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Improvement of friction and wear performance of titanium nitride films by chlorine ion implantation

机译:氯离子注入改善氮化钛薄膜的摩擦磨损性能

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TiN films were prepared on high speed tool steel substrates by means of hollow cathode discharge ion plating, and were implanted with chlorine ions at doses from 1 × 10{sup}20 to 1 × 10{sup}21 m{sup}(-2) to improve tribological properties. Friction and wear tests were carried out on a pin-on-disk tribometer with type 304 stainless steel ball as the counter material. The structure of the surface layers modified by ion implantation was characterized by X-ray diffraction analysis (XRD). X-ray photoelectron spectroscopy (XPS) was used to analyze the chemical bonding states and the depth distribution of elements in surface layers of TiN films. Surface observation and chemical composition analysis of the wear track were also carried out by scanning electron microscope (SEM) and energy dispersive X-ray spectroscopy (EDX), respectively. The chlorine ion implantation significantly reduced the friction coefficient of the TiN films against the stainless steel balls. The wear mode has drastically changed from adhesive wear to abrasive wear by this Cl-implantation to the TiN film. With increasing Cl dose, not only the friction coefficient but also the wear volume of the stainless steel balls were reduced. This implies that the implanted chlorine prevents the adhesion of the counter material, resulting in the significant reduction of the friction coefficient.
机译:通过中空阴极放电离子镀在高速工具钢基底上制备TiN膜,并以1×10 {sup} 20到1×10 {sup} 21 m {sup}(-2 )以改善摩擦性能。在销盘式摩擦计上以304型不锈钢球作为配合材料进行了摩擦和磨损测试。通过X射线衍射分析(XRD)表征通过离子注入改性的表面层的结构。利用X射线光电子能谱(XPS)分析了TiN薄膜表面层中化学键合态和元素的深度分布。磨损轨迹的表面观察和化学成分分析也分别通过扫描电子显微镜(SEM)和能量色散X射线光谱仪(EDX)进行。氯离子注入大大降低了TiN膜对不锈钢球的摩擦系数。通过将Cl注入到TiN膜中,磨损方式已从粘合剂磨损变为磨料磨损。随着Cl剂量的增加,不仅不锈钢球的摩擦系数减小,而且磨损量也减小。这意味着注入的氯会阻止对置材料的粘附,从而导致摩擦系数的显着降低。

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