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Preparation of porous spodumene/zircon composite ceramics and its thermal and mechanical properties

机译:多孔锂辉石/锆石复合陶瓷的制备及其热力学性能

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摘要

Porous β-spodumene/zircon (ZrSiO4) composite ceramics were prepared by addition of zirconia to spodumene mineral using conventional solid reaction methods. The formation of the zircon was investigated by means of the differential scan calorimetry measurements and an X-Ray diffractometer. The microstructure of the composite ceramics was observed through a scanning electron microscope. The results show that the presence of zircon benefited the formation and stability of the porous structure and improved significantly the thermal endurance and mechanical properties of the spodumene matrix. The composites with 10-15% porosity exhibit an excellent thermal shock resistance, a low thermal expansion coefficient of approximately 1·4 × 10−6 K−1 in the range of 200-800°C and a high flexural strength about 100 MPa. It is found that the spodumene/zircon composites, widely used as a high temperature structure material, can be synthesised by a cost effective method.
机译:采用常规固相反应法,将氧化锆添加到锂辉石矿物中,制备出多孔的β-锂辉石/锆石(ZrSiO 4 )复合陶瓷。借助于差示扫描量热法测量和X射线衍射仪研究了锆石的形成。通过扫描电子显微镜观察复合陶瓷的微观结构。结果表明,锆石的存在有利于多孔结构的形成和稳定性,并显着改善了锂辉石基体的耐热性和机械性能。孔隙率为10-15%的复合材料表现出优异的抗热震性,在1-4×10 -6 K -1 范围内具有较低的热膨胀系数。 200-800°C和约100 MPa的高抗弯强度。发现可以通过成本有效的方法合成被广泛用作高温结构材料的锂辉石/锆石复合物。

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