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首页> 外文期刊>Journal of the European Ceramic Society >Atmosphere effects on micron-sized ZnO ridges during sintering
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Atmosphere effects on micron-sized ZnO ridges during sintering

机译:烧结过程中微米尺寸的ZnO脊的大气影响

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摘要

During the fabrication of micron-sized ceramic features, sintering plays a critical role in shape retention and microstructure evolution. Because of the evaporation tendency of zinc oxide (ZnO) during sintering, atmosphere has a significant influence on the sintering behavior and feature fidelity. In this study, micron-sized ZnO ridge features were sintered under air and argon atmospheres. Ridge size, line edge roughness, and shrinkage were characterized. Sintering mechanisms and evaporation mass loss were analyzed in order to obtain fundamental understanding of the micron-sized ZnO feature sintering. Oxygen partial pressure is the deciding factor in the ridge feature evolution. The argon atmosphere leads to faster grain growth and densification but compromises the ridge size and ridge grain size due to increased mass loss.
机译:在制造微米尺寸的陶瓷特征期间,烧结在形状保持和微观结构演变中起着关键作用。 由于氧化锌(ZnO)在烧结过程中蒸发趋势,大气对烧结行为具有显着影响和特征保真度。 在这项研究中,在空气和氩气氛下烧结微米尺寸的ZnO脊。 脊尺寸,线边缘粗糙度和收缩。 分析了烧结机制和蒸发量损失,以获得对微米尺寸ZnO特征烧结的基本理解。 氧气部分压力是脊型特征进化中的决定因素。 氩气氛导致晶粒生长和致密化更快,但由于质量损失增加,损害脊尺寸和脊粒度。

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