Effect of added TiO2 on the mechanical properties of sintered Al2O3 insulator

IF 1.1 4区 材料科学 Q4 MATERIALS SCIENCE, MULTIDISCIPLINARY
R. Kim, H. Jeong, Y. Son, Sorokina Si, S. Ryu, S. K. Ko, H. Hong
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Abstract

The effect of TiO2 additive concentration and sintering temperatures on the densification of alumina (Al2O3 ) ceramics were investigated. Densified alumina specimens were prepared by uniaxial pressing at a pressure of 60 MPa followed by isothermal heating at either 1400, 1500, or 1600 o C for 2 h. The relative density, microstructure, crystallinity, and hardness were investigated, and the correlation between properties and structure was discussed in relation to TiO2 addition and sintering temperature. The densities of the 0.05wt%-TiO2 specimens sintered at 1500 and 1600 o C had higher values than the pure alumina specimens. Adding more than 5.0wt% TiO2 lowered the relative density. The maximum achieved density was 99.7% at 0.05wt% TiO2 addition. Shrinkage and hardness analyses confirmed that the sintering temperature for the Al2O3 insulator could be lowered by adding TiO2. The optimal concentration to obtain a dense alumina with high hardness for insulator use was determined to be in the range of 0.05 to 1.0 wt% of TiO2 . These results provide fundamental composition and process optimization data for the development of high-dielectric alumina insulators.
添加TiO2对烧结Al2O3绝缘体力学性能的影响
研究了TiO2添加剂浓度和烧结温度对氧化铝(Al2O3)陶瓷致密化的影响。通过在60MPa的压力下单轴压制,然后在1400、1500或1600℃下等温加热2小时来制备致密氧化铝试样。研究了相对密度、微观结构、结晶度和硬度,并讨论了性能和结构之间与TiO2添加量和烧结温度的关系。在1500和1600℃下烧结的0.05wt%-TiO2试样的密度值高于纯氧化铝试样。添加超过5.0wt%的TiO2降低了相对密度。在添加0.05wt%的TiO2时,实现的最大密度为99.7%。收缩和硬度分析证实,添加TiO2可以降低Al2O3绝缘体的烧结温度。获得用于绝缘体用途的具有高硬度的致密氧化铝的最佳浓度被确定为在TiO2的0.05至1.0wt%的范围内。这些结果为开发高介电氧化铝绝缘体提供了基本的组成和工艺优化数据。
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来源期刊
Korean Journal of Metals and Materials
Korean Journal of Metals and Materials MATERIALS SCIENCE, MULTIDISCIPLINARY-METALLURGY & METALLURGICAL ENGINEERING
CiteScore
1.80
自引率
58.30%
发文量
100
审稿时长
4-8 weeks
期刊介绍: The Korean Journal of Metals and Materials is a representative Korean-language journal of the Korean Institute of Metals and Materials (KIM); it publishes domestic and foreign academic papers related to metals and materials, in abroad range of fields from metals and materials to nano-materials, biomaterials, functional materials, energy materials, and new materials, and its official ISO designation is Korean J. Met. Mater.
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