software application, marketing and other aspects of the work, also can take part in teaching and research work in Colleges and universities or scientific research departments.
今后的学位论文方向:
The direction of dissertation in the future
我的研究方向是超硬纳微米PVD薄膜的应用研究,PVD是物理气相沉积(Physical Vapor Deposition)的英文缩写,它是一种在真空条件下采用物理方法,将固体或液体材料表面气化成气态原子、分子或部分电离成离子,并通过低压气体(或等离子体)过程,在基体表面沉积具有某种特殊功能薄膜的技术。物理气相沉积的方法包括真空蒸镀、溅射镀膜、电弧等离子体镀、离子镀、电子束蒸镀及分子外延等。物理气相沉积的不仅可以沉积金属膜、合金膜,还可以沉积化合物、陶瓷、半导体、聚合物膜等,是具有广泛应用前景的新材料制造技术。采用此技术制备的超硬薄膜不仅具有超高硬度,且超薄、耐高温、无污染、几乎零排放,适合于工具、零件和摩擦磨损件表面的耐磨损、抗氧化、防腐蚀、自润滑等特殊性能要求,是现代表面工程技术中最具有发展前途和应用价值的一种技术。
My research is superhard nano-micron PVD films applied research , PVD is the abbreviation of physical vapor deposition , it is a physical method used in the condition of vacuum , the surface of the solid or liquid material vaporized into gas atoms, molecules or parts of ionized into a plasma , and through the low pressure gas ( or plasma ) process , depositing on the substrate surface with a thin film for special functions . Physical vapor deposition methods include vacuum deposition , sputtering , arc plasma plating, ion plating, electron beam evaporation and molecular epitaxy . Not only can the metal or alloy film be deposited, many materials like compounds, ceramics, semiconductor, polymer film can also be deposited,it is a new material with wide application prospect in manufacturing technology. The superhard film made by this technology not only has high hardness, and ultrathin, high temperature resistance, no pollution, almost zero emissions, it is suitable for tools, spare parts and abrasion resistance, anti-oxidation, anti-corrosion, self lubrication of the surface of friction and wear and other special properties, it is a technology
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