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Micrometer size grains of hot isostatically pressed alumina and its characterization

机译:等静压热氧化铝的微米级晶粒及其表征

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摘要

Alumina samples were prepared from two different particle size powders. Finer particle compacts when heated along with coarser particle compacts at same processing temperatures produce bigger grain microstructures due to higher grain growth. An unconventional method of etching by molten V_2O_5 was adopted to look at the microstructure for accuracy in reported data. On an average starting with finer particles give microstructure with a grain size of 5.5 μm and starting with coarser particles, give microstructure with 2.2 μm average grain size. The flexural strength is around 400 MPa for alumina samples prepared from finer powder in comparison with about 550 MPa for alumina samples prepared from coarser powder. The Vickers hardness in 5.5 μm grain microstructure is around 20 GPa in comparison to about 18 GPa in micro-structure with smaller grains of 2.2 μm size.
机译:由两种不同粒径的粉末制备氧化铝样品。当在相同的加工温度下加热时,较细的颗粒压坯与较粗的颗粒压坯一起加热,会由于较高的晶粒生长而产生较大的晶粒微结构。采用非常规的通过熔融V_2O_5进行蚀刻的方法来观察微观结构,以确保报告数据的准确性。平均而言,从较细的颗粒开始,给出的显微组织的晶粒尺寸为5.5μm,从较粗的颗粒开始,给出的显微组织的平均晶粒尺寸为2.2μm。由较细粉末制备的氧化铝样品的弯曲强度为约400MPa,而由较粗粉末制备的氧化铝样品的弯曲强度为约550MPa。 5.5μm晶粒微观结构的维氏硬度约为20 GPa,而具有2.2μm较小晶粒的微观结构的维氏硬度约为18 GPa。

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