• Coating by physical vapour deposition (PVD), coating by chemical vapour deposition (CVD) and surface layer modification by ion implantation, all three are being tested and are partly in use.

    涂层化学沉积(CVD)表面层改性物理气相沉积(PVD)涂层的离子注入所有三个正在受到考验,并部分使用。

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  • There are a lot of methods in producing films, including CVD, PVD and some other special methods.

    薄膜制备方法包含很多,主要化学气相沉积,物理气相沉积其他一些独特的制备方法。

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  • There are many techniques for fabricating ceramic films such as PVD, CVD, high-temperature sintering and sol-gel method.

    陶瓷薄膜制备技术多种多样,物理气相沉积、化学气相沉积、高温烧结溶胶-凝胶”等。

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  • Principles of microwave ECR plasma technology are introduced briefly. Present development of it'S research and applications in system manufacturing, CVD, PVD and etching is reviewed.

    本文简要介绍微波ECR等离子体技术原理,评述了近年来这种技术CVDPVD刻蚀等方面研究应用进展

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  • Between the CVD and PVD, the tools coated with PVD have better quality and higher resistance to wear than the CVD.

    化学蒸汽涂层(CVD)物理蒸汽涂层(PVD)两种涂层刀具中,后者的品质耐磨性优于前者

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  • The developing status of cutting tool coating technology in home and abroad is summarized. And the features of CVD and PVD coating technology are analyzed.

    综述国内外切削刀具涂层技术现状,展望了涂层技术的发展前景,分析了CVDPVD工艺各自具备的优点和不足。

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  • The performance of polycrystalline material manufactured by using Hot-pressed forming method, PVD and CVD is becoming perfect and has replaced monocrystalline material in some fields.

    热压P VDCVD制备多晶材料日趋完善一些领域取代单晶材料。

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  • Contrasting to the PVD coating in the "line of sight", the CVD can coat all surfaces of the substrate.

    与物理蒸发沉淀可见范围对比,化学蒸发沉淀将基体所有表面都覆盖。

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  • Sol-gel technology is an appealing preparation method. Using the method, fine and high purity powder can be prepared, higher binding force than CVD and PVD coatings can be achieved.

    溶胶-凝胶法一种有发展潜力制备方法采用溶胶-凝胶可获得纯度、粒度的优质硬质合金粉末,可解决传统的CVDPVD等涂层结合力的问题。

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  • Sol-gel technology is an appealing preparation method. Using the method, fine and high purity powder can be prepared, higher binding force than CVD and PVD coatings can be achieved.

    溶胶-凝胶法一种有发展潜力制备方法采用溶胶-凝胶可获得纯度、粒度的优质硬质合金粉末,可解决传统的CVDPVD等涂层结合力的问题。

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