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首页> 外文期刊>Journal of Materials Engineering and Performance >Effects of Co3O4 Addition on Friction and Dry Sliding Wear Characteristics of 8mol% Yttria-Stabilized Cubic Zirconia
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Effects of Co3O4 Addition on Friction and Dry Sliding Wear Characteristics of 8mol% Yttria-Stabilized Cubic Zirconia

机译:CO3O4添加对8mol%ytTRIA稳定立方氧化锆的摩擦和干滑动磨损特性的影响

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The aim of the present study was to investigate the influence of Co3O4 additive on the microstructure, wear, and tribological properties of 8mol% yttria-stabilized cubic zirconia (8YSZ) using a pin-on-disk tribometer, surface profilometer, hardness tester, and a scanning electron microscopy system. Specimens were produced by doping 1-15 wt.% Co3O4 in 8YSZ using a colloidal process, sintering at 1500 degrees C for 1h, and subsequent annealing at 1500 degrees C for 10 and 50h. Microstructural analysis showed that Co3O4 dissolved partially in 8YSZ, with the undissolved Co3O4 precipitating as a secondary phase at the grain boundaries. Further, the addition of Co3O4 enhanced the grain size. Wear tests were carried out using an Al2O3 ball as the counterface against ceramic disk under dry sliding friction conditions at room temperature (24 degrees C). The wear volume of 8YSZ decreased from 0.30 to 0.11mm(3) as a result of the addition of 15 wt.% Co3O4. Additionally, friction coefficient of the 8YSZ significantly reduced from 0.55 to 0.17 at the beginning stage of the sliding after the addition of 15 wt.% Co3O4. This was because Co3O4 creates a thin lubricating layer on the friction surface. In addition, the undoped and Co3O4-doped 8YSZ specimens exhibited abrasive wear under the dry sliding friction conditions, owing to the formation and propagation of microcracks, which resulted in the removal of material from the surface. The specific wear rate of 8YSZ decreased with increasing the Co3O4 content. Thus, the addition of Co3O4 to 8YSZ improves its wear resistance and surface topography.
机译:本研究的目的是研究Co3O4添加剂对8mol%yTTRIA稳定的立方氧化锆(8YSZ)的微观结构,磨损和摩擦学特性的影响使用销盘摩擦计,表面型材仪,硬度测试仪和扫描电子显微镜系统。通过掺杂1-15重量%的胶体工艺,在8000℃下烧结1小时,在1500℃下烧结1小时,并在1500℃下进行10和50H的退火。微观结构分析显示CO3O4部分溶解在8倍的8℃,未溶解的CO3O4在晶界处沉淀为二次相。此外,加入CO3O4增强了晶粒尺寸。在室温下的干滑动摩擦条件下使用Al2O3球作为抗陶瓷盘的配对面进行磨损试验。由于加入15重量%CO 3O4,8倍的磨损量从0.30%降至0.11mm(3)。%CO 3O4。另外,在加入15重量%的情况下,8倍至0.17的摩擦系数显着降低0.55至0.17。%CO 3O4。这是因为Co3O4在摩擦表面上产生薄的润滑层。另外,由于微裂纹的形成和传播,未掺杂的和CO3O4掺杂的8毫秒的8毫秒样本在干燥滑动摩擦条件下表现出研磨磨损,这导致从表面中除去材料。随着CO3O4含量的增加,8倍的比磨损率降低。因此,加入CO3O4至8YSZ改善其耐磨性和表面形貌。

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