单粒氧化锆粉与多粒氧化锆粉的致密化

Chiraporn Auechalitanukul, W. Cannon
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摘要

为了研究单粒和多粒氧化锆粉末的热压致密率,在1400℃下对zro2 -3% y2o3 (D(10-90) = 35-90 μm)的喷雾干燥颗粒进行了致密化处理。采用球磨机粉碎团聚体间的桥梁。所得到的粉末代表了多颗粒颗粒(MGP)。将致密颗粒强化球磨至粒径(-0.35 μm直径),得到了粒径相当的单粒颗粒(SGP)。为了比较这些粉末的致密化行为,每种粉末的样品在1350°C的SiC模具中热压1小时。通过热压筛选到+75 pm的MGP达到最高密度。多晶粉末的MGP密度由颗粒蠕变控制,扩散距离按晶粒尺寸的顺序控制,而SGP密度主要通过压力辅助烧结,即沿颗粒之间的颈部扩散来实现。最终密度的差异反映了MGP粉末最初较高的堆积密度。
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Densification of single-grain vs. multi-grain zirconia powders
To study hot-pressing densification rates of single-grain and multi-grain zirconia powders, spray-dried granules of ZrO 2 -3%Y 2 0 3 (D(10-90) = 35-90 μm) were densified at 1400 °C. Ball milling was utilized to break up the inter-agglomerate bridges. The resulting powder represented the multi-grain particle (MGP). Single-grain particle (SGP) of comparable grain size was obtained by intensive ball milling of the dense granules to the grain size (-0.35 μm diameter). To compare the densification behavior of these powders, specimens of each powder were hot-pressed in a SiC die at 1350 °C for 1 hour. The highest density was achieved by hot pressing MGP screened to +75 pm. The MGP densities by particle creep of the polycrystalline powder controlled by the diffusion distance on the order of the grain size while the SGP is thought to densify primarily by pressure-assisted sintering, i.e., diffusion along the neck between particles. The difference in final density reflects the initially higher packing density of the MGP powder.
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