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CHI Yuan-Bin, WANG Li-Zhong, XU Hong-Shan, LI Ming-Hui, CHEN Li-Xue, LI Shu-Qing, CHEN Yu-Fei. Study of Wurtzite-Type Boron Nitride and Its Applications (Ⅰ)Shock Wave Synthesis of Wurtzite-Type Boron Nitride[J]. Chinese Journal of High Pressure Physics, 1991, 5(4): 275-285 . doi: 10.11858/gywlxb.1991.04.005
Citation: CHI Yuan-Bin, WANG Li-Zhong, XU Hong-Shan, LI Ming-Hui, CHEN Li-Xue, LI Shu-Qing, CHEN Yu-Fei. Study of Wurtzite-Type Boron Nitride and Its Applications (Ⅰ)Shock Wave Synthesis of Wurtzite-Type Boron Nitride[J]. Chinese Journal of High Pressure Physics, 1991, 5(4): 275-285 . doi: 10.11858/gywlxb.1991.04.005

Study of Wurtzite-Type Boron Nitride and Its Applications (Ⅰ)Shock Wave Synthesis of Wurtzite-Type Boron Nitride

doi: 10.11858/gywlxb.1991.04.005
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  • Corresponding author: CHI Yuan-Bin
  • Received Date: 02 Aug 1991
  • Rev Recd Date: 02 Aug 1991
  • Publish Date: 05 Dec 1991
  • Two kinds of hBN (hexagonal boron nitride) powder were used as raw material for synthesizing superhard BN by shock compression. Our explosive experimental assembly was similar to that of Japan Nippon Oil and Fast Company Ltd. After shock treatment the recovered mixture of BN and iron powders was immersed in HCl solution to dissolve the iron material. The residue was refined by caustic fusion. By observing X-ray diffraction pattern, we found that all refined BN was wBN (wurtzite-type boron nitride) and that zBN (zinc blende-type boron nitride) did not exist in the refined BN. The purity of refined wBN approached 99% and the impurities were Cr, Fe, Ti, Mn and Ca. We think the impurities to come from the stainless steel capsule used in caustic fusion, except the Ca originated in the raw material hBN. Using Scherrer line-broadening equation D=57.3K/(b-b0)cos , the crystallite sizes of the wBN were estimated at 24 nm, It was also noted that the sizes of wBN transformed from abovementioned two kinds of the raw material were no obvious difference. The DTA result manifests that the wBN started endothermal reaction at 1 127 K and the absorptive peak of heat was at 1 260 K. This shows the wBN to be more thermostable than diamond but less than zBN.

     

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  • Bundy F P, Wentorf R H Jr. J Chem Phys, 1963, 38: 1144.
    Adadurov G A, Aliev Z G, Atovmyan L O, et al. Sov Phys Dokl, 1967, 12: 173.
    Coleburn N L, Forbes J W. J Chem Phys, 1968, 48: 555.
    Sawaoka A, Saito S. In: Timmerhaus K D, Barber M S. High Pressure Science and Technology. NY: Plenum Press, 1979, 1: 986.
    Saito S, Sawaoka A. In: Vodar B, Marteau Ph, ed. High Pressure Science and Technology. Pergamon Press, 1980, 1: 541.
    Araki M, Kuroyama Y. Physica B, 1986, 139-140: 819.
    Печснтковская Л E, Саввакин Г И. Порошковая Металлургия, 1984, (4): 78.
    Soma T, Sawaoka A, Saito S. Mat Res Bull, 1974, 9: 755.
    商玉生. 爆炸法合成立方氮化硼, 私人通讯.
    Sato T, Ishii T, Setaka N. J Am Ceram Soc, 1982, 65: C-162.
    Ададуров Г А. Успехи Химии, 1986, 55: 555.
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