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首页> 外文期刊>Journal of the European Ceramic Society >Rapid heating of zirconia nanoparticle-powder compacts by infrared radiation heat transfer
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Rapid heating of zirconia nanoparticle-powder compacts by infrared radiation heat transfer

机译:红外辐射热传递氧化锆纳米粒子粉末压缩浓度的快速加热

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Homogeneous rapid sintering of nanoparticle powder compacts of yttria-stabilized zirconia was achieved by the radiation heat transfer. Green bodies were prepared by cold isostatic pressing (CIP) at various pressures providing different porosity of samples before sintering. Pressure-less sintering was performed in air at a heating rate of 100 degrees C/min up to the 1500 degrees C/1 min. Scanning electron microscopy, mercury intrusion porosimetry, and Archimedes technique were used to characterize the microstructure and to determine the density of the green and sintered bodies. Contrary to expectations, our results reveal opposite dependence of the green- and sintered densities on the CIP pressure. Since the whole sintering process does not exceed 10 min, to propose what processes are responsible for observed results, our attention is focused on the radiation heat transfer from furnace heating elements into the ceramics. Our arguments are supported by numerical calculations of the electromagnetic field enhancement in/between particles. (C) 2016 Elsevier Ltd. All rights reserved.
机译:通过辐射热传递实现亚硝基稳定氧化锆的纳米粒子粉末块的均匀快速烧结。在烧结前,通过冷等静压压制(CIP)在烧结前提供不同的样品孔隙率的孔隙率来制备生坯。在空气中以100℃/ min的加热速率在空气中进行减压烧结,直至1500℃/ 1分钟。扫描电子显微镜,汞侵入孔隙孔和Archimedes技术用于表征微观结构并确定绿色和烧结体的密度。与期望相反,我们的结果揭示了绿色和烧结密度对CIP压力的相反依赖性。由于整个烧结过程不超过10分钟,提出对观察结果负责的过程,我们的注意力集中在炉中加热元件进入陶瓷的辐射热传递。我们的争论得到了粒子中电磁场增强的数值计算支持。 (c)2016 Elsevier Ltd.保留所有权利。

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