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首页> 外文期刊>Surface & Coatings Technology >Surface modification on 304 SS by plasma-immersed ion implantation to improve the adherence of a CVD diamond film
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Surface modification on 304 SS by plasma-immersed ion implantation to improve the adherence of a CVD diamond film

机译:通过等离子浸入式离子注入对304 SS进行表面改性,以提高CVD金刚石膜的附着力

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摘要

The weak adherence of chemical vapor deposited (CVD) diamond films on steel substrates is an important factor that limits the technological applications of these materials. We are interested in enhancing the film-to-substrate adherence by usingsubstrate surfaces with a previous modification by plasma-immersed ion implantation (PIII). In this work we present and discuss the preliminary results on phase formation, microstructure and adherence evaluations. CVD diamond films were deposited on 304SS, the surface of which was modified by implanted carbon ions. The samples were first submitted to implantation with 30 keV carbon ions at different doses. Later, these surfaces were examined by Auger spectroscopy (SAM), scanning electron microscopy(SEM) and X-ray diffraction. We observed a metastable carbide phase formed from carbon and iron, which is considered to be a good polycrystalline material for the nucleation of CVD diamond crystals. The CVD diamond nucleation and film growth were observed by SEM and Raman spectroscopy. These results are discussed with the emphasis on the carbon diffusion barrier on the substrate surfaces. The preliminary results of diamond growth were encouraging.
机译:化学气相沉积(CVD)金刚石薄膜在钢基材上的弱附着力是限制这些材料的技术应用的重要因素。我们对通过使用预先经过等离子浸入式离子注入(PIII)修饰的基板表面来增强膜与基板之间的粘附性感兴趣。在这项工作中,我们介绍并讨论了相形成,微观结构和附着力评估的初步结果。 CVD金刚石膜沉积在304SS上,其表面已通过注入的碳离子改性。首先将样品以不同剂量植入30 keV碳离子。随后,通过俄歇光谱(SAM),扫描电子显微镜(SEM)和X射线衍射检查这些表面。我们观察到由碳和铁形成的亚稳态碳化物相,被认为是用于CVD金刚石晶体成核的良好多晶材料。通过SEM和拉曼光谱观察到CVD金刚石成核和膜生长。重点讨论了基板表面的碳扩散阻挡层,讨论了这些结果。钻石增长的初步结果令人鼓舞。

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