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Microstructure and integrity of leucite ceramic derived from potassium-based geopolymer precursor

机译:钾基地质聚合物前体衍生的白云岩陶瓷的微观结构和完整性

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In this paper, leucite ceramics with different shapes and fine integrity were directly developed from geopolymer precursors by the optimized heat treatment procedures. Phase compositions and microstructure, coupled with the mechanical properties, were systematically investigated. The effect of heating rates on the integrity of ceramics was also discussed. After high-temperature treatment at 800 °C for 120 min, the geopolymer was converted into a leucite ceramic. The relative density of the sample treated at 1000 °C for 120 min was 93% and the size of leucite grain was approximately 1-4 μm. TEM results showed that the leucite grain was composed of lamellar and needle-shaped twins, which resulted from the displacive phase transformation as it went from cubic to tetragonal symmetry when it was cooled down. Samples with plate and bullet shapes maintained their fine integrity by the optimization of the heating procedures. Meanwhile, the flexural strength, Young's modulus, fracture toughness and Vickers hardness of the leucite ceramic that resulted was 70.0 MPa, 65.0 GPa, 1.3MPam~(1/2) and 7.39 GPa, respectively.
机译:在本文中,通过优化的热处理程序直接从地质聚合物前体中开发出了具有不同形状和精细完整性的白晶陶瓷。系统地研究了相组成和微观结构,以及机械性能。还讨论了加热速率对陶瓷完整性的影响。在800°C下进行120分钟的高温处理后,该地质聚合物转变为白云石陶瓷。在1000°C下处理120分钟的样品的相对密度为93%,白云石晶粒的大小约为1-4μm。透射电镜结果表明,白云母晶粒由层状和针状孪晶组成,这是由于当冷却时从立方对称变为四方对称时发生了相变。通过优化加热程序,板状和子弹状的样品保持了其良好的完整性。同时,白云石陶瓷的弯曲强度,杨氏模量,断裂韧性和维氏硬度分别为70.0 MPa,65.0 GPa,1.3MPam〜(1/2)和7.39 GPa。

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