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Comparison of Microwave and Conventionally Sintered Yttria-Doped Zirconia Ceramics

机译:微波和常规烧结掺钇的氧化锆陶瓷的比较

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摘要

This paper reports on improvement of the physical and mechanical properties of Y_2O_3-ZrO_2 ceramics through compositional optimization, the use of nanograined powders and utilization of microwave sintering. ZrO_2 with 2-5 mol% Y_2O_3, prepared from nanopowders, was sintered in both conventional and microwave furnaces under exactly the same heating schedule. It was found that microwave sintering improves physical and mechanical properties of Y_2O_3-ZrO_2 ceramics compared with conventional sintering. Compositions containing 2 mol% Y_2O_3 exhibit the greatest improvement due to retention of tetragonal ZrO_2, with a 5% increase in relative density compared with conventional sintering. Grain size analysis indicated that there was significant grain growth in microwave sintered (MWS) samples (353 nm) compared with their conventionally sintered (CS) counterparts (200 nm) which is thought to be related to enhanced diffusional effects during microwave sintering. Associated with this was a 22% increase in Young's modulus to 220 GPa, a 77% increase in Vicker's Hardness up to 11.5 GPa and a 165% increase in biaxial flexural strength up to 800 MPa. Owing to the differences in physical and mechanical properties along with the altered phase assemblages produced, it is apparent that microwave heating provides an additional driving force during sintering which enhances diffusion processes.
机译:本文报告了通过成分优化,纳米颗粒粉末的使用和微波烧结的使用来改善Y_2O_3-ZrO_2陶瓷的物理和机械性能。由纳米粉制备的具有2-5摩尔%Y_2O_3的ZrO_2在常规和微波炉中以完全相同的加热程序进行烧结。发现与常规烧结相比,微波烧结改善了Y_2O_3-ZrO_2陶瓷的物理和机械性能。含有2mol%的Y_2O_3的组合物由于保留了四方的ZrO_2而表现出最大的改善,与常规烧结相比,相对密度增加了5%。粒度分析表明,与常规烧结(CS)对应物(200 nm)相比,微波烧结(MWS)样品(353 nm)有明显的晶粒长大,这被认为与微波烧结过程中扩散效应的增强有关。与此相关的是,杨氏模量提高了22%,达到220 GPa,高达11.5 GPa的维氏硬度提高了77%,而双向拉伸强度(高达800 MPa)提高了165%。由于物理和机械性能的差异以及所产生的相组装的变化,很明显,微波加热在烧结过程中提供了额外的驱动力,从而增强了扩散过程。

著录项

  • 来源
    《International journal of applied ceramic technology》 |2011年第6期|p.1475-1485|共11页
  • 作者单位

    Materials and Surface Science Institute, University of Limerick, Limerick, Ireland;

    Materials and Surface Science Institute, University of Limerick, Limerick, Ireland;

    Materials and Surface Science Institute, University of Limerick, Limerick, Ireland;

    Inamori School of Engineering, Alfred University, Alfred, New York 14802;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 13:42:09

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