首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >A global-local wear approach to quantify the contact endurance under reciprocating-fretting sliding conditions
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A global-local wear approach to quantify the contact endurance under reciprocating-fretting sliding conditions

机译:一种全局局部磨损方法,用于量化往复微动滑动条件下的接触耐久性

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摘要

An Archard wear formalism is considered and adapted to formalize the abrasive wear responses of hard coating interfaces against an alumina ball under oscillating sliding conditions. Archard wear coefficients are defined and compared versus the respective coating hardnesses. It is shown that for the Ti-V-C system a near linear decrease of the wear rate versus the hardness can be defined. By contrast, the Ti-V-N system promotes significant debris transfer onto the alumina counterbody. The previous two-body abrasion process is then replaced by a three-body abrasion mechanism which significantly modifies the damage phenomena. The coating hardness-wear rate correlation is therefore no longer verified. It is moreover shown that a local approach, focusing on wear depth analysis, is required to predict interface durability. A FEM investigation integrating the wear surface extension demonstrates that the wear depth kinetics can be predicted by considering the accumulated Archard factor density. Simplified analytical formulations are then introduced to generalise this local analysis. Justifying the global-local application of the Archard wear approach, it suggests that interface durability can be related to a single Archard capacity variable (φ) defined as the maximum accumulated Archard factor density which can be dissipated in the interface before contact failure.
机译:考虑到阿卡德磨损形式,并使其在振荡滑动条件下形式化硬涂层界面对氧化铝球的磨料磨损响应。定义了阿卡德磨损系数,并将其与相应的涂层硬度进行比较。结果表明,对于Ti-V-C系统,可以确定磨损率与硬度的近似线性下降。相比之下,Ti-V-N系统可将大量碎屑转移到氧化铝配体上。然后,将之前的两体磨损过程替换为三体磨损机制,从而显着改善了损坏现象。因此,涂层硬度与磨损率的相关性不再得到验证。此外,还表明需要采用一种集中于磨损深度分析的局部方法来预测界面耐久性。结合磨损表面延伸的有限元分析表明,可以通过考虑累积的阿卡德因子密度来预测磨损深度动力学。然后引入简化的分析公式来概括该局部分析。证明了Archard磨损方法的全球本地应用是合理的,它表明界面耐久性可以与定义为最大累积Archard因子密度的单个Archard容量变量(φ)有关,该变量可以在接触失效之前消散在界面中。

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