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Influence of burnout process on pore structure and burnout microstructure in BaTiO_3-based Y5V materials

机译:烧成工艺对BaTiO_3基Y5V材料孔结构和烧成微观结构的影响

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摘要

BaTiO_3-based multilayer ceramic capacitors (MLCCs) prepared by tape casting, showing Y5V characteristic, were fired with different burnout conditions. MLCCs show the delamination from the heating rate of 7 deg C/min to 200 deg C, and 6 deg C/min to 250 and 300 deg C in the ambient atmosphere, without the delamination in the reducing atmosphere. The pore size distribution of MLCCs becomes narrower with increases in the temperature and heating rate, showing larger pore size and mono-modal pore size distribution. The cumulative pore surface area shows minimum values at a higher temperature and faster heating rate in both atmospheres. However, MLCCs of the reducing atmosphere display a smaller cumulative pore surface area than that of the ambient atmosphere. The microstructure related to the burnout process is more dependent on atmosphere and temperature than heating rate. The possible causes for the burnout behavior and microstructure are also discussed.
机译:通过流延铸造的BaTiO_3基多层陶瓷电容器(MLCC)表现出Y5V特性,并在不同的烧尽条件下烧结。 MLCC在环境气氛中显示出从7℃/ min至200℃的加热速率的分层,以及在6℃/ min至250和300℃的加热速率的分层,而在还原气氛中没有分层。 MLCC的孔径分布随温度和加热速率的增加而变窄,显示出较大的孔径和单峰孔径分布。累积的孔表面积在两种气氛中在较高温度和较快加热速率下均显示出最小值。然而,还原性气氛的MLCC显示出比周围气氛小的积聚的孔表面积。与燃尽过程有关的微观结构更多地取决于气氛和温度,而不是加热速率。还讨论了造成烧坏行为和微观结构的可能原因。

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