Short Review of Flash Sintering: Mechanisms, Microstructures, and Mechanical Properties

Jae-Sun Cho
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Abstract

This review article highlights the potential of flash sintering as a novel densification technology for advanced ceramics. Conventional ceramic sintering methods involve heating a powder compact at high temperatures for several hours to trigger the solid-state diffusion of atoms. In contrast, flash sintering takes advantage of electric field and current to drastically lower processing time and temperature, providing a promising solution to reduce the economic, energetic, and environmental costs associated with traditional ceramic sintering methods. The effects of electric field and current during flash sintering result in unique non-equilibrium microstructures that enhance the mechanical properties of advanced ceramics through defect-mediated inelastic deformation mechanisms. This article provides an overview of the flash sintering mechanisms, the unique microstructural features observed in flash-sintered ceramics, and their impacts on mechanical properties.
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闪速烧结:机理、微观结构和力学性能综述
本文综述了闪速烧结作为一种新型致密化技术的潜力。传统的陶瓷烧结方法包括在高温下加热粉末压块数小时,以触发原子的固态扩散。相比之下,闪速烧结利用电场和电流来大幅降低加工时间和温度,为降低传统陶瓷烧结方法相关的经济、能源和环境成本提供了一个有前途的解决方案。在闪烧过程中,电场和电流的作用导致了独特的非平衡微观结构,通过缺陷介导的非弹性变形机制提高了先进陶瓷的力学性能。本文综述了闪烧机理、闪烧陶瓷独特的微观结构特征及其对力学性能的影响。
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