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Study on growth of coarse grains of diamond with high quality under HPHT 被引量:6

Study on growth of coarse grains of diamond with high quality under HPHT
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摘要 The growth of coarse grains of diamond was observed with graphite as carbon source and Fe80Ni20 alloy powder as catalyst at HPHT in a China-type SPD 6×1670T cubic high-pressure apparatus with highly exact control system. To synthesize coarse grains of diamond crystal with high quality,ad-vanced indirect heat assembly,powder catalyst technology and catalyst with optimal granularity were used. Especially the nucleation of diamond and the growth rate were strictly controlled by the opti-mized synthesis craft. At last,diamond crystals (about 0.85 mm) in the perfect hex-octahedron shape were successfully synthesized at ~5.4 GPa and ~1360℃ in 60 min. The characteristic of crystal growth with powder catalyst technology under HPHT was discussed. The results and techniques might be useful for production of coarse grains of diamond. The growth of coarse grains of diamond was observed with graphite as carbon source and Fe80Ni20 alloy powder as catalyst at HPHT in a China-type SPD 6×1670T cubic high-pressure apparatus with highly exact control system. To synthesize coarse grains of diamond crystal with high quality, advanced indirect heat assembly, powder catalyst technology and catalyst with optimal granularity were used. Especially the nucleation of diamond and the growth rate were strictly controlled by the optimized synthesis craft. At last, diamond crystals (about 0.85 mm) in the perfect hex-octahedron shape were successfully synthesized at -5.4 GPa and -1360℃ in 60 min. The characteristic of crystal growth with powder catalyst technology under HPHT was discussed. The results and techniques might be useful for production of coarse grains of diamond.
出处 《Chinese Science Bulletin》 SCIE EI CAS 2009年第1期163-167,共5页
基金 Supported by the National Natural Science Foundation of China (Grant No.50572032)
关键词 金刚石 石墨 HPHT 催化剂 晶体 diamond, coarse grains, 0.85 mm, HPHT
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参考文献11

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二级参考文献3

  • 1J. Sung.Graphite → diamond transition under high pressure: A kinetics approach[J].Journal of Materials Science.2000(23)
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