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Elaboration of Alumina-Zirconia Composites: Role of the Zirconia Content on the Microstructure and Mechanical Properties

机译:氧化铝-氧化锆复合材料的精加工:氧化锆含量对微观结构和力学性能的作用

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摘要

Alumina-zirconia (AZ) composites are attractive structural materials, which combine the high hardness and Young’s modulus of the alumina matrix with additional toughening effects, due to the zirconia dispersion. In this study, AZ composites containing different amounts of zirconia (in the range 5–20 vol %) were prepared by a wet chemical method, consisting on the surface coating of alumina powders by mixing them with zirconium salt aqueous solutions. After spray-drying, powders were calcined at 600 °C for 1 h. Green bodies were then prepared by two methods: uniaxial pressing of spray-dried granules and slip casting of slurries, obtained by re-dispersing the spray dried granulates. After pressureless sintering at 1500 °C for 1 h, the slip cast samples gave rise to fully dense materials, characterized by a quite homogeneous distribution of ZrO2 grains in the alumina matrix. The microstructure, phase composition, tetragonal to monoclinic transformation behavior and mechanical properties were investigated and are here discussed as a function of the ZrO2 content. The material containing 10 vol % ZrO2 presented a relevant hardness and exhibited the maximum value of KI0, mainly imputable to the t → m transformation at the crack tip.
机译:氧化铝-氧化锆(AZ)复合材料是有吸引力的结构材料,由于氧化锆的分散,将氧化铝基体的高硬度和杨氏模量与附加的增韧效果结合在一起。在这项研究中,通过湿化学方法制备了包含不同量的氧化锆(范围为5–20 vol%)的AZ复合材料,该方法包括将氧化铝粉与锆盐水溶液混合后在氧化铝粉的表面涂层上形成。喷雾干燥后,将粉末在600°C下煅烧1小时。然后通过两种方法制备生坯:单轴压制喷雾干燥的颗粒和浆料的流延浇铸,通过将喷雾干燥的颗粒重新分散而获得。在1500°C下进行无压烧结1 h后,粉浆浇铸样品产生了完全致密的材料,其特征是ZrO2晶粒在氧化铝基体中的分布相当均匀。研究了微观结构,相组成,四方晶系到单斜晶的转变行为和力学性能,并在此讨论了ZrO2含量的函数。含有10%(体积)ZrO2的材料具有一定的硬度,并具有KI0的最大值,主要归因于裂纹尖端的t→m转变。

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