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Strength and Microstructural Properties of Mechanically-Activated Kaolin Geopolymers

机译:机械活化高岭土地质聚合物的强度和微观结构性能

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Kaolin geopolymers exhibit low strength properties due to its plate-like nature which contribute to smaller surface area for geopolymerization reactions. Layered kaolin structure only allows very little, if any, substitution of other elements. Therefore, mechanical activation is an alternative way to break the kaolin structure to become finer to change the morphological features to smoother surface, and to cause edge distortion to the kaolin particles. Rounded particles also can be produced using this technique. This mechanically-activated kaolin was used to produce mechanically-activated kaolin geopolymers in this study. From the results, compressive strength increased as mechanical activation time increased and the compressive strength increased with the ageing day. The SEM micrograph showed that the mechanically-activated kaolin geopolymers have denser structure which complies with the compressive strength measured.
机译:高岭土地缘聚合物由于其板状性质而表现出低强度特性,这有助于较小的地环聚物化反应的表面积。分层高岭土结构仅允许替代其他元素的很少。因此,机械活化是破坏高岭土结构的替代方法,以更好地改变形态学特征以更加平滑的表面,并导致高岭土颗粒的边缘变形。还可以使用该技术生产圆形颗粒。这种机械活化的高岭土用于在本研究中生产机械活化的高岭土地质聚合物。从结果中,随着机械活化时间的增加,压缩强度增加,抗压强度随着年龄的增长而增加。 SEM显微照片显示机械活化的高岭土地质聚合物具有更密集结构,符合测量的压缩强度。

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