期刊文献+

高温高压下石墨Ni_(70)Mn_(25)Co_5体系中石墨的层状生长现象与合成金刚石的质量 被引量:7

LAMINAR GROWTH PHENOMENA OF GRAPHITE AND QUALITY OF SYNTHETIC DIAMOND IN GRAPHITE Ni_(70)Mn_(25)Co_5SYSTEM UNDER HIGH TEMPERATURE AND HIGH PRESSURE
在线阅读 下载PDF
导出
摘要 为了研究石墨Ni_(70)Mn_(25)Co_5体系在高压高温下石墨的变化和金刚石的生长现象,用六面顶压机对交替组装的圆片状石墨和Ni_(70)Mn_(25)Co_5触媒进行高温高压处理及金刚石合成实验。扫描电镜观察结果表明:在触媒中再结晶石墨以片状为主,而类球状石墨由片状石墨的堆积长大形成的;覆盖在金刚石的金属包膜中有大约1μm厚的片状石墨。借助于多功能光学显微镜,观察到金刚石的晶体形态和缺陷特征随合成温度、压力的不同有规律地变化。实验证实了高温高压下石墨Ni_(70)Mn_(25)Co_5体系中石墨和金刚石的层状生长现象,进而提出了预防金刚石宏观缺陷、合成优质金刚石的技术措施。 In order to investigate the phenomena of graphite variation and diamond growth in a graphite-Ni70Mn25Co5 alloy system, experiments for the treatment of alternatively stacked discs of graphite - Ni70Mn25Co5 alloy and the synthesis of diamond crystals were carried out using a cubic anvil cell press under high pressure and high temperature. The results observed by scanning electron microscopy indicate that the recrystallized graphite in Ni70Mn25Co5 alloy mainly has a flaky shape, while some sphere-like graphite is formed by the packing of flaky graphite. Additionally, flaky graphite with a thickness of about 1μm was also observed in the metallic film wrapping the diamond. Typical morphologies and defects of diamond crystals, which vary regularly with the changes of pressure and temperature, were also analyzed by means of a multi-function microscope. The laminar growth phenomena of graphite and diamond were verified in the experiment of the graphite-Ni70Mn25Co5 system under high pressure and high temperature. Moreover, a key synthetic technique is suggested to prevent the macro-defects produced during the diamond growth, and thus a high-quality diamond can be synthesized.
出处 《硅酸盐学报》 EI CAS CSCD 北大核心 2005年第12期1544-1550,共7页 Journal of The Chinese Ceramic Society
基金 国家自然科学基金(50472102) 西南科技大学引进人才基金(ZK043030)资助项目。~~
关键词 石墨 镍锰钴合金触媒 高温高压 金刚石 形貌 缺陷 层状生长 graphite nickel- manganese- cobalt alloy catalyst high temperature and high pressure diamond morphology defects laminar growth
  • 相关文献

参考文献17

  • 1BOVENKERK HP,BUNDYFP,HALLHT,etal.Preparation of diamond [J].Nature,1959,4693:1094-1096.
  • 2SUNG C.Optimised cell design for high-pressure synthesis of diamond [J].High Tem-High Press,2001,33:489-493.
  • 3刘贤,郑丽雪.对我国超硬材料行业的环境分析[J].珠宝科技,2002,14(2):57-60. 被引量:5
  • 4TOLANSKYS,SUNAGAWA I.Spiral and other growth forms of synthetic diamonds:a distinction between natural and synthetic diamond [J].Nature,1959,4 698:1 526-1 528.
  • 5TOLANSKY S,SUNAGAWA I.Interferometric studies on synthetic diamonds [J].Nature,1960,4 708:203-205.
  • 6KANDA I,AKAISHIi M,SETAKA N,et al.Surface structures of synthetic diamonds [J].J Mater Sci,1980,15:2 743-2 747.
  • 7王松顺 王孝琪 王民.新型金刚石合成及制品制造工艺[M].郑州:机械工业部郑州磨料磨具磨削研究所,1996.234-263.
  • 8唐敬友,温上捷,董庆东,谷岩.静压法合成金刚石的成核研究[J].金刚石与磨料磨具工程,2001,21(2):22-23. 被引量:4
  • 9STRONG H M,HANNEMAN R E.Crystallization of diamond and graphite [J].J Chem Phys,1967,46(9):3 668-3 676.
  • 10EMARA S H,TOLANSKY S.The microstructure of dodecahedral faces of diamond [J].Proc Roy Soc A,1957,239:289-294.

二级参考文献32

  • 1张建安,刘树桢.金刚石合成中某些现象的分析与研究[J].中国有色金属学报,1996,6(1):136-139. 被引量:8
  • 2冯端.金属物理学(第2卷)[M].北京:科学出版社,1989..
  • 3-.高温高压下石墨变金刚石的结构转化率[J].成都科技大学学报,1983,1:356-362.
  • 4-.固体物理学简明教程[M].北京:人民教育出版社,1978..
  • 5-.人造金刚石合成机理[M].成都:成都科技大学出版社,1986..
  • 6张克从.晶体生长[M].北京:科学出版社,1983.596—605.
  • 7沈主同.人造金刚石晶体生长机制的探讨[J].物理,1977,6(4):243-250.
  • 8[5]李志宏,等.把脉金刚石工业[N].中国建材报.2001-01-01.
  • 9PALAFNIK L S, GLADKIKH L I. The Properties of Diamond [M]. New York: Academic Press, 1979, 494--499.
  • 10STRONG H M, HANNEMAN R E. Crystallization of diamond and graphite[Jl. J Chem Phys,. 1967,46(9):3 668--3 676.

共引文献40

同被引文献56

引证文献7

二级引证文献15

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部