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Effect of Calcium Chloride on the Compressive Strength of Concrete Produced from Three Brands of Nigerian Cement

机译:氯化钙对尼日利亚三种品牌水泥生产的混凝土抗压强度的影响

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Concrete is a common material used in the Nigerian building industry. It is obtained by mixing cementitious materials, water, fine and coarse aggregates and sometimes admixtures in required proportions. Admixtures are added to concrete to modify its properties so as to make it more suitable for any situation. In recent times, building collapse in Nigeria has been a source of concern particularly to those associated with the building industry. This has necessitated the need to check the effect admixtures have on some properties of concrete. This study investigated the effect of calcium chloride (CaCl_2) as an admixture on the compressive strength of concrete produced from Dangote, Elephant and Burham brands of cement available in Nigeria. The impact of calcium chloride admixture on the compressive strength of concrete made from these brands of cement was compared with the compressive strength of concrete without calcium chloride. Sieve analysis, natural moisture content and specific gravity tests were carried out on the aggregates used in the production of the concrete and the results were recorded. Slump tests were carried out on the fresh concrete containing CaCl_2 and without CaCl_2 and the results were also recorded. Cubes produced from the concrete were cured for 7, 14, 21 and 28 days respectively. The mean densities of the concrete cubes made from the three brands of cement with and without admixture were computed. The corresponding mean compressive strength for the concrete cubes was also computed. The results showed that concrete with calcium chloride have higher compressive strength compared with those without calcium chloride.
机译:混凝土是尼日利亚建筑业中常用的材料。它是通过将胶凝材料,水,细和粗骨料以及有时按所需比例的混合物混合而获得的。将外加剂添加到混凝土中以修改其性能,以使其更适合任何情况。近年来,尼日利亚的建筑物倒塌一直是人们关注的焦点,尤其是与建筑行业相关的人们。这就需要检查掺合料对混凝土某些性能的影响。这项研究调查了氯化钙(CaCl_2)掺合料对尼日利亚Dangote,Elephant和Burham品牌水泥生产的混凝土抗压强度的影响。将氯化钙掺合料对这些品牌水泥生产的混凝土的抗压强度的影响与不含氯化钙的混凝土的抗压强度进行了比较。对用于生产混凝土的骨料进行筛分分析,天然水分含量和比重测试,并记录结果。对含有CaCl_2和不含CaCl_2的新鲜混凝土进行坍落度测试,并记录结果。由混凝土产生的立方体分别固化7、14、21和28天。计算了三种掺混和不掺混的水泥制成的混凝土立方体的平均密度。还计算了混凝土立方体的相应平均抗压强度。结果表明,与不含氯化钙的混凝土相比,含氯化钙的混凝土具有更高的抗压强度。

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