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Micro-focusing effect of electromagnetic fields and its influence on sintering during the microwave processing of ceramic particles of SiC

机译:SiC陶瓷颗粒微波处理过程中电磁场的微聚焦效应及其对烧结的影响

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Microwave sintering is an efficient technology for the rapid preparation of high-performance ceramic materials. Here, an investigation has been performed on the intensity distribution of microwave electric fields in a SiC ceramic powder system and its effect on the sintering behaviour. The results show that the microstructure of the "ceramic-void" will induce a non-uniform distribution and a micro-focusing effect of microwave electric fields in some regions (e.g., the neck) during microwave processing. This effect may be an important factor for the increase of mass diffusion and the rapid densification process observed with microwave sintering. However, this effect is not always prominent throughout the entire sintering process, and it will decline as the neck grows larger. Furthermore, the micro-focusing effect on the non-smooth and the sharp portion of the particle's surface has also been examined. These results were verified by SR-CT experimental observations of the microstructure evolution of ceramic powders during an entire uninterrupted microwave sintering process. (C) 2015 Elsevier Ltd and Techna Group S.r.l. All rights reserved.
机译:微波烧结是一种快速制备高性能陶瓷材料的有效技术。在此,已经研究了SiC陶瓷粉末体系中微波电场的强度分布及其对烧结行为的影响。结果表明,“陶瓷空隙”的微观结构将在微波处理过程中在某些区域(例如颈部)引起微波电场的不均匀分布和微聚焦作用。该效应可能是质量扩散增加和微波烧结观察到的快速致密化过程的重要因素。但是,这种效果在整个烧结过程中并不总是很明显,并且随着颈部的变大而减小。此外,还研究了对颗粒表面的非光滑和尖锐部分的微聚焦效果。通过整个陶瓷微波不间断烧结过程中陶瓷粉末微观结构演变的SR-CT实验观察,证实了这些结果。 (C)2015 Elsevier Ltd和Techna Group S.r.l.版权所有。

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