首页> 外文会议>The Annual Meeting of The American Ceramic Society >MICROSTRUCTURE AND MICROCHEMISTRY OF FULLY-REACTED GEOPOLYMERS AND GEOPOLYMER MATRIX COMPOSITES
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MICROSTRUCTURE AND MICROCHEMISTRY OF FULLY-REACTED GEOPOLYMERS AND GEOPOLYMER MATRIX COMPOSITES

机译:完全反应地质聚合物和地质聚合物基复合材料的组织和微化学

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The processing, intrinsic microstructure and properties of geopolymer materials and geopolymer composites made with basalt fibers (chopped and fiber weaves) have been investigated. Curing of geopolymers was achieved by one of three routes, viz., pressureless curing, warm pressing, and curing in a high pressure autoclave. The materials were fabricated at ambient temperatures up to (40-80 deg C). Using fiber reinforcement, the bending strength and work of fracture of geopolymer materials have been increased from an average of 2.8 MPa to 10.3 MPa and 0.05 kJ/m~2 to 21.8 kJ/m~2, respectively. Electron microscopy studies (SEM, TEM/EDS, in situ hot stage TEM) were made of the intrinsic geopolymer. The microstructure of fully reacted geopolymers consists of amorphous nanoparticulates separated by nanopores whose features are of the order of <=10 nm. The microchemistry frequently observed by TEM/EDS corresponded to a silica (SiO_2) to alumina (Al_2O_3) ratio of 4:1. In situ, hot-stage TEM observations made during heating for 4 h up to 1000 deg C showed that the nanosized microstructure was stable, although continuous evolution of gas, presumably H_2O, was noticed upon heating. These materials are inorganic polymers cured at ambient temperatures which remain microstructurally stable to above 1000 deg C.
机译:研究了地质聚合物材料和用玄武岩纤维(切碎和纤维编织)制备的地质聚合物材料和地质聚合物复合材料的加工,固有的微观结构和性质。通过三个路线,Viz之一实现地缘聚合物的固化,在高压高压釜中的无压固化,温暖的压制和固化。将材料在环境温度下制造(40-80℃)。采用纤维增强,地质聚合物材料的抗弯强度和骨折的工作量从平均值增加2.8MPa至10.3MPa和0.05kJ / m〜2至21.8kJ / m〜2。电子显微镜研究(SEM,TEM / EDS,原位热阶段TEM)由内在地质聚合物制成。完全反应的地质聚合物的微观结构由由纳米孔分离的非晶纳米颗粒组成,其特征是<= 10nm的顺序。经常通过TEM / ED观察的微化对应于二氧化硅(SiO_2)至氧化铝(Al_2O_3)的比例为4:1。原位,在加热期间进行4小时的热级TEM观察结果显示纳米型微观结构稳定,尽管在加热时注意到气体的连续演化,但是在加热时被注意到。这些材料是在环境温度下固化的无机聚合物,其在1000℃以上保持微观结构稳定。

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