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Multilayered carbon film s for tribological applications

机译:摩擦学应用的多层碳膜

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Recent work has shown that for nano-layered structures consisting of two materials, an effect may be shown in which the elastic modulus and fracture toughness depend on the period of the period of the structure. In this paper we create carbon multilayer structures by two methods using cathodic arc deposition with pulsed bias applied to the substrates. The multilayers are created in one class of structures simply by interrupting the deposition to form related layers. In the other class of structure, the pulse bias conditions are varied periodically. The in-service performance of the structure is assessed by impact-enhanced pin-on-disc wear testing and indentation hardness. The structures are examined using bright field and dark field transmission electron microscopy. A 10 nm non-convergent electrode probe was used for the micro-diffraction studies. A model for the structure of the interfaces between the relaxed layes and the as-deposited material, including evidence of preferred orientation is presented.
机译:最近的工作表明,对于由两种材料组成的纳米层结构,可以显示出一种效果,其中弹性模量和断裂韧性取决于结构周期的周期。在本文中,我们通过两种方法使用阴极电弧沉积和向基板施加脉冲偏压来创建碳多层结构。只需中断沉积以形成相关层,即可在一类结构中创建多层。在另一类结构中,脉冲偏置条件是周期性变化的。该结构的在役性能是通过冲击增强的销盘磨损测试和压痕硬度来评估的。使用明场和暗场透射电子显微镜检查结构。 10 nm非会聚电极探针用于微衍射研究。提出了松弛层和沉积材料之间界面结构的模型,其中包括优选取向的证据。

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