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首页> 外文期刊>Tribology International >Contact size, frequency and cyclic normal force effects on Ti-6Al-4V fretting wear processes: An approach combining friction power and contact oxygenation
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Contact size, frequency and cyclic normal force effects on Ti-6Al-4V fretting wear processes: An approach combining friction power and contact oxygenation

机译:接触尺寸,频率和循环正常力效应TI-6AL-4V微动磨损工艺:一种结合摩擦力和接触氧合的方法

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摘要

We present fretting wear analysis of a dry Ti-6A1-4V cylinder/plane contact, investigating sliding frequency, contact size, and cyclic normal force effects. The investigation showed that easy contact oxygenation promoted by low contact pressure, low frequency, small contact size and varying normal force favored a U-shape fretting scar morphology and high abrasive wear rates. By contrast, increasing contact pressure, frequency and contact size by reducing the contact oxygenation in the center of the contact promoted adhesive metal/metal interactions, transfers and TTS structures. This induced a W-shape fretting scar and lower wear rates. XPS analyses confirmed this description, highlighting Ti-nitriding processes in the under-oxygenated Ti transfers. A friction energy power density approach is introduced to predict wear rate and the U-to-W shape transition.
机译:我们对一个干燥的Ti-6A1-4V圆柱/平面接触进行微动磨损分析,研究滑动频率、接触尺寸和循环法向力效应。研究表明,低接触压力、低频率、小接触尺寸和不同法向力促进的易接触氧化有利于U形微动疤痕形貌和高磨料磨损率。相比之下,通过减少接触中心的接触氧化作用,增加接触压力、频率和接触尺寸,促进了粘附金属/金属相互作用、转移和TTS结构。这导致了W形微动疤痕和较低的磨损率。XPS分析证实了这一描述,突出了欠氧化Ti转移中的Ti氮化过程。采用摩擦能量功率密度法预测磨损率和U-W形转变。

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