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Gas Jet Deposition of Diamond onto a Steel Surface Covered by a Tungsten Carbide or Molybdenum Layer
Journal of Applied Mechanics and Technical Physics ( IF 0.5 ) Pub Date : 2019-11-01 , DOI: 10.1134/s0021894419060130
A. K. Rebrov , I. S. Batraev , T. T. B’yadovskii , E. V. Gladkikh , A. S. Useinov , M. N. Khomyakov

Results of studying the growth of diamond structures on steel specimens with the use of intermediate layers of molybdenum or tungsten carbide cemented by cobalt are reported. The interlayers are deposited by means of detonation spraying. Subsequent deposition of diamond films onto the clad steel specimens is formed by the gas jet method and a special thermocatalytic reactor with extended activating surfaces. The nucleation process on the interlayer surfaces is intensified by preliminary seeding of the specimens in a colloid solution containing nanodiamonds. Information about the phase and structural composition of the resultant specimens and about the film surface morphology is obtained by scanning electron microscopy, Raman spectroscopy, and X-ray diffraction analysis. The tribology of the specimens is studied with the use of hardness nansensors and by the Rockwell hardness indentation method.

中文翻译:

金刚石在碳化钨或钼层覆盖的钢表面上的气体喷射沉积

报告了使用由钴胶结的钼或碳化钨中间层研究钢试样上金刚石结构生长的结果。中间层通过爆炸喷涂沉积。随后通过气体喷射法和具有扩展活化表面的特殊热催化反应器在复合钢样品上沉积金刚石膜。通过在含有纳米金刚石的胶体溶液中预先接种样品,加强了夹层表面上的成核过程。通过扫描电子显微镜、拉曼光谱和 X 射线衍射分析获得关于所得样品的相和结构组成以及薄膜表面形态的信息。
更新日期:2019-11-01
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