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Low-temperature synthesized aluminosilicate glasses - Part IV - Modulated DSC study on the effect of particle size of metakaolinite on the production of inorganic polymer glasses

机译:低温合成铝硅酸盐玻璃-第四部分-偏高岭石粒度对无机聚合物玻璃生产影响的调制DSC研究

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摘要

The effect of the particle size of metakaolinite on the reaction kinetics of low-temperature synthesized inorganic polymer glasses is studied. The heat capacity of the material during isothermal cure is measured by Modulated DSC (MDSC). This signal can be followed quantitatively during the complete course of the reaction, whereas the heat flow signal is sometimes too small for quantitative interpretations. A characteristic time for the reaction, defined as onset of vitrification, is also measured with Dynamic Mechanical Analysis (DMA). The DMA and MDSC results show that the reaction rate increases with decreasing particle size of metakaolinite, at least till a particle size of about 2 mum. It can be concluded that the first step of the reaction, breaking down the metakaolinite grains, occurs at the surface of the particles. The second step is the building of a network starting from the reaction products of the former reaction. (C) 2003 Kluwer Academic Publishers. [References: 15]
机译:研究了偏高岭土粒径对低温合成无机聚合物玻璃反应动力学的影响。等温固化过程中材料的热容通过调制DSC(MDSC)进行测量。在整个反应过程中,可以定量跟踪该信号,而对于定量解释,有时热流信号过小。反应的特征时间(定义为玻璃化开始)也通过动态力学分析(DMA)进行测量。 DMA和MDSC结果表明,反应速率随偏高岭石粒径的减小而增加,至少直到约2μm的粒径为止。可以得出结论,反应的第一步是分解偏高岭土晶粒,发生在颗粒表面。第二步是从前一个反应的反应产物开始构建网络。 (C)2003 Kluwer学术出版社。 [参考:15]

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