Journal of Inorganic Materials, Volume. 39, Issue 10, 1182(2024)
[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
[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
[15] ZHANG X, CHEN J X, LI X C et al. Microstructure and mechanical properties of
[16] QIU B F, DUAN X M, ZHANG Z et al. Microstructural evolution and mechanical properties of
[17] QIU B F, DUAN X M, ZHANG Z et al. Microstructural evolution of
[18] ZHANG Z, DUAN X M, TIAN Z et al. Texture and anisotropy of hot-pressed
[19] LIU Z T, ZHAO S Q, YANG T et al. Improvement in mechanical properties in AlN-
[20] MIAO Y M, LIU L G. Effects of pressure and the content of SiC on densification and mechanical properties of hot press sintered
[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
[24] HASSELMAN D. Thermal stress resistance parameters for brittle refractory ceramics: a compendium[J]. Ceramic Bulletin, 49, 1033(1970).
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.
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)