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Investigation of DLC-Si Film Deposited Inside a 304SS Pipe Using a Novel Hollow Cathode Plasma Immersion Ion Processing Method

机译:使用新型中空阴极等离子体浸没离子处理方法研究304SS管内的DLC-Si膜的研究

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A novel hollow cathode plasma immersion ion processing method is developed and used to deposit silicon containing diamond like carbon (DLC-Si) coatings inside a one foot long 304 stainless steel (304SS) pipe with 1.5 inch diameter and 0.065 inch wall thickness. A multilayer DLC-Si coating structure was deposited using a combination of carbon and silicon precursors starting with silicon-rich adhesion layer. Result shows that the interface between the substrate and adhesion layer contains silicon as well as substrate constituents. Within this interface, isolated crystalline structure embedded within amorphous matrix was present while deposited DLC-Si coating is amorphous. Data show that the layered DLC-Si coating structure not only improves the friction and wear performance of the internal surface of 304SS pipe but also improves the corrosion resistance. The hardness and modulus of the coating was measured at 19GPa and 138GPa, respectively. It is suggested that this new technology enables wide spread use of DLC based coatings to increase component life in applications where the internal surface of pipes are exposed to corrosive and abrasive environments especially in oil and gas industry.
机译:开发了一种新型中空阴极等离子体浸没离子处理方法,用于将含有金刚石(DLC-Si)涂层的含有金刚石(DLC-Si)涂层内的硅(DLC-Si)管内的硅沉积,具有1.5英寸直径和0.065英寸的壁厚。使用富含硅的粘合层的碳和硅前体的组合沉积多层DLC-Si涂层结构。结果表明,基板和粘合层之间的界面包含硅以及衬底成分。在该界面中,存在嵌入在非晶基质内的隔离结晶结构,同时沉积DLC-Si涂层是无定形的。数据显示,分层的DLC-Si涂层结构不仅可以提高304SS管道的内表面的摩擦和磨损性能,而且还提高了耐腐蚀性。涂层的硬度和模量分别在19GPa和138gPa下测量。建议这项新技术能够广泛地利用基于DLC基涂层,增加了诸如石油和天然气工业的管道内表面暴露于腐蚀性和磨料环境中的应用中的分量寿命。

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