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The Effect of Activator to Binder Ratio on the Compressive Strength of Fly Ash Based Geopolymer Mortar in Sulphate Environment

机译:活化剂对粘合剂比对硫酸盐环境粉煤灰地质聚合物砂浆抗压强度的影响

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One of the significant characteristic material needed to consider is durability. Sulphate ion contained in soil is one of aggressive agents that could cause degradation of concrete members which led to loss of compressive strength. The current research is to elaborate the effect of activator to binder ratio on the compressive strength of the fly ash based geopolymer mortar in the sulphate environment. Two different types of geopolymer mortar were casted i. e. mortar made of 100% fly ash and mortar contained 95% fly ash + 5% slaked lime. The fly ash used in this research is classified as F fly ash from the Mpanau power plant the variation of activator to binder ratio of 0. 40; 0. 50; and 0. 60, and water/solid ratio variations of 0. 32, 0. 34 and 0. 36. The composition of sulfuric acid was by 5% of the sample volume. Geopolymers mortar compressive strength test is conducted on the immersed samples in a solution of 5% sulfuric acid with age of 0, 7, 14, 28, 56, and 84 days, respectively. The compressive strength test results showed that the highest compressive strength of geopolymers mortar (resistant to sulfuric acid attack) was geopolymers mortar made from fly ash with activator to binder ratio 0. 60, water / solid ratio 0. 32, and percentage of lime to binder 5% at the age of 84 days.
机译:需要考虑的重要特征材料之一是耐用性。土壤中含有的硫酸根是可能导致混凝土构件的降解导致抗压强度的腐蚀性药物之一。目前的研究是阐明活化剂对粘合剂比对硫酸盐环境中粉煤灰基质聚合物砂浆抗压强度的影响。铸造了两种不同类型的地缘砂浆。 e。砂浆由100%粉煤灰和砂浆含有95%粉煤灰+ 5%的肉碎石。本研究中使用的粉煤灰被归类为来自Mpanau电厂的F粉煤灰,激活剂的变化与粘合剂比为0. 40; 0. 50;和0. 60,水/实际比变化为0. 32,0. 34和0.36。硫酸的组成是样品体积的5%。砂浆压缩强度试验分别在5%硫酸的溶液中进行,含有0,7,14,28,56和84天的溶液。抗压强度试验结果表明,地质砂浆(耐硫酸侵蚀)的最高抗压强度是由粉煤灰与活化剂与粘合剂比例的砂浆的砂浆,0.60,水/实线0. 32,百分比和百分比活页夹5%在84天。

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