In situ construction of one-dimensional structures induced by Ba doping in Al2O3-TiO2 ceramics derived from quenched powders

IF 5.8 2区 材料科学 Q1 MATERIALS SCIENCE, CERAMICS Journal of The European Ceramic Society Pub Date : 2024-10-19 DOI:10.1016/j.jeurceramsoc.2024.116965
Yuchen Yuan, Xudong Liu, Yongting Zheng, Renjie Wang, Shiyang Zhu, Canqing Fang, Hang Yin
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Abstract

In this work, we propose a strategy for in situ construction of rod-like grains in Al2O3-TiO2 ceramics through Ba doping. Ba-doped Al2O3-13 wt% TiO2 composite powder was initially synthesized using combustion synthesis-air atomization, where feedstocks were melted by the Al-O2 combustion reaction and subsequently atomized and rapidly cooled in air, producing quenched powders rich in metastable phases. Upon heat treatment at 1100℃, the metastable phases transformed into stable forms, accompanied by phase separation and solid solution precipitation. Notably, Ba doping induced the formation of rod-like hollandite grains with preferential growth along the [001] direction. Bulk ceramics were prepared through pressureless sintering, and the sample sintered at 1350℃ exhibited a hardness of 14.14±0.61 GPa and a fracture toughness of 5.17±0.49 MPa∙m1/2. The toughening behavior of rod-like grains, including crack deflection and pull-out/bridging effects, was observed. This study provides insights into the evolution of quenched oxides and the design of ceramic microstructures.
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在淬火粉末制备的 Al2O3-TiO2 陶瓷中原位构建由 Ba 掺杂诱导的一维结构
在这项工作中,我们提出了一种通过掺杂钡在 Al2O3-TiO2 陶瓷中原位构建棒状晶粒的策略。掺杂钡的 Al2O3-13 wt% TiO2 复合粉末最初采用燃烧合成-空气雾化法合成,原料经 Al-O2 燃烧反应熔化,随后在空气中雾化并快速冷却,产生富含析出相的淬火粉末。在 1100℃ 下进行热处理后,这些析出相转变为稳定相,并伴随着相分离和固溶体析出。值得注意的是,掺杂钡会诱导形成棒状霍兰德石晶粒,并沿[001]方向优先生长。通过无压烧结制备了块状陶瓷,在 1350℃ 下烧结的样品硬度为 14.14±0.61 GPa,断裂韧性为 5.17±0.49 MPa∙m1/2。观察到了棒状晶粒的增韧行为,包括裂纹偏转和拉出/桥接效应。这项研究为淬火氧化物的演变和陶瓷微结构的设计提供了启示。
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来源期刊
Journal of The European Ceramic Society
Journal of The European Ceramic Society 工程技术-材料科学:硅酸盐
CiteScore
10.70
自引率
12.30%
发文量
863
审稿时长
35 days
期刊介绍: The Journal of the European Ceramic Society publishes the results of original research and reviews relating to ceramic materials. Papers of either an experimental or theoretical character will be welcomed on a fully international basis. The emphasis is on novel generic science concerning the relationships between processing, microstructure and properties of polycrystalline ceramics consolidated at high temperature. Papers may relate to any of the conventional categories of ceramic: structural, functional, traditional or composite. The central objective is to sustain a high standard of research quality by means of appropriate reviewing procedures.
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