Journal of the Chinese Ceramic Society, Volume. 50, Issue 12, 3305(2022)
Effect of h-BN on Microstructure and Properties of Al2O3-C Refractories at Different Nitriding Temperatures
[1] [1] DING J, DENG C J, ZHU H X, et al. Effects of silicon powder content on the properties and interface bonding of nitrided Al2O3-C refractories[J]. Mater Chem Phys, 2018, 206: 193-203.
[3] [3] WANG X, CHEN Y, YU C, et al. Preparation and application of ZrC-coated flake graphite for Al2O3-C refractories[J]. J Alloys Compd, 2019, 788: 739-747.
[6] [6] PILLI V, SARKAR R. Study on the nanocarbon containing Al2O3-C continuous casting refractories with reduced fixed carbon content[J]. J Alloys Compd, 2019, 781: 149-158.
[7] [7] LIAO N, LI Y W, SANG S B, et al. Effects of nano carbon black and graphite flake on properties of low carbon Al2O3-C refractories[J]. China.s Refract, 2016, 25(2): 17-24.
[9] [9] ZUO H B, WANG C, ZHANG J L, et al. Application status and important technical indexes of BF hearth refractory[J]. Iron Steel, 2015, 50(2): 1-6.
[10] [10] ROUNGOS V, ANEZIRIS C G, BEREK H. Novel Al2O3-C refractories with less residual carbon due to nanosealed additives for continuous steel casting applications[J]. Adv Eng Mater, 2012, 14(4): 255-264.
[11] [11] ANEZIRIS C G, HUBáLKOVá J, BARABAS R. Microstructure evaluation of MgO-C refractories with TiO2 and Al addition[J]. J Eur Ceram Soc, 2007, 27(1): 73-78.
[13] [13] LIU Z L, DENG C J, YU C, et al. Preparation of in situ grown silicon carbide whiskers onto graphite for application in Al2O3-C refractories[J]. Ceram Int, 2018, 44(12): 13944-13950.
[14] [14] ZHU T B, LI Y W, SANG S B. Heightening mechanical properties and thermal shock resistance of low-carbon magnesia-graphite refractories through the catalytic formation of nanocarbons and ceramic bonding phases[J]. J Alloys Compd, 2019, 783: 990-1000.
[15] [15] WANG H, LI Y W, ZHU T B, et al. Strengthening of Al2O3-C slide gate plate refractories with microcrystalline graphite[J]. Ceram Int, 2017, 43(13): 9912-9918.
[17] [17] ATZENHOFER C, GSCHIEL S, HARMUTH H. Phase formation in Al2O3-C refractories with Al addition[J]. J Eur Ceram Soc, 2017, 37(4): 1805-1810.
[18] [18] YU C, DENG C J, ZHU H X, et al. Synthesis of hexagonal plate-like Al4Si2C5 and the effect of Al4Si2C5 addition to Al2O3-C refractory[J]. Adv Powder Technol, 2017, 28(1): 177-184.
[20] [20] LIAO N, NIU B, QIU B F, et al. Enhanced thermal shock resistance of BN-based composites sintered by hot-pressing with the introduction of nano oxides[J]. Mater Sci Eng A, 2019, 767: 138443.
[21] [21] ZHANG Z T, TENG L D, LI W C. Mechanical properties and microstructures of hot-pressed MgAlON-BN composites[J]. J Eur Ceram Soc, 2007, 27(1): 319-326.
[22] [22] YIN L, ZHAO K, DING Y, et al. Effect of h-BN addition on the fabrication, mechanical and tribological properties of Sialon materials[J]. Ceram Int, 2022, 48(6): 7715-7722.
[24] [24] LIPP A, SCHEWETZ K A, HUNOLD K. Hexagonal boron nitride: fabrication, properties and applications[J]. J Eur Ceram Soc, 1989, 5(1): 3-9.
[27] [27] JACK K H. Review of Sialons and related nitrogen ceramics[J]. J Mater Sci, 1976, 11: 1135-1158.
[29] [29] LIAO N, LI Y W, WANG Q H, et al. Synergic effects of nano carbon sources on thermal shock resistance of Al2O3-C refractories[J]. Ceram Int, 2017, 43(16): 14380-14388.
[30] [30] DAI J X, SHAJ J, SHAO J Q, et al. In-situ growth of SiC nanostructures and their influence on anti-oxidation capability of C/SiC composites[J]. Corros Sci, 2017, 124: 71-79.
[31] [31] REN Y, DAI F Z, XIANG H, et al. Mechanical and thermal properties of light weight boron-mullite Al5BO9[J]. J Am Ceram Soc, 2020, 103(10): 5939-5951.
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CHEN Tao, WANG Xing, LIU Zhenglong, DENG Chengji, YU Chao, DING Jun, ZHU Hongxi. Effect of h-BN on Microstructure and Properties of Al2O3-C Refractories at Different Nitriding Temperatures[J]. Journal of the Chinese Ceramic Society, 2022, 50(12): 3305
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Received: May. 9, 2022
Accepted: --
Published Online: Jan. 20, 2023
The Author Email: Tao CHEN (1173917842@qq.com)