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首页> 外文期刊>Arabian Journal for Science and Engineering >Effect of Mineral Admixtures on Mechanical Properties and Chemical Resistance of Lightweight Coconut Shell Concrete
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Effect of Mineral Admixtures on Mechanical Properties and Chemical Resistance of Lightweight Coconut Shell Concrete

机译:矿物掺合料对轻椰子壳混凝土力学性能和耐化学性的影响。

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摘要

The effect of cement replacement with mineral admixtures such as silica fume and fly ash on the mechanical and chemical resistance of lightweight coconut shell concrete was studied. The lightweight concrete was made with full replacement of conventional coarse aggregate with crushed coconut shell aggregate of size less than 12.5 mm. Coconut shell treated with 20 % poly vinyl alcohol improved the resistance against aggressive environment. But concrete made with treated shell aggregate gave 5 % improvement in compressive strength. Hence, coconut shell may not degrade once it is bound with concrete. The properties such as compressive strength, splitting tensile strength, flexural strength and elastic modulus were studied. The durability properties such as sulphuric acid (pH1 & pH2) resistance and sulphate (sodium and magnesium sulphate) resistance were studied on 120 days. The density of the coconut shell concrete satisfied the limit of structural lightweight concrete, which is less than 2000 kg/m(3). The optimum compressive strength of coconut shell concretes with 10 % silica fume in 28 days is 31.78 N/mm(2), and it meets the requirement of structural lightweight concrete. The other mechanical properties such as flexural strength, split tensile strength and elastic modulus for the optimum mix in 28 days were 5.65 N/mm(2), 2.98 N/mm(2) and 8450 N/mm(2), respectively. The weight loss and strength loss were less in CSC with 10 % FA, which is found to possess higher acid and sulphate resistance than SF and control mix. The weight loss and strength loss caused by magnesium sulphate seem to be slightly higher than that caused by sodium sulphate environment.
机译:研究了用矿物掺合料(例如硅粉和粉煤灰)替代水泥对轻质椰子壳混凝土的机械和化学耐性的影响。轻质混凝土是用尺寸小于12.5毫米的压碎椰子壳骨料完全替代常规粗骨料而制成的。用20%聚乙烯醇处理过的椰子壳提高了抵抗侵蚀性环境的能力。但是,用处理过的壳料制成的混凝土的抗压强度提高了5%。因此,一旦与混凝土结合,椰子壳可能不会降解。研究了抗压强度,劈裂抗拉强度,抗弯强度和弹性模量等性能。在120天的时间内研究了耐硫酸盐(pH1和pH2)和耐硫酸盐(硫酸钠和硫酸镁)的耐久性能。椰子壳混凝土的密度满足结构轻质混凝土的极限,该极限小于2000 kg / m(3)。硅粉含量为10%的椰子壳混凝土在28天内的最佳抗压强度为31.78 N / mm(2),符合结构轻质混凝土的要求。其他力学性能,例如抗折强度,劈裂抗张强度和弹性模量,为28天的最佳混合分别为5.65 N / mm(2),2.98 N / mm(2)和8450 N / mm(2)。含10%FA的CSC的重量损失和强度损失较小,发现其具有比SF和对照混合物更高的耐酸和抗硫酸盐性。硫酸镁引起的重量损失和强度损失似乎略高于硫酸钠环境引起的重量损失和强度损失。

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