EFFECT OF CaO CONTENT ON GGBS BASED GEOPOLYMER CONCRETE

D. S. Patare, P. A. Chavana, S. L. Hake
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引用次数: 1

Abstract

GGBS based Geopolymer concrete is innovative composite material for civil engineering industry for which binding material cement and water is replaced bypozzolanic material like fly ash, GGBS and activated by highly alkaline solutions to act as a binder in the concrete. Mix design procedure used is proposed on the basis of quantity, fineness of fly ash, quantity of water, grading of fine aggregate, fine to total aggregate ratio and GGBS is used for M40 grade of GGBS based Geopolymer concrete. During experimental work, variation of different parameter like ratio of alkaline solution ratio (Na2SiO3/NaOH) of 2 was taken. Different molarities such as 12M and 16M of NaOH was taken. In addition, different percentage of such as 0%, 20%, 40%, 50% of GGBS with solution to fly ash ratio 0.38 and sodium silicate to sodium hydroxide ratio 2 was taken. The samples are cured in oven at 450C temperature for 24 hrs. The results show that the strength of geopolymer concrete increases with increase in percentage of GGBS in the mix. The strength increase up to 40% replacement of fly ash with GGBS after that it starts decreasing. In case of fly ash based geopolymer concrete as there is no CaO content so curing takes place due to polymerization process, but with the addition of GGBS in fly ash based geopolymer concrete curing is due to combine effect of polymerization as well as heat of hydration due to presence of alkaline solution and CaO respectively. As molarity of NaOH increases from 12M to 16M, compressive strength, flexural strength, split tensile strength also increases.
CaO含量对GGBS基地聚合物混凝土性能的影响
GGBS基地聚合物混凝土是一种以水泥和水为粘结材料,替代粉煤灰、GGBS等副火山灰材料,经高碱性溶液活化,在混凝土中起到粘结剂作用的土木工程领域的创新型复合材料。根据粉煤灰的掺量、细度、水量、细骨料的级配、细骨料与总骨料的比,提出了采用GGBS进行M40级GGBS基地聚合物混凝土配合比设计的方法。在实验工作中,考察了碱液比(Na2SiO3/NaOH)等不同参数对2的影响。取12M和16M的NaOH溶液。另外,在溶液与粉煤灰比为0.38,水玻璃与氢氧化钠比为2的条件下,采用0%、20%、40%、50%的GGBS掺量。样品在450℃的烤箱中固化24小时。结果表明:随着GGBS掺量的增加,地聚合物混凝土的强度增大;粉煤灰替代GGBS后,强度可提高到40%,之后强度开始下降。对于粉煤灰基地聚合物混凝土,由于不含CaO含量,因此由于聚合过程而发生养护,而在粉煤灰基地聚合物混凝土中加入GGBS后,养护是由于聚合作用以及碱性溶液和CaO存在所产生的水化热的共同作用。当NaOH的摩尔浓度从12M增加到16M时,抗压强度、抗折强度、劈裂抗拉强度也随之增加。
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