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Effect of grain size and amount of zirconia on the physical and mechanical properties and the wear resistance of zirconia-toughened alumina

机译:籽粒尺寸和氧化锆量对氧化锆 - 钢化氧化铝的物理和力学性能和耐磨性

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摘要

The effects of the ZrO2 content and the particle size of ZrO2 powders on the microstructure, phase composition, physical and mechanical properties, and the abrasion wear resistance of advanced Al2O3 ceramics and zirconiatoughened alumina (ZTA) composites containing 0 to 30 mass% yttria-stabilised zirconia (YSZ) were investigated. The composite with a ZTA content of 30 mass% of ZrO2 exhibited the greatest resistance to abrasion wear. alpha-Al2O3 reflex broadening (hid = 113) as a result of the microstresses in the Al2O3 crystal lattice during sandblasting decreased with increasing ZrO2 amount, where the ZrO2 particles located along the grain boundaries of Al2O3, hindering their growth and deformation. The use of nanodispersed ZrO2 powder produced by the plasma chemical technique led to a 1.5-fold increase in wear resistance in the resultant ZTA ceramic.
机译:ZrO2含量的影响和ZrO2粉末的粒度对微结构,相组合物,物理和机械性能,以及高级Al2O3陶瓷的磨损耐磨性和含有0至30质量%yTTRIA稳定的氧化铝(ZTA)复合材料的氧化铝(ZTA)复合材料 Zirconia(YSZ)被调查了。 ZTA含量为30质量%的ZrO2的复合材料表现出对磨损磨损的最大抵抗力。 Alpha-Al2O3反射扩大(HID = 113)作为Al2O3晶格中的微三晶片在喷砂过程中,随着ZrO 2的增加而降低,其中沿Al2O3的晶界位于Al 2 O 3的晶界,妨碍其生长和变形。 使用等离子体化学技术生产的纳米分离的ZrO2粉末导致所得ZTA陶瓷的耐磨性增加1.5倍。

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