Chen Liang, Wang Zaiqin, Wang Yuanyi, Feng Jing
Materials and Structural Department, Changjiang River Scientific Research Institute, Wuhan 430010, China.
Collaborative Innovation Center for Geo-Hazards and Eco-Environment in Three Gorges Area, Yichang 443002, China.
Materials (Basel). 2016 Sep 8;9(9):767. doi: 10.3390/ma9090767.
The effective activation and utilization of metakaolin as an alkali activated geopolymer precursor and its use in concrete surface protection is of great interest. In this paper, the formula of alkali activated metakaolin-based geopolymers was studied using an orthogonal experimental design. It was found that the optimal geopolymer was prepared with metakaolin, sodium hydroxide, sodium silicate and water, with the molar ratio of SiO₂:Al₂O₃:Na₂O:NaOH:H₂O being 3.4:1.1:0.5:1.0:11.8. X-ray diffraction (XRD) and Fourier transform infrared spectroscopy (FT-IR) were adopted to investigate the influence of curing conditions on the mechanical properties and microstructures of the geopolymers. The best curing condition was 60 °C for 168 h, and this alkali activated metakaolin-based geopolymer showed the highest compression strength at 52.26 MPa. In addition, hollow micro-sphere glass beads were mixed with metakaolin particles to improve the thermal insulation properties of the alkali activated metakaolin-based geopolymer. These results suggest that a suitable volume ratio of metakaolin to hollow micro-sphere glass beads in alkali activated metakaolin-based geopolymers was 6:1, which achieved a thermal conductivity of 0.37 W/mK and compressive strength of 50 MPa. By adjusting to a milder curing condition, as-prepared alkali activated metakaolin-based geopolymers could find widespread applications in concrete thermal protection.
偏高岭土作为碱激发地质聚合物前驱体的有效活化与利用及其在混凝土表面防护中的应用备受关注。本文采用正交试验设计研究了碱激发偏高岭土地质聚合物的配方。结果发现,以偏高岭土、氢氧化钠、硅酸钠和水制备的最优地质聚合物,其SiO₂:Al₂O₃:Na₂O:NaOH:H₂O的摩尔比为3.4:1.1:0.5:1.0:11.8。采用X射线衍射(XRD)和傅里叶变换红外光谱(FT-IR)研究养护条件对地质聚合物力学性能和微观结构的影响。最佳养护条件为60℃养护168 h,该碱激发偏高岭土地质聚合物的最高抗压强度为52.26 MPa。此外,将空心微珠玻璃珠与偏高岭土颗粒混合以提高碱激发偏高岭土地质聚合物的保温性能。结果表明,碱激发偏高岭土地质聚合物中偏高岭土与空心微珠玻璃珠的合适体积比为6:1,此时导热系数为0.37 W/mK,抗压强度为50 MPa。通过调整到较温和的养护条件,所制备的碱激发偏高岭土地质聚合物可在混凝土热防护中得到广泛应用。