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Controlled microstructure and mechanical properties of Al2O3-based nanocarbon composites fabricated by electrostatic assembly method

机译:静电组装法制备Al2O3基纳米碳复合材料的可控组织和力学性能

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摘要

This work reports on the microstructure-controlled formation of interconnected carbon-layered Al2O3 ceramics using carbon nanoparticles (CNP)-alumina (Al2O3) composite particles. The Al2O3 micro-particles used in this study were obtained by granulation of nano-sized Al2O3 nanoparticles with an average diameter of 150 nm. Then, CNP-Al2O3 composite was fabricated using an electrostatic assembly method using the granulated Al2O3 and CNP. The decoration of CNP on the surface of granulated Al2O3 was investigated as a function of primary particle size and coverage percentage using a fixed amount of CNP. Notably, an interconnected layer of carbon particles at the interface of Al2O3 that resemble the grain boundaries was obtained. The mechanical properties of the samples obtained with different particle size and CNP coverage on Al2O3 particles were also investigated which presented the possibility to control the mechanical properties through microstructural design of composite ceramic materials.
机译:这项工作报告了使用碳纳米颗粒(CNP)-氧化铝(Al2O3)复合颗粒对互连的碳层Al2O3陶瓷进行微结构控制的形成。本研究中使用的Al2O3微粒是通过将平均粒径为150 nm的纳米Al2O3纳米颗粒造粒而获得的。然后,使用粒状的Al 2 O 3和CNP,通过静电组装法制造CNP-Al 2 O 3复合材料。使用固定量的CNP,研究了颗粒状Al2O3表面CNP的装饰与一次粒径和覆盖率的关系。值得注意的是,在Al 2 O 3的界面上获得了类似于晶粒边界的碳颗粒互连层。还研究了不同粒径和CNP在Al 2 O 3 颗粒上获得的样品的力学性能,这为通过微结构设计控制力学性能提供了可能。复合陶瓷材料。

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