A simple method for preparing ThO2 ceramics with high density

被引:4
作者
Qi, Song [1 ,2 ]
Guan, Fang [2 ]
Peng, Dan [2 ]
Zhang, Xuyi [2 ]
Liao, Wuping [1 ,2 ,3 ]
机构
[1] Univ Sci & Technol China, Sch Rare Earths, Hefei 230026, Peoples R China
[2] Chinese Acad Sci, Ganjiang Innovat Acad, Ganzhou 341000, Peoples R China
[3] Chinese Acad Sci, Changchun Inst Appl Chem, State Key Lab Rare Earth Resource Utilizat, Changchun, Peoples R China
关键词
application; high density; precipitation; sintering; ThO2; ceramic; YTTRIUM-DOPED THO2; ELECTRICAL-PROPERTIES; THERMAL-EXPANSION; THORIUM-DIOXIDE; SOLID-SOLUTIONS; COMBUSTION; BEHAVIOR; ELECTROLYTES; EVOLUTION; OXALATE;
D O I
10.1111/ijac.14258
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
A simple and effective method for preparing ThO2 ceramics with high density has been proposed. It mainly includes a positive precipitation approach and a conventional sintering process. The SEM images and laser particle size analysis show that the prepared powder exhibits a round-plated shape with a uniform and narrow particle size distribution, which is the key to the densification sintering of ThO2 ceramics. The XRD analyses confirm that the ThO2 ceramics sintered at 1590 degrees C were composed of cubic fluorite phase. The effect of sintering temperature on the density of ThO2 ceramics was also investigated, and a relative density higher than 95% were achieved after sintering at 1590 degrees C for 6 h in an air atmosphere. Moreover, the Vickers hardness was up to 8.49 GPa, the average linear expansion coefficient within 40-800 degrees C was low to 10.97 x 10(-6)/K, and the thermal conductivity and the thermal diffusivity were both higher than most of traditional ceramic materials (16.94-5.86 W/m K and 7.28-1.28 mm(2)/s, respectively, within the temperature range of 25-800 degrees C). The previous great performances are closely related to its high density, which enables it to be a great candidate for nuclear fuels and other potential application fields.
引用
收藏
页码:1194 / 1204
页数:11
相关论文
共 50 条
  • [21] Hydrothermal Growth and Thermal Property Characterization of ThO2 Single Crystals
    Mann, Matthew
    Thompson, Daniel
    Serivalsatit, Karn
    Tritt, Terry M.
    Ballato, John
    Kolis, Joseph
    CRYSTAL GROWTH & DESIGN, 2010, 10 (05) : 2146 - 2151
  • [22] Computational study of the energy landscape of water on the ThO2 {111} surface
    Han, Xiaoyu
    Kaltsoyannis, Nikolas
    JOURNAL OF NUCLEAR MATERIALS, 2022, 559
  • [23] First-principles study of ground-state properties and high pressure behavior of ThO2
    Wang, Bao-Tian
    Shi, Hongliang
    Li, Wei-Dong
    Zhang, Ping
    JOURNAL OF NUCLEAR MATERIALS, 2010, 399 (2-3) : 181 - 188
  • [24] Effect of pressure on mechanical and optical properties of ThO2 and PuO2
    Singh, Shilpa
    Sonvane, Yogesh
    Nekrasov, Kiril A.
    Kupryazhkin, Anatoliy Ya
    Gajjar, Pankaj N.
    Gupta, Sanjeev K.
    JOURNAL OF THE AMERICAN CERAMIC SOCIETY, 2023, 106 (02) : 1062 - 1073
  • [25] Photochemical deposition, characterization and optical properties of thin films of ThO2
    Huentupil, Y.
    Cabello-Guzman, G.
    Chornik, B.
    Arancibia, R.
    Buono-Core, G. E.
    POLYHEDRON, 2019, 157 : 225 - 231
  • [26] Catalytic Application of Oxygen Vacancies Induced by Bi3+ Incorporation in ThO2 Samples Obtained by Solution Combustion Synthesis
    Pandey, Jyoti
    Sethi, Aanchal
    Uma, Sitharaman
    Nagarajan, Rajamani
    ACS OMEGA, 2018, 3 (07): : 7171 - 7181
  • [27] Lattice contraction and lattice deformation of UO2 and ThO2 doped with Gd2O3
    Baena, Angela
    Cardinaels, Thomas
    Govers, Kevin
    Pakarinen, Janne
    Binnemans, Koen
    Verwerft, Marc
    JOURNAL OF NUCLEAR MATERIALS, 2015, 467 : 135 - 143
  • [28] ESTIMATIONS OF HEAT CAPACITIES FOR ACTINIDE DIOXIDE: UO2, NpO2, ThO2, AND PuO2
    Eser, E.
    Koc, H.
    Gokbulut, M.
    Gursoy, G.
    NUCLEAR ENGINEERING AND TECHNOLOGY, 2014, 46 (06) : 863 - 868
  • [29] Oxygen ion conductivity studies of bismuth and bismuth-calcium co-doped ThO2
    Sethi, Aanchal
    Uma, Sitharaman
    Nagarajan, Rajamani
    CERAMICS INTERNATIONAL, 2021, 47 (15) : 21498 - 21508
  • [30] The Complex Sol-Gel Process for producing small ThO2 microspheres
    Brykala, Marcin
    Rogowski, Marcin
    JOURNAL OF NUCLEAR MATERIALS, 2016, 473 : 249 - 255