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首页> 外文期刊>Journal of Materials Science >The effects of pre-implantation of steel substrates on the structural properties of TiN coatings
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The effects of pre-implantation of steel substrates on the structural properties of TiN coatings

机译:钢基底预植入对TiN涂层结构性能的影响

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We have studied the effects of nitrogen pre-implantation of AISI C1045 steel substrates on the microstructure and microhardness of deposited TiN coatings. The substrates were implanted at 40 keV, to the fluences from 5 x 10(16) to 5 x 10(17) ions/cm(2), which was followed by deposition of 1.3-mu m thick TiN coatings by reactive sputtering. Structural characterization of the samples was performed by standard and grazing incidence X-ray diffraction analysis, Rutherford backscattering spectroscopy and transmission electron microscopy. Microhardness was measured by the Vicker's method. Nitrogen implantation up to 2 x 10(17) ions/cm(2) induces the formation of Fe2N phase in the near surface region of the substrates, which becomes more pronounced for higher fluences. Microstructure of the deposited TiN coatings shows a strong dependence on ion beam pre-treatment of the substrates. The layers grown on non-implanted substrates have a (200) TiN preferential orientation, and those grown on implanted substrates have (111) TiN preferential orientation. The change in preferred orientation of the layers is assigned to a developed surface topography of the substrates induced by ion implantation, and possible effects of distorted and altered crystalline structure at the surface. Ion implantation and deposition of TiN coatings induce an increase of microhardness of this low performance steel for more than eight times.
机译:我们已经研究了AISI C1045钢基底的氮气预注入对沉积的TiN涂层的组织和显微硬度的影响。将基板以40 keV注入到5 x 10(16)到5 x 10(17)离子/ cm(2)的能量密度,然后通过反应溅射沉积1.3微米厚的TiN涂层。样品的结构表征通过标准和掠入射X射线衍射分析,卢瑟福背散射光谱法和透射电子显微镜进行。显微硬度通过维氏法测量。氮注入高达2 x 10(17)离子/ cm(2)时,会在基材的近表面区域中形成Fe2N相,这对于更高的注量而言更为明显。沉积的TiN涂层的微观结构显示出对基材离子束预处理的强烈依赖性。在非植入基板上生长的层具有(200)TiN优先取向,而在植入基板上生长的层具有(111)TiN优先取向。层的优选取向的变化被分配给由离子注入引起的基板的发展的表面形貌,以及在表面处扭曲和改变的晶体结构的可能影响。 TiN涂层的离子注入和沉积使这种低性能钢的显微硬度提高了八倍以上。

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