The effect of the oxidation conditions on the surface microdomains of ZrB2-YAG ultra-high temperature ceramics

被引:0
|
作者
Song, Jie-Guang [1 ]
Xu, Min-Han [1 ]
Du, Da-Ming [1 ]
Wang, Fang [1 ]
Li, Shi-Bin [1 ]
Ji, Gang-Chang [1 ]
机构
[1] Jiujiang Univ, Sch Mech & Mat Engn, Jiujiang Key Lab Green Remfg, Jiujiang 332005, Peoples R China
来源
关键词
Ultra-high temperature ceramics; Zirconium diboride; Oxidation factor; Surface microdomain; Multi-phase ceramics; DIBORIDE-SILICON CARBIDE; ZIRCONIUM DIBORIDE; BEHAVIOR; 1500-DEGREES-C;
D O I
暂无
中图分类号
TQ174 [陶瓷工业]; TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Zirconium diboride is widely applied because of some excellent properties. The effect of the oxidation temperature on the surface microdomain of ZrB2-YAG multi-phase ceramics was studied, it helps to improve the performance of ultra-high-temperature ceramics. The results show the oxidation layer thickness is increased with an increase in the oxidation temperature, the oxidation layer thickness is decreased by increasing the density of multi-phase ceramics at the same oxidation temperature. The ceramic surface shows the (m) ZrO2, YAG, B2O3 and ZrB2 phases below the the oxidation temperature at 1300 degrees C, but the ceramic surface do not show the ZrB2 phase above the oxidation temperature at 1300 degrees C that is to say, the ZrB2 phase of the ceramic suface is entirely oxidized. The oxidation layer thickness is increased with an increase in the oxidation time, however, the ratio of increasing thickness is less and less. The oxidation layer shows a loose structure during the initial stage of the oxidation, which lacks a barriers for the diffusion of the oxygen.
引用
收藏
页码:535 / 537
页数:3
相关论文
共 50 条
  • [41] Deuterium plasma induced preferential erosion in ultra-high temperature ceramics TiB2 and ZrB2
    Nuckols, L.
    Baldwin, M. J.
    Meyer III, H. M.
    Nishijima, D.
    Patino, M. I.
    Parish, C. M.
    Rapp, J.
    NUCLEAR FUSION, 2024, 64 (12)
  • [42] Spark Plasma Sintering of ZrB2-SiC-ZrC ultra-high temperature ceramics at 1800°C
    Snyder, Alexandra
    Quach, Dat
    Groza, Joanna R.
    Fisher, Timothy
    Hodson, Stephen
    Stanciu, Lia A.
    MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2011, 528 (18): : 6079 - 6082
  • [43] Effect of Various Additives on the Oxidation Behavior of ZrB2-Based Ultra-High-Temperature Ceramics at 1800°C
    Hu, Ping
    Zhang, Xing-Hong
    Han, Jie-Cai
    Luo, Xiao-Guang
    Du, Shang-Yi
    JOURNAL OF THE AMERICAN CERAMIC SOCIETY, 2010, 93 (02) : 345 - 349
  • [44] Development of Ultra-High Temperature Ceramics
    Lee, Sea Hoon
    Park, Min -Sung
    Zou, Yun
    COMPOSITES RESEARCH, 2022, 35 (04): : 261 - 268
  • [45] Porous Ultra-high Temperature Ceramics for Ultra-high Temperature Thermal Protection System
    LI Fei
    LIU Jixuan
    ZHANG Guojun
    China's Refractories, 2020, 29 (04) : 23 - 28
  • [46] Mechanical response of ZrB2-based ultra-high temperature ceramics to shock pulse loadings in a wide temperature range
    Skripnyak, V. V.
    Skripnyak, V. A.
    Skripnyak, E. G.
    Vaganova, I. K.
    6TH INTERNATIONAL CONGRESS ENERGY FLUXES AND RADIATION EFFECTS, 2018, 1115
  • [47] High-temperature oxidation of AlN-ZrB2 ceramics
    Inst for Problems of Materials, Science, Kiev, Ukraine
    Key Eng Mat, Pt 3 (1625-1628):
  • [48] Oxidation of ZrB2-SiC ultra-high temperature composites over a wide range of SiC content
    Williams, Peter A.
    Sakidja, Ridwan
    Perepezko, John H.
    Ritt, Patrick
    JOURNAL OF THE EUROPEAN CERAMIC SOCIETY, 2012, 32 (14) : 3875 - 3883
  • [49] Preparation and flame ablation/oxidation behavior of ZrB2/SiC ultra-high temperature ceramic composites
    Wang, Chang-An
    Wang, Hailong
    Huang, Yong
    Fang, Daining
    Key Engineering Materials, 2007, 351 : 142 - 146
  • [50] Preparation and flame ablation/oxidation behavior of ZrB2/SiC ultra-high temperature ceramic composites
    Wang, Chang-An
    Wang, Hailong
    Huang, Yong
    Fang, Daining
    COMPOSITE MATERIALS V, 2007, 351 : 142 - +