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Dependence of mechanical properties on sintered microstructure of high purity alumina made by high-speed centrifugal compaction process

机译:力学性能对高纯度氧化铝烧结微观结构的高速离心压实过程

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摘要

Influence of microstructures on mechanical properties of high performance alumina is investigated focusing on density and mean grain size as microstructure characteristics. An alumina powder with a purity of 99.99 % and mean grain size of 0.22μm is dispersed in 25 mass % of ion-exchanged water, compacted applying a centrifugal force of 10,000-20,000 g for 3 ks, and sintered at 1423-1773 K for 0-172.8 ks in air. It is shown that strength and hardness have one peak value respectively as microstructure develops during sintering, and those peaks appear on the same specimen with a relative density of about 99 % and grain size of about 1μm. For the specimens with density lower than 99 %, the strength and hardness decrease as density decrease, whereas for the ones with density higher than 99 %, those values decrease as grain size increase. Furthermore, two empirical equations, which show the dependence of bending strength and hardness on both porosity and grain size, are derived by multivariate analysis. These equations provide contour lines which represent microstructures having the same strength or hardness on the grain-size/relative-density diagram. Superposing a trajectory line derived from grain size and density of various specimens on the diagram, the point where this trajectory and one of contour lines contact represents the best couple of grain size and relative density for the mechanical properties.
机译:研究了高效氧化铝力学性能对微观结构特性的影响。纯度为99.99%,平均晶粒尺寸为0.22μm的氧化铝粉末分散在25质量%的离子交换水中,压实施加10,000-20,000g的离心力3 ks,并在1423-1773 k下烧结0-172.8 ks在空气中。结果表明,在烧结期间显影的微观结构显影,强度和硬度分别具有一个峰值,并且这些峰值出现在相同的标本上,相对密度为约99%,晶粒尺寸为约1μm。对于具有低于99%的标本,强度和硬度随着密度降低而降低,而密度高于99%,则这些值随着晶粒尺寸的增加而降低。此外,通过多变量分析来推导出两种经验方程,其显示弯曲强度和硬度对孔隙率和晶粒尺寸的依赖性。这些等式提供轮廓线,其代表在晶粒尺寸/相对密度图上具有相同强度或硬度的微观结构。叠加从图中源自晶粒尺寸和各种样本的密度的轨迹线,该轨迹和轮廓线接触之一代表了机械性能的最佳晶粒尺寸和相对密度的点。

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