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Alumina-zirconium Ceramics Synthesis By Selective Laser Sintering/melting

机译:选择性激光烧结/熔融合成氧化铝锆陶瓷

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摘要

In the present paper, porous refractory ceramics synthesized by selective laser sintering/melting from a mixture of zirconium dioxide, aluminum and/or alumina powders are subjected to optical metallography and X-ray analysis to study their microstructure and phase composition depending on the laser processing parameters. It is shown that high-speed laser sintering in air yields ceramics with dense structure and a uniform distribution of the stabilizing phases. The obtained ceramic-matrix composites may be used as thermal and electrical insulators and wear resistant coating in solid oxide fuel cells, crucibles, heating elements, medical tools. The possibility to reinforce refractory ceramics by laser synthesis is shown on the example of tetragonal dioxide of zirconium with hardened micro-inclusion of Al_2O_3. By applying finely dispersed Y_2O_3 powder inclusions, the type of the ceramic structure is significantly changed.
机译:在本文中,对由二氧化锆,铝和/或氧化铝粉末的混合物通过选择性激光烧结/熔融合成的多孔耐火陶瓷进行光学金相和X射线分析,以研究其微结构和相组成,具体取决于激光加工参数。结果表明,在空气中进行高速激光烧结可得到结构致密且稳定相分布均匀的陶瓷。所得的陶瓷基复合材料可用作固体氧化物燃料电池,坩埚,加热元件,医疗工具中的绝热和电绝缘体以及耐磨涂层。锆的四边形二氧化钛具有硬化的微内含Al_2O_3的例子显示了通过激光合成来增强耐火陶瓷的可能性。通过施加细分散的Y_2O_3粉末夹杂物,陶瓷结构的类型发生了显着变化。

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