人工晶体学报2024,Vol.53Issue(11) :1990-1996.

纳米Y2O3粉体酸洗处理对透明陶瓷光学质量的影响

Influence of Acid-Washing Treatment of Y2O3 Nanopowder on the Optical Properties of Transparent Ceramics

刘小龙 付仲超 吴南 龙海波 邵岑 任轶 侯朝霞 张乐
人工晶体学报2024,Vol.53Issue(11) :1990-1996.

纳米Y2O3粉体酸洗处理对透明陶瓷光学质量的影响

Influence of Acid-Washing Treatment of Y2O3 Nanopowder on the Optical Properties of Transparent Ceramics

刘小龙 1付仲超 1吴南 1龙海波 1邵岑 2任轶 3侯朝霞 1张乐2
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作者信息

  • 1. 沈阳大学机械工程学院,沈阳 110044
  • 2. 江苏师范大学物理与电子工程学院,徐州 221116;江苏锡沂高新材料产业技术研究院,徐州 221400
  • 3. 福建省金龙稀土股份有限公司,龙岩 366300
  • 折叠

摘要

Y2O3透明陶瓷具有优良的光学和物理化学性能,在固体激光器、透明窗口等领域有广阔的应用前景.粉体分散性一直是研究者在透明陶瓷制备过程中关注的重要方面,本文以国产商业纳米Y2O3粉体为原料,通过机械分散结合HF酸洗的方式提高粉体分散性,湿法成型后真空烧结,制备具有较高光学性能的Y2O3透明陶瓷.结果表明,超声结合酸洗的方式可有效提升粉体分散性和烧结活性,粉体D50从3.5 µm降低至1.4 µm,制备得到Y2O3透明陶瓷的光学性能有明显提升,400 nm处透过率从酸洗前的65.5%提升至酸洗后的71.5%,为Y2O3透明陶瓷在固体激光器和窗口领域的应用提供可靠的制备工艺及理论基础.

Abstract

Y2O3 transparent ceramics have broad applications including solid-state lasers,transparent windows,etc.,owing to its excellent optical and physical-chemical properties.The dispersity of the powder among the fabrication process of transparent ceramics has attracted much attention from researchers for decades.In this paper,domestic commercial nanopowder was adopted as the starting material,and the dispersion of the powder was improved through mechanical force combined with HF acid-washing.Y2O3 transparent ceramics with high transmittance were achieved by slip casting and vacuum sintering.The results show that ultrasonic combined with HF acid-washing is an effective way to improve the dispersibility and sinterability of the powder,the D50 of the powder reduces from 3.5 µm to 1.4 μm.The transmittance of the Y2 O3 ceramic at 400 nm is improved from 65.5%to 71.5%for the sample after ultrasonic combined with HF acid-washing process.The results lay a solid foundation of preparation technology and theoretical basis for the application of Y2 O3 transparent ceramics on solid-state lasers and transparent window materials.

关键词

Y2O3/粉体/分散性/酸洗/透明陶瓷/烧结

Key words

Y2 O3/powder/dispersity/acid-washing/transparent ceramics/sintering

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出版年

2024
人工晶体学报
中材人工晶体研究院

人工晶体学报

CSTPCD北大核心
影响因子:0.554
ISSN:1000-985X
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