Effect of Heat Treatment of the Starting Powders on the Consolidation of Zirconia-Toughened Alumina Composites

IF 0.9 4区 材料科学 Q3 MATERIALS SCIENCE, CERAMICS
O. V. Dudnik, M. Yu. Smirnova-Zamkova, I. O. Marek, V. P. Redko, O. I. Khomenko, V. V. Gerashchenko, T. V. Mosina, O. K. Ruban
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Abstract

The influence of heat treatment temperature of the starting powders, ranging from 400 to 1450°C, on the consolidation of zirconia-toughened alumina (ZTA) composites was studied. In these composites, particles of a ZrO2 (Y2O3, CeO2) solid solution with high fracture toughness are dispersed in an Al2O3 matrix. The powders for developing the ZTA composites (wt.%)—90 Al2O3–10 (ZrO2 (Y2O3,CeO2) (90 AZK) and 70 Al2O3–30 (ZrO2 (Y2O3,CeO2) (70 AZK)—were produced using a combination of hydrothermal synthesis and mechanical mixing. Cold uniaxial pressing and sintering in air at 1600°C for 1.5 h were employed for the consolidation. The sintered materials were examined by X-ray diffraction and scanning electron microscopy. The compaction of the composites was associated with the brittle fracture of hard sintered agglomerates (for 90 AZK) and with the plastic deformation effect (for 70 AZK). The sintering of the 90 AZK and 70 AZK composites was accompanied with ZrO2 phase transformations, abnormal growth of the Al2O3 grains, and zonal segregation effect. The Zener pinning effect in the 70 AZK composites inhibited the abnormal growth of Al2O3 grains. The increased porosity of the 90 AZK composites was due to the bimodal distribution of the starting powder agglomerates in accordance with the shape factor. The Vickers hardness of the 90 AZK samples varied from 6.4 to 4.4 GPa and that of the 70 AZK samples from 10.3 to 7.2 GPa. The decreased hardness of the 90 AZK composites was attributed to the formation of a two-scale porous microstructure. The topological memory of the ceramics was demonstrated to determine the conditions for microstructural design of advanced ZTA composites for tool, structural, and functional purposes with the required properties.

Abstract Image

起始粉末热处理对氧化锆-增韧氧化铝复合材料固结的影响
研究了起始粉末热处理温度(400 ~ 1450℃)对氧化锆-增韧氧化铝复合材料固结的影响。在这些复合材料中,具有高断裂韧性的ZrO2 (Y2O3, CeO2)固溶体颗粒分散在Al2O3基体中。采用水热合成和机械混合相结合的方法制备了用于ZTA复合材料(wt.%)的粉末-90 Al2O3-10 (ZrO2 (Y2O3,CeO2) (90 AZK)和70 Al2O3-30 (ZrO2 (Y2O3,CeO2) (70 AZK)。采用冷单轴挤压和1600℃空气烧结1.5 h进行固结。采用x射线衍射和扫描电镜对烧结材料进行了检测。复合材料的压实与硬质烧结团聚体的脆性断裂(对于90azk)和塑性变形效应(对于70azk)有关。90 AZK和70 AZK复合材料在烧结过程中出现了ZrO2相变、Al2O3晶粒异常生长和偏析现象。70 AZK复合材料的齐纳钉扎效应抑制了Al2O3晶粒的异常生长。90 AZK复合材料孔隙率的增加是由于起始粉末团块按照形状因子的双峰分布所致。90 AZK试样的维氏硬度在6.4 ~ 4.4 GPa之间,70 AZK试样的维氏硬度在10.3 ~ 7.2 GPa之间。90 AZK复合材料的硬度下降是由于双尺度多孔组织的形成。陶瓷的拓扑记忆被证明可以确定先进的ZTA复合材料的微观结构设计条件,用于工具,结构和功能目的,并具有所需的性能。
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来源期刊
Powder Metallurgy and Metal Ceramics
Powder Metallurgy and Metal Ceramics 工程技术-材料科学:硅酸盐
CiteScore
1.90
自引率
20.00%
发文量
43
审稿时长
6-12 weeks
期刊介绍: Powder Metallurgy and Metal Ceramics covers topics of the theory, manufacturing technology, and properties of powder; technology of forming processes; the technology of sintering, heat treatment, and thermo-chemical treatment; properties of sintered materials; and testing methods.
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