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Tribological properties of multilayer DLC/W-DLC films on Si

机译:Si上多层DLC / W-DLC薄膜的摩擦学性能

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Multilayer films of diamond-like carbon (DLC) and tungsten-containing diamond-like carbon (W-DLC) films were deposited onto silicon wafers using radio frequency chemical vapor deposition (RFCVD) and a magnetron sputtering method. The W-DLC layer was deposited on the silicon wafer with less than 60 W magnetron output. The DLC layer was then deposited on the W-DLC layer. Surface morphology was investigated by atomic force microscopy and the film structure by transmission electron microscopy. Friction tests for multilayered films were performed in a nitrogen atmosphere at room temperature using a ball-on-disk tribometer. A conventional stainless steel ball was used for the test.The surface profiles seen by atomic force microscopy showed that round-shaped clusters of around 100 nm were observed in just the single W-DLC layer. These clusters were considered to be tungsten or tungsten-carbon composites. In the case of the DLC/W-DLC multilayered structure, the top DLC layer covered the W-DLC single layer and smoothed the surface of the W-DLC film.Friction tests demonstrated that the friction coefficient of the W-DLC single layer was above 0.6 and increased gradually as the number of cycle increased. The W-DLC films partially broke down during our measurements. However the DLC/W-DLC multilayer films showed stable friction properties and were observed for up to 100,000 cycles. Their friction coefficient was typically less than 0.1 at 10 cm/s rotating speed. The DLC/W-DLC multilayer films exhibited stable low friction properties in a long term test under a nitrogen atmosphere.
机译:使用射频化学气相沉积(RFCVD)和磁控溅射方法将类金刚石碳(DLC)和含钨类金刚石碳(W-DLC)的多层膜沉积到硅片上。在少于60 W磁控管输出的硅晶片上沉积W-DLC层。然后将DLC层沉积在W-DLC层上。通过原子力显微镜研究表面形态,并通过透射电子显微镜研究膜结​​构。多层膜的摩擦试验是在室温下在氮气气氛中使用圆盘摩擦计进行的。测试使用常规不锈钢球。原子力显微镜观察到的表面轮廓表明,仅在单个W-DLC层中观察到了约100 nm的圆形簇。这些团簇被认为是钨或钨碳复合材料。在DLC / W-DLC多层结构的情况下,顶层DLC层覆盖W-DLC单层并平滑W-DLC膜的表面。摩擦试验表明W-DLC单层的摩擦系数为大于0.6,并随着周期数的增加而逐渐增加。在我们的测量过程中,W-DLC膜部分破裂。但是,DLC / W-DLC多层膜显示出稳定的摩擦性能,并观察到多达100,000个循环。在10 cm / s的转速下,它们的摩擦系数通常小于0.1。 DLC / W-DLC多层膜在氮气气氛下的长期测试中表现出稳定的低摩擦性能。

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