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Discussion on Microwave-Matter Interaction Mechanisms by In Situ Observation of Core-Shell Microstructure during Microwave Sintering

机译:从微波烧结过程中核壳微观结构的原位观察探讨微波相互作用机理

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摘要

This research aims to deepen the understanding of the interaction mechanisms between microwave and matter in a metal-ceramic system based on in situ synchrotron radiation computed tomography. A special internal “core-shell” microstructure was discovered for the first time and used as an indicator for the interaction mechanisms between microwave and matter. Firstly, it was proved that the microwave magnetic field acted on metal particles by way of inducing an eddy current in the surface of the metal particles, which led to the formation of a “core-shell” microstructure in the metal particles. On this basis, it was proposed that the ceramic particles could change the microwave field and open a way for the microwave, thereby leading to selective heating in the region around the ceramic particles, which was verified by the fact that all the “core-shell” microstructure was located around ceramic particles. Furthermore, it was indicated that the ceramic particles would gather the microwaves, and might lead to local heating in the metal-ceramic contact region. The focusing of the microwave was proved by the quantitative analysis of the evolution rate of the “core-shell” microstructure in a different region. This study will help to reveal the microwave-matter interaction mechanisms during microwave sintering.
机译:这项研究旨在加深对基于原位同步加速器辐射计算机断层扫描技术的金属陶瓷系统中微波与物质之间相互作用机理的理解。首次发现了一种特殊的内部“核-壳”微结构,并用作指示微波与物质之间相互作用机制的指标。首先,证明了微波磁场通过在金属颗粒表面感应涡流而作用于金属颗粒,从而导致在金属颗粒中形成“核壳”微结构。在此基础上,提出了陶瓷颗粒可以改变微波场并为微波开辟道路,从而导致陶瓷颗粒周围区域的选择性加热,这一事实得到了以下事实的证实:所有“核-壳”微观结构位于陶瓷颗粒周围。此外,已经表明,陶瓷颗粒将聚集微波,并且可能导致金属-陶瓷接触区域中的局部加热。通过定量分析“核-壳”微结构在不同区域的演化速率证明了微波的聚焦。这项研究将有助于揭示微波烧结过程中微波与物质的相互作用机理。

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