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钛沉积工艺制备TiN/cBN和TiC/金钢石涂层颗粒(英文)
作者姓名:Walid M.DAOUSH  Hee S.PARK  Soon H.HONG
作者单位:Department of Production Technology, Faculty of Industrial Education, Helwan University,Cairo 11511-11668, Egypt;Institute of Industrial Technology, ILJIN Diamond Co., Ltd., Chungcheongbuk 369-824, Korea;Department of Materials Science and Engineering, Korea Advanced Institute of Science and Technology,Daejon 305-701, Korea
摘    要:用钛熔盐沉积及热处理工艺分别制备碳化钛涂覆的立方碳化硼颗粒(TiN/cBN)及碳化钛涂覆的金刚石颗粒(TiC/金刚石)。将cBN或金刚石颗粒分别与钛粉和KCl、NaCl和K2TiF6熔盐混合。将所得混合物在Ar气氛中加热至900°C,然后在H2气氛中于1000°C进行热处理。采用扫描电镜、X射线衍射和聚焦离子束技术对所制得颗粒进行表征。结果表明:cBN和金刚石颗粒表面已覆盖了纳米钛层。对Ti/cBN和TiC/金刚石涂层颗粒进行热处理后,颗粒表面沉积的Ti层与cBN和金刚石颗粒发生了原位化学反应,分别转化为钛化合物TiN和TiC。

关 键 词:熔盐反应    沉积  立方氮化硼  金刚石  涂层  TiN  TiC
收稿时间:19 November 2013

Fabrication of TiN/cBN and TiC/diamond coated particles by titanium deposition process
Walid M.DAOUSH,Hee S.PARK,Soon H.HONG.Fabrication of TiN/cBN and TiC/diamond coated particles by titanium deposition process[J].Transactions of Nonferrous Metals Society of China,2014,24(11):3562-3570.
Authors:Walid MDAOUSH  Hee SPARK  Soon HHONG
Abstract:Cubic boron nitride particles coated by titanium nitride (TiN/cBN) as well as diamond particles coated by titanium carbide (TiC/diamond) were prepared by Ti molten salt deposition followed by heat-treatment process. cBN or diamond particles were mixed separately with Ti powders and molten salts (KCl, NaCl and K2TiF6). The mixture was heated at 900 °C under argon atmosphere. The produced particles were heat-treated under hydrogen at 1000 °C. The morphologies and chemical compositions of the produced particles were investigated by scanning electron microscopy (SEM), X-ray diffraction (XRD) and focused ion beam (FIB). The results show that the cBN and the diamond particles are coated by nano-sized Ti layers. By heat-treatment of the Ti/cBN and TiC/diamond coated particles under hydrogen atmosphere, the deposited Ti layers were interacted by the in-situ transformation reaction with the surfaces of cBN and diamond particles and converted to titanium compounds (TiN and TiC), respectively.
Keywords:molten salt reaction  titanium  deposition  cubic boron nitride  diamond  coating  TiN  TiC
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