4.3 Article

Thermo-mechanical and Microstructural Characterization of Geopolymers with α-Al2O3 Particle Filler

期刊

INTERNATIONAL JOURNAL OF THERMOPHYSICS
卷 30, 期 5, 页码 1568-1577

出版社

SPRINGER/PLENUM PUBLISHERS
DOI: 10.1007/s10765-009-0636-9

关键词

alpha-Al2O3 particle; Geopolymers; Microstructural characterization; Thermo-mechanical behavior

资金

  1. Program of Excellent Team in Harbin Institute of Technology
  2. Science Fund for distinguished young scholars of Heilongjiang Province

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Geopolymers with different content of alpha-Al2O3 particle filler were prepared. The thermo-mechanical and microstructural characterization of the obtained geopolymers were systematically studied by flexural strength and thermal shrinkage measurements, TG-DTA (thermogravimetry and differential thermal analysis), XRD (X-ray diffractometry), and SEM (scanning electron microscopy). The results show that the addition of alpha-Al2O3 particle filler not only increases the onset crystalline temperature but also reduces the crystalline velocity of the geopolymers. The thermal shrinkage of the geopolymers increases with increasing heat treatment temperatures due to the water loss and densification. The flexural strength of the geopolymers increases with the increase of heat treatment temperatures from RT to 1200 A degrees C, and shows a sharp increase in the range from 600 A degrees C to 800 A degrees C due to crystallization and solidification. The increase in content of alpha-Al2O3 particle filler can clearly reduce the thermal shrinkage and maintain a higher porosity at high temperatures. However, it has no distinct influence on the flexural strength after heat treatment. This is mainly attributed to the higher thermal resistance and strength of alpha-Al2O3.

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