Journal of Inorganic Materials, Volume. 39, Issue 10, 1182(2024)

Mechanical Properties and Thermal Shock Resistance of SrAl2Si2O8 Reinforced BN Ceramic Composites

Bo WANG1,2, Delong CAI1、*, Qishuai ZHU2,3, Daxin LI2, Zhihua YANG2, Xiaoming DUAN2, Yanan LI4, Xuan WANG5, Dechang JIA2、*, and Yu ZHOU2,6
Author Affiliations
  • 11. International Joint Laboratory of Advanced Nanomaterials of Heilongjiang Province, College of Materials Science and Chemical Engineering, Harbin Engineering University, Harbin 150001, China
  • 22. Key Laboratory of Advanced Structural- Functional Integration Materials, School of Materials Science and Engineering, Harbin Institute of Technology, Harbin 150001, China
  • 33. China Resources Cement Technology R&D Co., Ltd, Guangzhou 510000, China
  • 44. The First Military Representative Office of the Army Equipment Department in Beijing, Beijing 100072, China
  • 55. The Fourth System Design Department, Fourth Academy, China Aerospace Science and Industry Corporation Limited, Beijing 100048, China
  • 66. School of Materials Science and Engineering, Harbin Institute of Technology (Shenzhen), Shenzhen 518055, China
  • show less
    References(24)

    [1] KENION T, YANG N, XU C. Dielectric and mechanical properties of hypersonic radome materials and metamaterial design: a review[J]. Journal of the European Ceramic Society, 42(2022).

    [2] KUMAR S, GUPTA P. A review on ceramic and polymer materials for radome applications[J]. IEEE Indian Conference on Antennas and Propogation (InCAP), Ahmedabad.

    [3] ADLER W. Development of design data for rain impact damage in infrared-transmitting windows and radomes[J]. Optical Engineering, 26, 262143(1987).

    [4] KHATAVKAR N. Composite materials for supersonic aircraft radomes with ameliorated radio frequency transmission--a review[J]. RSC Advances, 6(2016).

    [5] KOZAKOFF D[M]. Analysis of radome-enclosed antennas(1997).

    [6] CI L J, SONG L, JIN C H et al. Atomic layers of hybridized boron nitride and graphene domains[J]. Nature Materials, 9(2010).

    [7] STEINBORN C, HERRMANN M, KEITEL U et al. Correlation between microstructure and electrical resistivity of hexagonal boron nitride ceramics[J]. Journal of the European Ceramic Society, 33(2013).

    [8] WANG Z G, GE M, YU S Q et al. Microstructural evolution of polymer-derived hexagonal boron nitride fibres under high-temperature stretching[J]. Journal of Advanced Ceramics, 12(2023).

    [9] EICHLER J, LESNIAK C. Boron nitride (BN) and BN composites for high-temperature applications[J]. Journal of the European Ceramic Society, 28(2008).

    [10] DING C, LIU G L. Preparation and mechanical properties of diamond/hexagonal boron nitride composite with spark plasma sintering[J]. Journal of Ceramics, 44(2023).

    [11] WEI D, MENG Q C, JIA D C. Microstructure of hot-pressed h-BN/Si3N4 ceramic composites with Y2O3-Al2O3 sintering additive[J]. Ceramics International, 33(2007).

    [12] WEN G, WU G L, LEI T Q et al. Co-enhanced SiO2-BN ceramics for high-temperature dielectric applications[J]. Journal of the European Ceramic Society, 20(2000).

    [13] CAI D L, YANG Z H, DUAN X M et al. A novel BN-MAS system composite ceramics with greatly improved mechanical properties prepared by low temperature hot-pressing[J]. Materials Science and Engineering: A, 633, 194(2015).

    [14] NIU B, CAI D L, YANG Z H et al. Anisotropies in structure and properties of hot-press sintered h-BN-MAS composite ceramics: effects of raw h-BN particle size[J]. Journal of the European Ceramic Society, 39(2019).

    [15] ZHANG X, CHEN J X, LI X C et al. Microstructure and mechanical properties of h-BN/Y2SiO5 composites[J]. Ceramics International, 41(2015).

    [16] QIU B F, DUAN X M, ZHANG Z et al. Microstructural evolution and mechanical properties of h-BN composite ceramics with Y2O3-AlN addition by liquid-phase sintering[J]. Rare Metals, 39(2020).

    [17] QIU B F, DUAN X M, ZHANG Z et al. Microstructural evolution of h-BN matrix composite ceramics with La-Al-Si-O glass phase during hot-pressed sintering[J]. Journal of Advanced Ceramics, 10(2021).

    [18] ZHANG Z, DUAN X M, TIAN Z et al. Texture and anisotropy of hot-pressed h-BN matrix composite ceramics with in situ formed YAG.[J]. Journal of Advanced Ceramics, 11(2022).

    [19] LIU Z T, ZHAO S Q, YANG T et al. Improvement in mechanical properties in AlN-h-BN composites with high thermal conductivity[J]. Journal of Advanced Ceramics, 10(2021).

    [20] MIAO Y M, LIU L G. Effects of pressure and the content of SiC on densification and mechanical properties of hot press sintered h-BN ceramics[J]. Journal of Ceramics, 43(2022).

    [21] CHINN R, HAUN M, KIM C et al. Microstructures and properties of three composites of alumina, mullite, and monoclinic SrAl2Si2O8[J]. Journal of the American Ceramic Society, 83(2000).

    [22] CHINN R, HAUN M, KIM C et al. Low-temperature transient glass-phase processing of monoclinic SrAl2Si2O8[J]. Journal of the American Ceramic Society, 81(1998).

    [23] YANG Z H, JIA D C, ZHOU Y et al. Thermal shock resistance of in situ formed SiC-BN composites[J]. Materials Chemistry and Physics, 107(2008).

    [24] HASSELMAN D. Thermal stress resistance parameters for brittle refractory ceramics: a compendium[J]. Ceramic Bulletin, 49, 1033(1970).

    Tools

    Get Citation

    Copy Citation Text

    Bo WANG, Delong CAI, Qishuai ZHU, Daxin LI, Zhihua YANG, Xiaoming DUAN, Yanan LI, Xuan WANG, Dechang JIA, Yu ZHOU. Mechanical Properties and Thermal Shock Resistance of SrAl2Si2O8 Reinforced BN Ceramic Composites [J]. Journal of Inorganic Materials, 2024, 39(10): 1182

    Download Citation

    EndNote(RIS)BibTexPlain Text
    Save article for my favorites
    Paper Information

    Category:

    Received: Mar. 3, 2024

    Accepted: --

    Published Online: Dec. 13, 2024

    The Author Email: Delong CAI (dlcai@hit.edu.cn), Dechang JIA (dcjia@hit.edu.cn)

    DOI:10.15541/jim20240091

    Topics