the effect of their replacement on the properties of concrete was studied. Eight batches of concrete were mixed, each with the mix proportion of 1:2:4 and water- cement ratio of 0.52. Batch A was of normal concrete. In batches B, C, and D, 5%, 10%, and 15% of sand was replaced with steel dust, respectively. In batches, E, F, and G, 2%, 5%, and 8% of coarse aggregates were replaced with steel fibres. In the last batch H, 5% of sand and 5% of coarse aggregates were replaced with steel fines and steel fibres, respectively. British as well as American standards were followed during the research. Slump test was performed in the fresh state of each mix to find the effect of these replacements on its workability. 12 cubes of 150mm × 150mm × 150mm for compressive strength test and 12 cylinders of 150mm diameter and 300mm height for tensile strength test were made for each batch to check their strength after every 3, 7, 14, and 28 days. It was found that the workability of fresh concrete decreases while the density of fresh as well as hardened concrete increases with these replacements. They also result in an increase in initial compressive strength and a decrease in final compressive strength as compared to those of normal concrete. As far as tensile strength is concerned, an increase in initial as well as final strength was observed.
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添加碎状钢纤维和钢粉提高混凝土性能
本研究将混凝土中存在的细骨料和粗骨料分别以不同比例替换钢粉和碎状钢纤维,并研究其替换对混凝土性能的影响。共配制8批混凝土,每批混凝土的配合比为1:2:4,水灰比为0.52。A批为普通混凝土。在B、C、D批次中,分别用钢粉代替5%、10%、15%的砂子。在批次中,E, F和G, 2%, 5%和8%的粗骨料用钢纤维代替。在最后一批H中,分别用钢粉和钢纤维代替5%的砂和5%的粗集料。研究过程中遵循了英国和美国的标准。在每种混合料的新鲜状态下进行坍落度试验,以确定这些替代物对其和易性的影响。每批制作12个150mm × 150mm × 150mm的立方体进行抗压强度试验,12个直径150mm、高度300mm的圆柱体进行抗拉强度试验,每3、7、14、28天进行强度检测。结果表明,新拌混凝土的和易性降低,而新拌混凝土和硬化混凝土的密度增加。与普通混凝土相比,它们还会导致初始抗压强度的增加和最终抗压强度的降低。就抗拉强度而言,观察到初始和最终强度的增加。
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