高结晶度阿基米德多面体(Zr0.5Hf0.5)B2纳米颗粒的生长机理及烧结性能

IF 6.2 2区 材料科学 Q1 MATERIALS SCIENCE, CERAMICS Journal of The European Ceramic Society Pub Date : 2025-07-01 Epub Date: 2025-01-31 DOI:10.1016/j.jeurceramsoc.2025.117251
Zhen Wang , Yuan Cheng , Kewei Li , Mengen Hu , Hanwen Zhang , Xian Dang , Ming Li , Xinyang Li , Zhulin Huang , Yue Li , Xiaoye Hu
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引用次数: 0

摘要

高质量的陶瓷粉末对复合材料的性能至关重要,但制备具有良好形貌和高结晶度的陶瓷粉末仍然面临着巨大的挑战。本文采用高压液相和共沉淀法共辅助boro/碳热还原法制备了(Zr0.5Hf0.5)B2纳米颗粒的拓扑阿基米德多面体。取向附着和螺位错生长机制同时发生的非经典结晶模型。硼化物生长过程中的显微组织演化表明,二硼化物表面新层的生长机制主要由层状结构和梯形剖面来解释。各层生长初期的能量来源于原子扩散过程中的界面缺陷和晶格失配。团簇的定向附着导致体系中产生大量位错,形成多面体结构。得益于高结晶度的多面体形貌,阿基米德多面体粉末具有优异的抗氧化性能,在1400℃、3 h下制备的陶瓷氧化层厚度为86.43 μm。这项工作对于开发新的陶瓷粉末制备方法具有重要意义,并为研究超高温陶瓷材料的性能改进提供了新的途径。
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Growth mechanism and sintering properties of high crystallinity Archimedean polyhedral (Zr0.5Hf0.5)B2 nanoparticles
High quality ceramic powders are crucial for the performance of composite materials, yet preparing powders with good morphology and high crystallinity still faces enormous challenges. Herein we report a topological Archimedean polyhedron of (Zr0.5Hf0.5)B2 nanoparticles were synthesized via a high pressure liquid-phase and coprecipitation co-assisted boro/carbothermal reduction method. A nonclassical crystallization model where both oriented attachment and screw dislocation growth mechanism occur simultaneously. The microstructural evolution during the growth process of borides indicates that the growth mechanism of the new layer on the surface of diborides is mainly explained by the layered structure and trapezoidal profile. The initial growth stage energy of each layer comes from interface defects and lattice mismatches during atomic diffusion processes. The directional attachment of clusters leads to the generation of a large number of dislocations in the system, resulting in the formation of polyhedral structures. Benefiting from the high crystallinity polyhedral morphology, the powder shows excellent oxidation resistance, i.e., the thickness of ceramic oxide layer prepared by Archimedean polyhedron powders is 86.43 μm at 1400 °C for 3 h. This work holds significant importance for the development of new ceramic powders preparation methods and provides a novel approach for studying the performance improvement of ultra-high temperature ceramic materials.
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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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