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Characteristics of fly ash based concrete prepared with bio admixtures as internal curing agents

机译:用生物混合物作为内部固化剂制备粉煤灰混凝土的特征

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摘要

Concrete is the most widely used material which is structural and versatile in nature owing to its heterogeneous and complex structures. Curing of concrete is an important stage to attain its intended strength and durability. The conventional method of water curing is not very effective and sometimes ignored due to water scarcity and labour problems. Internal curing of concrete by adding water soluble material can hold the mixing water against evaporation and further enhance the hydration of cement. The chemical admixture namely polyethylene glycol (PEG) is able to reduce water evaporation by a retaining function, lead to strong and durable concrete without water curing but it is expensive. This paper presents an attempt of using bio materials namely Spincea oleracea (S. oleracea) & Calatropis gigantea (S. oleracea) as internal curing agents in concrete. To confirm the presence of hydroxyl or ether group in S. oleracea and S. oleracea like PEG for water retention, UV-visible and FT-IR studies are carried out on these plant extracts. To evaluate their internal curing property, FT-IR, XRD and SEM analysis are carried out on M20 grade fly ash based concrete powder sample with internal curing agents and compared with the performance of conventionally water cured concrete powder samples. Compressive strength and bond strength of concrete with bio admixtures are compared with the internal curing property of PEG and also with conventionally water cured concrete. (C) 2020 Elsevier Ltd. All rights reserved.
机译:混凝土是由于其异质和复杂的结构,是最广泛使用的材料,其是结构和多功能的。混凝土的固化是实现预期实力和耐用性的重要阶段。传统的水固化方法并不是很有效,有时由于水资源稀缺和劳动问题而忽略。加入水溶性材料的混凝土内部固化可以将混合水与蒸发保持并进一步增强水泥的水合。化学混合物即聚乙二醇(PEG)能够通过保持功能降低水蒸发,导致强大耐用的混凝土,无需水固化,但它昂贵。本文提出了使用生物材料的尝试,即Spincea Oleracea(S. Oleracea)和Calatropis Gigantea(S. Oleracea)作为混凝土的内固化剂。为了确认羟基或乙醚基团的羟基克或乙醚基团,如PEG的糖酸,在这些植物提取物上进行UV可见和FT-IR研究。为了评估其内部固化性能,FT-IR,XRD和SEM分析在内固化剂的M20级粉煤灰基混凝土粉末样品上进行,与常规水固化混凝土粉末样品相比。将混凝土与生物混凝土混凝土的抗压强度和粘结强度与彼得的内部固化性进行比较,也与常规水固化混凝土进行比较。 (c)2020 elestvier有限公司保留所有权利。

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