• Chinese Journal of Lasers
  • Vol. 34, Issue s1, 112 (2007)
[in Chinese]*, [in Chinese], [in Chinese], [in Chinese], and [in Chinese]
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    [in Chinese], [in Chinese], [in Chinese], [in Chinese], [in Chinese]. Research on the Synthesis of ZrW2O8by Laser Sintering[J]. Chinese Journal of Lasers, 2007, 34(s1): 112 Copy Citation Text show less
    References

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    [2] T. A. Mary, J. S. O. Evans, T. Vogt et al.. Negative thermal expansion from 0.3 to 1050 Kelvin in ZrW2O8 [J]. Science, 1996, 272(5258): 90~92

    [3] J. S. O. Evans, T. A. Mary, T. Vogt et al.. Negative thermal expansion in Zr and HfW2O8 [J]. Chem. Mater., 1996, 8: 2809~2811

    [4] Yu Gang, Yu Heji. Integrated Laser Capacity Machining Project [M]. Beijing: Metallurgy Industry Press, 2002

    [5] Xu Qingren. Overseas laser machining technology development and applications (previous) [J]. International Avigation, 1998, (3): 59~60

    [6] Okutomi M, Kasamatsu M, Tsukamoto K et al.. Sintering of new oxide ceramics using a high powder cw CO2 laser [J]. Appl. Phys. Lett., 1984, 44(12): 1132~1134

    [7] Fang Zheng, Renzhang Yuan, Xingjiao Li et al.. Electrical properties of laser-synthesized aluminum oxide-tungsten oxide ceramics [J]. J. American Ceramics Society, 1998, 81(9): 2443~2448

    [8] Macedo Z S, Hernandes A C. Laser sintering of Bi4Ti3O12 ferroelectric ceramics [J]. Materials Letters, 2002, 55(4): 217~220

    [9] Hao L, Lawrence J, Lim G C et al.. Examination of CO laser-induce rapid solidification structures on magnesia partially stabilized zirconia and the effects thereof on wettability characteristics [J]. Optics and Laser in Engineering, 2004, 42(3): 355~374

    [10] Evans J S O, Hu Z, Jorgensen J D et al.. Compressibility phase transitions and oxygen migration zirconium tungstate, ZrW2O8 [J]. Science, 1997, 275(5296): 61~64

    [in Chinese], [in Chinese], [in Chinese], [in Chinese], [in Chinese]. Research on the Synthesis of ZrW2O8by Laser Sintering[J]. Chinese Journal of Lasers, 2007, 34(s1): 112
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