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Hardness and friction behavior of bulk CoAl2O4 and Co–Al2O3 composite layers formed during Spark Plasma Sintering of CoAl2O4 powders

机译:CoAl2O4粉末的火花等离子体烧结过程中形成的块状CoAl2O4和Co–Al2O3复合层的硬度和摩擦性能

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摘要

Materials made up of a Co–Al2O3 composite coating over a CoAl2O4 core are prepared during Spark Plasma Sintering of CoAl2O4 powders. The Co particles are precipitated because of a combination of high temperature and low O2 partial pressure. The precipitation and densification processes hamper each other and thus the way the uniaxial pressure is applied during the sintering cycle is an important parameter to control the microstructure of composite layer and its thickness (about 100 mm) and obtain a dense sample (about 4 g/cm3). The friction coefficient of the Co-Al2O3 composites against an Al2O3 ball is lower than that found for an Al2O3 specimen, which could reveal the lubricating role of submicrometer Co particles. However, increasing the load from 5 to 10 N load causes major changes in the friction contact, which are detrimental. Bulk CoAl2O4 was found to have a Vickers microhardness about 15.5 GPa and an average friction coefficient lower than that of an Al2O3 sample.
机译:在CoAl2O4粉末的火花等离子体烧结过程中,准备了由CoAl2O4芯上的Co–Al2O3复合涂层组成的材料。由于高温和低O2分压的结合,使Co颗粒析出。沉淀和致密化过程相互阻碍,因此在烧结周期中施加单轴压力的方式是控制复合层的微观结构及其厚度(约100 mm)并获得致密样品(约4 g / g)的重要参数。 cm3)。 Co-Al2O3复合材料对Al2O3球的摩擦系数低于Al2O3试样的摩擦系数,这可能揭示了亚微米级Co颗粒的润滑作用。但是,将负载从5 N负载增加到10 N负载会导致摩擦接触发生重大变化,这是有害的。发现块状CoAl 2 O 4具有约15.5GPa的维氏显微硬度,并且平均摩擦系数低于Al 2 O 3样品的维氏硬度。

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