The Effect of Polypropylene Fiber and Steel Fiber on Geopolymer Concrete

Niza Widiana, I. Satyarno, S. Siswosukarto
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引用次数: 1

Abstract

One of the environmentally friendly concrete as an alternative to cement concrete in the future is geopolymer concrete which used a cement substitute in the form of fly ash. To prevent premature cracking of the concrete, this study added fiber types such as polypropylene fiber, and steel fiber (dramix), this experiment with 3 variables namely the addition of polypropylene fiber by 0%, 0.40%, 0.80%, 1.2%, steel fiber of 0.25%, 0.50%, 0.75%, 1.00%, as well as a combination of polypropylene fiber and steel fiber (0.4%P;0.50%D), (0.8%P;0.75%D), (1.2%P;1.00%D) of the weight of the concrete. In this study, using a beam specimen measuring 10x10x50 cm, for each percentage of fiber usage there are 2 beam trials. Geopolymer concrete in this study uses a ratio of NaOH and Na2SiO3 is 2:1 and a constant concentration of 10 Molar, to test the Flexural Strength Test of Concrete at the age of 28 days of concrete. The results of the highest average flexural strength of geopolymer concrete without fiber σl = 78.77 kg/cm2, using polypropylene 0.80% σl =50.50 kg/cm2, and 0.25% steel fiber σl =68.87 kg/cm2, the combination of both fibers (P0.4%; D0.25%) σl =65.34 kg/cm2. These results do not produce good workability, thus affecting the decrease in flexural strength. By increasing the ratio A = 0.35 to 0.45, the geopolymer concrete mix produces better workability with the highest average flexural strength of geopolymer concrete with polypropylene fiber 0.8% σl = 80.107 kg/cm2.
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聚丙烯纤维和钢纤维对地聚合物混凝土的影响
未来替代水泥混凝土的环保混凝土之一是地聚合物混凝土,它以粉煤灰的形式替代水泥。为防止混凝土过早开裂,本研究添加的纤维类型有聚丙烯纤维、钢纤维(dramix)等,本实验以3个变量分别为聚丙烯纤维添加量为0%、0.40%、0.80%、1.2%,钢纤维添加量为0.25%、0.50%、0.75%、1.00%,以及聚丙烯纤维与钢纤维组合(0.4%P;0.50% d)、(0.8%P;0.75% d)、(1.2% p;1.00% d)的混凝土重量。在本研究中,使用尺寸为10x10x50 cm的梁试件,对于每个百分比的纤维使用有2个梁试验。本研究地聚合物混凝土采用NaOH与Na2SiO3的比例为2:1,恒定浓度为10 mol / l,进行龄期28天混凝土抗弯强度试验。结果表明:无纤维地聚合物混凝土的最高平均抗弯强度σl = 78.77 kg/cm2,采用聚丙烯0.80% σl =50.50 kg/cm2,和0.25%钢纤维σl =68.87 kg/cm2,两种纤维的组合(P0.4%;D0.25%) σl =65.34 kg/cm2。这些结果不能产生良好的和易性,从而影响抗弯强度的降低。增加掺量A = 0.35 ~ 0.45,可获得较好的和易性,聚丙烯纤维含量为0.8%的地聚合物混凝土的平均抗弯强度最高,σl = 80.107 kg/cm2。
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发文量
21
审稿时长
24 weeks
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