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论文摘要

纳米氧化铝-氧化锆全瓷材料微波烧结的实验研究

Microwave Sintering of Nanometer Powder of Alumina and Zirconia-based Dental Ceramics

作者:陈奕帆;卢冬梅;万乾炳;晋勇;朱居木

Author:CHEN Yi-fan1, LU Dong-mei1, WAN Qian-bing2, JIN Yong3, ZHU Ju-mu3

收稿日期:2006-02-25          年卷(期)页码:2006,24(01):73-

期刊名称:华西口腔医学杂志

Journal Name:West China Journal of Stomatology

关键字:微波烧结,Al2O3-ZrO2,全瓷材料,

Key words:microwavesintering,alumina-zirconia,all-ceramic,

基金项目:

教育部回国留学人员科研启动基金资助项目(B220022-4711)

中文摘要

目的 利用微波烧结新技术烧结4组不同比例纳米Al2O3-ZrO2全瓷材料,比较烧结前后物质晶相、晶粒度及微观形貌变化。方法 将100%Al2O3,60%Al2O3和40%ZrO2,40%Al2O3和60%ZrO2,100%ZrO2 4组粉料分别加压制成素坯,每组5件,自制微波炉配合助热保温结构1 600 °C烧结试件,升温速度为5 min内升温至 1 600 °C,保温10 min, X射线衍射仪测定烧结前后试件物相组成和晶粒大小;扫描电镜观察试件断裂面特征。结果 微波烧结前后试件中Al2O3晶相无变化,ZrO2中 m-ZrO2转变为 t-ZrO2;烧结后平均晶粒度Al2O3 51.8 nm(烧结前为24.1nm),ZrO2 29.7 nm (烧结前为25.3 nm);扫描电镜观察烧结后的Al2O3-ZrO2晶粒排列致密细小,分布均匀,颗粒间无明显界限,相互融合。结论 微波烧结致密Al2O3-ZrO2全瓷材料,升温快,晶粒细,材料显微结构及均匀性有较大改善。

英文摘要

Objective The objective of the present study was to investigate the feasibility and reliability of sintering alumina and zirconia-based all-ceramic materials through a recently introduced microwave heating technique. The variation of crystal phases, the growth of grain sizes and microstructural features of these materials were evaluated after sintering. Methods four different groups of powder(100%Al2O3,60%Al2O3+40%ZrO2,40%Al2O3+60%ZrO2,100%ZrO2)were respectively press-compacted to fabricate green disk samples, 5 specimen of each group were prepared. All the samples were surrounded by refractory materials for heat containment and processed at 1 600 °C in a domestic microwave oven(850 W, 2 450 MHz), 1 600 °C/5 min for heating rate, 10 min for holding time. After sintering, the phase composition and average grain size of these ceramics were examined using X-ray diffraction(XRD).Their microstructure characteristics were studied by scanning electron microscopy(SEM). Results all the specimens were successfully sintered with the application of microwave heating system in combination with a suitable thermal insulator. No phase change was found in alumina while monoclinic-zirconia was found to be transformed to tetragonal-zirconia. A little grain size growth of Al2O3 and ZrO2 has been observed with Al2O3 24.1 nm/before and 51.8 nm/after; ZrO2 25.3 nm/before and 29.7 nm/after. The SEM photos indicated that the microwave-sintered Al2O3-ZrO2 ceramics had a uniform crystal distribution and their crystal sizes could be maintained within the range of nanometers. Conclusion It is expected that in the near future microwave heating system could be a promising substitute for conventional processing methods due to its unparalled advantages, including more rapid heating rate, shortened sintering time, superfine grain size, improved microstructure and much less expensive equipment.

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