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Effect of Sodium Hydroxide Molarity on Physical, Mechanical and Thermal Conductivity of Metakaolin Geopolymers

机译:氢氧化钠摩尔度对Metakaolin Geo聚物的物理,机械和导热性的影响

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In the present work, the effect of different sodium hydroxide (NaOH) molarity (6M, 8M, 10M, 12M and 14M) on the physical, mechanical and thermal conductivity of metakaolin geopolymers (MkGPs) was investigated. Geopolymers were prepared by activating the metakaolin with a mixture of NaOH with sodium silicate (Na2SiO3). The products obtained were characterized after 28 days of curing. The density, porosity, compressive strength and thermal conductivity (TC) were determined. In general, the NaOH molarity has a significant effect on the compressive strength of the MkGPs. The highest compressive strength was 14.6 MPa achieved with 10M of NaOH solution. The thermal conductivity of MkGPs measured in this work was low in the range between 0.71-0.97 W/mK. NaOH molarity had a significant effect on compressive strength but a marginal effect on thermal conductivity of MkGPs. The thermal conductivity was mainly affected by the bulk density and thus the total porosity. The results showed that the geopolymer can be considered to be used as the thermal insulating material.
机译:在本作工作中,研究了不同氢氧化钠(NaOH)摩尔(6m,8m,10m,12m和14m)对Metakaolin Geo聚物(MKGP)的物理,机械和导热率的影响。通过用硅酸钠(Na2SiO3)用NaOH的混合物激活偏莨菪碱来制备地质聚合物。在28天固化后,所获得的产品的特征在于。确定密度,孔隙率,抗压强度和导热率(Tc)。通常,NaOH摩尔性对MKGP的抗压强度具有显着影响。最高的抗压强度为14.6MPa,10M的NaOH溶液实现。在该工作中测量的MKGP的导热率低于0.71-0.97w / mk的范围。 NaOH摩尔性对抗压强度具有显着影响,但对MKGP的导热率进行了边际作用。导热率主要受到堆积密度的影响,从而产生总孔隙率。结果表明,地质聚合物可以被认为用作绝热材料。

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