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Sintering Shrinkage Anisotropy of Spherical Alumina Powder Compacts with Particle Orientation

机译:颗粒取向的球形氧化铝粉体的烧结收缩各向异性

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Spherical alumina powder and dispersant were mixed with distilled and deionized water, and ball milled to make alumina slurry. The slurry was dried in a high magnetic field to make a compact. Subsequently, the compact was cold-isostatic-pressed (CIP) to enhance the homogeneity in particle packing density. Anisotropy of shrinkage during sintering was examined for the alumina compacts in detail. Particle orientation existed in the spherical alumina powder compacts prepared in 10T, and made them shrink anisotropically during sintering. Sintering shrinkage was larger in the direction parallel to magnetic field direction (i.e., the c-axis direction of alumina crystal) than that in its perpendicular direction. The particle orientation structure in the compacts was confirmed with the immersion liquid method of polarized light microscope, and the grain alignment structure in the sintered bodies was also observed with X-ray diffraction, the c-plane was perpendicular to the magnetic field direction. On the other hand, isotropic sintering shrinkage occurred in the spherical alumina powder compacts prepared in 0T, which did not hold the particle orientation. The experimental results indicate that sintering shrinkage of spherical alumina powder compact depends on alumina crystal axis direction. Origin of the sintering shrinkage anisotropy for the spherical alumina powder compacts can be attributed to the particle orientation caused by high magnetic field.
机译:将球形氧化铝粉末和分散剂与蒸馏水和去离子水混合,然后球磨制成氧化铝浆料。将浆液在高磁场中干燥以制成致密物。随后,将压坯进行冷等静压(CIP),以增强颗粒堆积密度的均匀性。详细检查了氧化铝烧结体在烧结过程中的收缩各向异性。在10T中制备的球形氧化铝粉末压块中存在颗粒取向,并使其在烧结过程中各向异性收缩。在平行于磁场方向的方向(即,氧化铝晶体的c轴方向)上的烧结收缩大于在垂直方向上的烧结收缩。用偏光显微镜的浸没液法确认了压粉体中的粒子取向结构,并且利用X射线衍射观察了烧结体中的晶粒取向结构,c面垂直于磁场方向。另一方面,在0T制得的球形氧化铝粉末压块中发生了各向同性的烧结收缩,其没有保持颗粒取向。实验结果表明,球形氧化铝粉体的烧结收缩率取决于氧化铝晶轴方向。球形氧化铝粉末压块的烧结收缩各向异性的起因可归因于高磁场引起的颗粒取向。

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