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Discussion on Local Spark Sintering of a Ceramic-Metal System in an SR-CT Experiment during Microwave Processing

机译:微波加工SR-CT实验中陶瓷金属系统局部火花烧结的探讨

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摘要

In this paper, local spark sintering of a ceramic-metal system (SiO2-Sn) during microwave processing was examinedby means of synchrotron-radiation-computed tomography technology. From the reconstructed 3-D and cross-section images of the specimen, adensification process was observed below the melting point of Sn, and then the specimen came into a rapid densification stage. These results may be due to the local spark sintering induced by the high-frequency alternating microwave electric fields. As the metallic particles Sn were introduced, the microstructure of “ceramic-metal” will lead to a non-uniform distribution and micro-focusing effect from electric fields in some regions (e.g., the neck). This will result in high-intensity electric fields and then induce rapid spark sintering within the micro-region. However, in the subsequent stage, the densification rate declined even when the specimen was not dense enough. The explanation for this is that as the liquid Sn permeated the gaps between SiO2, the specimen became dense and the micro-focusing effect of electric fields decreased. This may result in the decrease or disappearance of spark sintering. These results will contribute to the understanding of microwave sintering mechanisms and the improvement of microwave processing methods.
机译:本文利用同步辐射计算层析成像技术研究了陶瓷金属体系(SiO2-Sn)在微波处理过程中的局部火花烧结。从样品的三维重建图像和横截面图像中,观察到在Sn熔点以下的合金化过程,然后样品进入快速致密化阶段。这些结果可能是由于高频交变微波电场引起的局部火花烧结。当引入金属颗粒Sn时,“陶瓷金属”的微观结构将导致电场在某些区域(例如,颈部)的不均匀分布和微观聚焦效应。这将导致高强度电场,然后在微区域内引起快速的火花烧结。但是,在随后的阶段中,即使样品密度不足,致密化率也会下降。对此的解释是,随着液体Sn渗透SiO2之间的间隙,样品变得致密,电场的微聚焦效应降低。这可能导致火花烧结的减少或消失。这些结果将有助于理解微波烧结机理和改进微波加工方法。

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