玻璃粉和GGBS对粉煤灰基地聚合物混凝土强度的影响

I. R. Mithanthaya, N. Rao
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引用次数: 8

摘要

本文研究了玻璃粉(GP)和磨粒高炉渣(GGBS)对粉煤灰基地聚合物混凝土抗压强度的影响。细骨料(fA)与粗骨料(CA)的质量比保持不变。以溶解于水中的NaOH薄片作为活化液,与粉煤灰(FA)混合制备地聚合物膏体或胶结材料。将该膏体加入到CA和fA的混合物中,得到地聚合物混凝土。用这种混凝土制备了立方体样品。研究参数范围为GP/FA为0% ~ 20%,GP用量一定时GGBS/ FA为0% ~ 20%。所有样品均在实验室室温下风干。测定了立方体试样在养护7天和养护28天后的抗压强度。给出了试验结果并进行了讨论。在有限试验的基础上,得出了在CA和FA用量不变的情况下,FA、GP和GGBS的合适组合,用于生产M32地聚合物混凝土。研究发现,地聚合物混凝土比使用OPC的同等强度混凝土便宜14%。与硅酸盐水泥混凝土相比,土工聚合物混凝土的强度增长相当缓慢。该混凝土的抗拉强度也通过对使用该混凝土制备的梁进行弯曲试验来确定。在固化过程中,长达7天,样品的所有表面都出现灰白色粉末,发现它是碳酸盐和Na, Mg和Fe的硫化物的混合物。为了生产符合要求强度的土工聚合物混凝土,有必要进行详细的研究,以确定最佳的混合料组成。研究了灰白色粉末对混凝土强度和耐久性的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of Glass Powder and GGBS on Strength of Fly Ash Based Geopolymer Concrete
In this study, the effect of glass powder (GP) and ground granulated blast furnace slag (GGBS) on the compressive strength of Fly ash based geopolymer concrete has been investigated. The mass ratio of fine aggregate (fA) to coarse aggregate (CA) was maintained constant. NaOH flakes dissolved in water was used as activating liquid and mixed with fly ash (FA) to produce geopolymer paste or cementing material. This paste was added to mixture of CA and fA to obtain geopolymer concrete. Cube samples were prepared from this concrete. The ranges of investigation parameters include GP/FA from 0% to 20%, and GGBS/ FA from 0% to 20% with constant amount of GP. All the samples were air cured inside laboratory under room temperature. Compressive strength of cube samples after 7 days and 28 days curing were determined. The test results are presented and discussed. Based on the results of limited tests, a suitable composition of FA, GP and GGBS for constant quantity of CA and fA has been obtained to produce geopolymer concrete of M32. It is found that geopolymer concrete is 14% cheaper than concrete of the same strength using OPC. The strength gain in the case of geo-polymer concrete is rather slow compared to that of Portland cement concrete. Tensile strength of this concrete was also determined by conducting flexure test on beams prepared using this concrete. During curing, up to 7days, greyishwhite powder used to come out from all the surfaces of sample and it was found to be a mixture of Carbonates and Sulphides of Na, Mg and Fe. Detailed investigation is necessary to arrive at an optimum mixture composition for producing Geo-polymer concrete of required strength. Effect of greyish-white powder on the strength and durability of the concrete is to be studied.
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