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Superlow friction of diamond-like carbon films: a relation to viscoplastic properties

机译:类金刚石碳膜的超低摩擦力:与粘塑性的关系

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摘要

Composition, structure, electrical, optical, mechanical properties and tribological behavior of diamond-like carbon films (DLC) are strongly dependent on the deposition system. Some hydrogenated amorphous carbon films (a-C:H) may exhibit super low friction properties in ultra-high vacuum (UHV). The present paper compares tribological and mechanical properties of several DLC films prepared under different conditions. Friction coefficients were measured in an analytical ultra-high vacuum tribometer. The mechanical properties were evaluated from force-displacement curves using a nanoindentation instrument. Making use of continuous stiffness mode, Young's modulus and hardness were determined as a function of indentation depth. The measurements were performed at constant strain rates by special control of the load during indentation. We were, thus, able to determine the dependence of hardness on strain rate, characterizing a viscoplastic behavior. Many of the hydrogenated amorphous carbon films studied were significantly viscoplastic. The aim of this paper is to highlight the correlation between superlow friction and viscoplastic behavior.
机译:类金刚石碳膜(DLC)的组成,结构,电,光学,机械性能和摩擦学性能在很大程度上取决于沉积系统。一些氢化非晶碳膜(a-C:H)在超高真空(UHV)中可能表现出超低摩擦性能。本文比较了几种在不同条件下制备的DLC薄膜的摩擦学和力学性能。在分析型超高真空摩擦计中测量摩擦系数。使用纳米压痕仪从力-位移曲线评估机械性能。利用连续刚度模式,确定杨氏模量和硬度作为压痕深度的函数。通过压痕过程中载荷的特殊控制,以恒定的应变率进行测量。因此,我们能够确定硬度对应变率的依赖性,表征了粘塑性行为。研究的许多氢化非晶碳薄膜具有明显的粘塑性。本文的目的是强调超低摩擦与粘塑性行为之间的相关性。

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