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The Electrical Resistivity of Geopolymer Paste by using Wenner Four Probe Method

机译:使用Wenner四个探针方法使用Geo聚物浆料的电阻率

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This paper presents an experimental study of the electrical resistivity of geopolymer paste by using a non-destructive test employing Wenner four probe method. Geopolymer is produced from a combination mixture of aluminosilicate materials which is rich in Si and Al such as fly ash with an alkaline activator. Geopolymer paste in this study was made from a mixture of class F fly ash, sodium hydroxide (NaOH) solution and sodium silicate (Na_2SiO_3) solution. An alkaline activator was prepared 24 hrs prior to use with the ratio mixture of Na_2SiO_3/NaOH being 2.5. Then, the prepared alkaline activator was mixed with the fly ash for about 30 minutes. After that, the mixture was placed in a 100 mm x 103 mm x 495 mm mould. After 24 hrs, the sample was taken out from the mould and cured at 60°C in the oven for 24 hrs. The sample was then tested after 7, 14 and 28 days. The current applied in this study was from 0.01 mA to 1.00 mA and the electrode spacing used were 0.02 m, 0.04 m, 0.06 m, 0.08 m and 0.10 m. The results showed that the geopolymer paste after 28 days with the current of 0.01 mA and 0.10 m electrode spacing showed the highest resistivity with 61575 Ω.m while the geopolymer paste after 7 days with 0.95 mA and 0.02 m electrode spacing showed the lowest resistivity with 537 Ω.m. Hence, the corrosion rate of geopolymer paste in this study was negligible and if occur, was very low.
机译:本文介绍了使用Wenner四个探针方法的非破坏性试验来介绍了地质聚合物浆料电阻率的实验研究。地质聚合物由硅铝酸盐材料的组合混合物制成,其富含Si和Al,如粉煤灰用碱性活化剂。本研究中的地质聚合物浆料由F型粉煤灰,氢氧化钠(NaOH)溶液和硅酸钠(Na_2SiO_3)溶液的混合物制成。在使用前24小时使用Na_2SiO_3 / NaOH为2.5的比例制备碱性活化剂。然后,将制备的碱性活化剂与粉煤灰混合约30分钟。之后,将混合物置于100mm×10 3mm×495mM模具中。 24小时后,将样品从模具中取出并在60℃下固化在烘箱中24小时。然后在7,14和28天后测试样品。本研究中应用的目前为0.01 mA至1.00 mA,使用的电极间距为0.02米,0.04米,0.06米,0.08米和0.10米。结果表明,0.01mA和0.10米电极间距的28天后的地质聚合物浆料显示出最高电阻率,在0.95mA和0.02 m电极间距7天后的缘聚合物浆料显示最低电阻率537Ω.m.因此,该研究中的地缘聚合物浆料的腐蚀速率可忽略不计,如果发生,非常低。

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