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Durability and microstructure studies on Slag-Fly Ash-Glass powder based alkali activated pavement quality concrete mixes

机译:耐久性和微观结构研究基于渣 - 粉玻璃粉碱活性路面状况混凝土混合物

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The present study attempts a detailed assessment of the performance of air-cured Alkali Activated Concrete (AAC) mixes produced using powdered waste glass as one of the ingredient, designed for highway applications. In this current investigations, the alkaline solution is prepared using sodium hydroxide flakes and liquid sodium silicate solution. Initially, AAC mixes are designed to obtain a pavement quality concrete (PQC) of grade M-45 using Ground Granulated Blast Furnace Slag (GGBS) and fly ash (FA) as binding ingredients in ratios of 75:25, incorporating graded crusher dust as fine aggregates. Based on the preliminary investigations, the design Na2O dosage of 4% and the modulus of activator (Ms) = 1.25 was selected and this dosage was maintained for the extended investigations. The further investigations were carried out for various trial dosages of waste glass powder (GP) in the concrete mix. The selected AAC mixes were tested with compressive and tensile strengths, flexural strength, unit weight, modulus of elasticity, durability properties (i.e, prolonged strength, acid attack, sulphate attack, and saline water attack tests); the microstructure studies using SEM with EDAX and the obtained results were discussed. The study reveal that, the AAC mixes display satisfactory performance for normal working environments for their use in roadway appliances. Thus, the use of AAC mixes produced using GGBS-FA-GP in association with the graded crusher dust fine aggregates is considered to be an economical and eco-friendly alternative to use of conventional concretes for highway applications. (C) 2021 Elsevier Ltd. All rights reserved.
机译:本研究试图详细评估使用粉末废玻璃制备的空气固化碱活性混凝土(AAC)混合物作为用于公路应用的成分之一。在该电流研究中,使用氢氧化钠薄片和液体硅酸钠溶液制备碱性溶液。最初,AAC混合物设计用于使用地面粒状高炉炉渣(GGB)和飞灰(FA)以75:25的比例为结合成分,获得级别M-45级的路面质量混凝土(PQC),并将分级破碎机灰尘结合为细骨料。基于初步研究,选择4%的设计Na2O剂量和活化剂模量(MS)= 1.25,并保持该剂量进行延长的研究。在混凝土混合物中对各种试验剂量进行进一步的研究,对废玻璃粉末(GP)进行各种试验剂量。测试所选择的AAC混合物,用压缩和拉伸强度,弯曲强度,单位重量,弹性模量,耐久性(即,延长强度,酸攻击,硫酸盐攻击和盐水攻击试验);讨论了使用SEM具有eDAX和所得结果的微观结构研究。该研究表明,AAC混合对正常工作环境的显示表现令人满意的性能,以便在道路设备中使用。因此,使用GGBS-FA-GP与梯度破碎机粉尘细聚集物相关的AAC混合物被认为是使用用于公路应用的传统混凝土的经济和生态友好替代品。 (c)2021 elestvier有限公司保留所有权利。

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