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Utilization of fly ash and ultrafine GGBS for higher strength foam concrete

机译:用于更高强度泡沫混凝土的粉煤灰和超细GGB的利用

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Foam concrete is a widely accepted construction material, which is popular for diverse construction applications such as, thermal insulation in buildings, lightweight concrete blocks, ground stabilization, void filling etc. Currently, foam concrete is being used for structural applications with a density above 1800kg/m~3. This study focuses on evolving mix proportions for foam concrete with a material density in the range of 1200 kg/m~3 to 1600 kg/m~3, so as to obtain strength ranges that will be sufficient to adopt it as a structural material. Foam concrete is made lighter by adding pre-formed foam of a particular density to the mortar mix. The foaming agent used in this study is Sodium Lauryl Sulphate and in order to density the foam generated, Sodium hydroxide solution at a normality of one is also added. In this study efforts are made to make it a sustainable construction material by incorporating industrial waste products such as ultrafine GGBS as partial replacement of cement and fly ash for replacement of fine aggregate. The fresh state and hardened state properties of foam concrete at varying proportions of cement, sand, water and additives are evaluated. The proportion of ultrafine GGBS and fly ash in the foam concrete mix are varied aiming at higher compressive strength. Studies on air void-strength relationship of foam concrete are also included in this paper.
机译:泡沫混凝土是一种广泛接受的建筑材料,这对于各种施工应用,诸如建筑物中的保温,轻质混凝土块,地面稳定,空隙填充等,目前,泡沫混凝土用于1800kg以上密度的结构应用。 / m〜3。本研究重点介绍,在1200kg / m〜3至1600kg / m〜3的范围内的材料密度的泡沫混凝土中的混合比例,从而获得能够作为结构材料采用的强度范围。通过向砂浆混合物添加特定密度的预先形成的泡沫,使泡沫混凝土更轻。本研究中使用的发泡剂是十二烷基硫酸钠,并且为了密度产生的泡沫,还加入氢氧化钠溶液。在这项研究中,通过将诸如超细GGB的工业废物产品掺入诸如水泥和粉煤灰的部分替代,使其成为可持续的建筑材料,以便更换细骨料。评估了在不同比例的水泥,砂,水和添加剂中的泡沫混凝土的新鲜状态和硬化状态性质。泡沫混凝土混合物中超细GGGB和粉煤灰的比例变化,旨在更高的抗压强度。本文还包括泡沫混凝土空隙强度关系的研究。

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