• Bulletin of the Chinese Ceramic Society
  • Vol. 43, Issue 12, 4545 (2024)
ZHANG Hongquan1, CHENG Guangjian1, WEN Jin1, and CHEN Pengjie2
Author Affiliations
  • 1School of Materials Science and Engineering, Wuhan University of Technology, Wuhan 430070, China
  • 2Jieyang Hengcheng Ceramic Technology Co., Ltd, Jieyang 515500, China
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    DOI: Cite this Article
    ZHANG Hongquan, CHENG Guangjian, WEN Jin, CHEN Pengjie. Effect of MgTi2O5 on Low Temperature Synthesis and Properties of Aluminum Titanate Ceramics[J]. Bulletin of the Chinese Ceramic Society, 2024, 43(12): 4545 Copy Citation Text show less
    References

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    [2] VIOLINI M A, HERNNDEZ M F, GAUNA M, et al. Low (and negative) thermal expansion Al2TiO5 materials and Al2TiO5-3Al2O3·2SiO2-ZrTiO4 composite materials: processing, initial zircon proportion effect, and properties[J]. Ceramics International, 2018, 44(17): 21470-21477.

    [3] PRATAPA S, UMAROH K, WEDDAKARTI E. Microstructural and decomposition rate studies of periclase-added aluminum titanate-corundum functionally-graded materials[J]. Materials Letters, 2011, 65(5): 854-856.

    [4] KIM H C, LEE K S, KWEON O S, et al. Crack healing, reopening and thermal expansion behavior of Al2TiO5 ceramics at high temperature[J]. Journal of the European Ceramic Society, 2007, 27(2/3): 1431-1434.

    [6] SKALA R D, LI D, LOW I M. Diffraction, structure and phase stability studies on aluminium titanate[J]. Journal of the European Ceramic Society, 2009, 29(1): 67-75.

    [7] BUSCAGLIA V, NANNI P, BATTILANA G, et al. Reaction sintering of aluminium titanate: effect of MgO addition[J]. Journal of the European Ceramic Society, 1994, 13(5): 411-417.

    [9] LASHKARI S, EBADZADEH T. Microwave sintering of Al2(1-x)MgxTi(1+x)O5 ceramics obtained from mixture of nano-sized oxide powders[J]. Ceramics International, 2014, 40(8): 12669-12674.

    [10] CHEN C R, MA Q, HE C, et al. Effects of MgO and Fe2O3 additives on the microstructure and fracture properties of aluminium titanate flexible ceramics[J]. Ceramics International, 2023, 49(12): 19806-19816.

    [11] KORIM T. Effect of Mg2+-and Fe3+-ions on formation mechanism of aluminium titanate[J]. Ceramics International, 2009, 35(4): 1671-1675.

    [12] NAKAGOSHI Y, SUZUKI Y. Dimensional change behavior of porous MgTi2O5 in reactive sintering[J]. Ceramics International, 2017, 43(7): 5541-5546.

    [13] SHEN Q, HU Y, WANG C B, et al. Effect of MgTi2O5 addition on thermal shock resistance of Al2TiO5[J]. Key Engineering Materials, 2007, 280/281/282/283: 1187-1190.

    [17] CHEN W W, SHUI A Z, SHAN Q L, et al. The influence of different additives on microstructure and mechanical properties of aluminum titanate ceramics[J]. Ceramics International, 2021, 47(1): 1169-1176.

    [19] GIORDANO L, VIVIANI M, BOTTINO C, et al. Microstructure and thermal expansion of Al2TiO5-MgTi2O5 solid solutions obtained by reaction sintering[J]. Journal of the European Ceramic Society, 2002, 22(11): 1811-1822.

    [20] FAN K Y, JIANG W H, RUIZ-HERVIAS J, et al. Effect of Al2TiO5 content and sintering temperature on the microstructure and residual stress of Al2O3-Al2TiO5 ceramic composites[J]. Materials, 2021, 14(24): 7624.

    ZHANG Hongquan, CHENG Guangjian, WEN Jin, CHEN Pengjie. Effect of MgTi2O5 on Low Temperature Synthesis and Properties of Aluminum Titanate Ceramics[J]. Bulletin of the Chinese Ceramic Society, 2024, 43(12): 4545
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