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Mechanical and durability properties of the concrete with copper slag

机译:用铜渣混凝土的机械和耐久性特性

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Increased Development in the field of construction with the use of sand, stones etc. depletes the natural resources and thus resulted in the scarcity of construction materials. Furthermore, generation of waste from several industries such as steel slag, copper slag, blast furnace slag etc. are being dumped in the nearby landfills leading to disposal problems. The scarcity of construction materials necessitated the utilization of suitable alternative materials with equivalent physical and chemical characteristics. This paper investigates the suitability of copper slag (CS) as a substitute to natural fine aggregate (NFA) in the concrete. The concrete mixes are prepared with 0%, 10%, 30%, 50%, 70% and 100% of copper slag at 0.45 w/c ratio. The behaviour of CS in the concrete was assessed by hardened properties such as compression, tension and flexure at 7, 14, 28 and 90 days and durability properties such as water absorption, porosity and chloride ion penetration at 56 days. Results indicate that the replacement of CS beyond 50% affects properties of the concrete; however increased curing improved the properties of the concrete at higher replacement levels. Characterization studies such as XRD and SEM was performed to examine the effect of CS on the properties of the concrete.
机译:利用沙子,石头等增加了建筑领域的发展。耗尽自然资源,从而导致建筑材料的稀缺。此外,从钢渣,铜渣,高炉炉渣等若干行业的生成都在附近的垃圾填埋场倾倒,导致处置问题。建筑材料的稀缺性需要利用合适的替代材料,具有等同的物理和化学特性。本文研究了铜渣(CS)作为混凝土中的天然精细骨料(NFA)的替代品的适用性。将混凝土混合物以0.45W / C的比例为0%,10%,30%,50%,70%和100%的铜渣。通过硬化性能评估混凝土中的CS在7,14,28和90天的压缩,张力和挠曲,耐久性,孔隙率和氯离子渗透在56天内,评估混凝土中的CS在混凝土中的行为。结果表明,替代超过50%的Cs影响混凝土的性质;然而,在更高的更换水平下,提高固化改善了混凝土的性质。进行XRD和SEM等表征研究以检查CS对混凝土性能的影响。

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