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Development and characterization of low friction coatings for protection against fretting wear in aerospace components

机译:低摩擦涂层的开发和特性,可防止航空航天部件的微动磨损

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摘要

Fretting, in the form of wear and fatigue in contacting components, is a potential damage mode in assemblies that needs to be resisted and minimised by design, and quantified for the purposes of predicting safe life and hence inspection intervals. Fretting damage incorporates cotemporaneous and competing processes of material removal by wear, and fatigue crack initiation. In modern practice low friction coatings are widely used to control fretting damage to components. Two types of low friction coatings were considered in the present study, conventional thermally sprayed dry film lubricant (DFL) coatings, and novel solid coatings deposited using a mechano-chemical route. The study focused on the evolution of two principal parameters characterising the performance of low friction coatings, namely, the coefficient of friction (COF) and the remanent relative thickness (RT). In the present paper we describe the procedures used for performing fretting wear tests on coated systems, and for the characterisation of coefficient of friction and relative thickness evolution in low friction coatings during fretting wear. Results offer improved insight into the progression of fretting wear in coated systems.
机译:接触部件的磨损和疲劳形式的微动磨损是组件中潜在的损坏模式,需要通过设计加以抵制和最小化,并且为了预测安全寿命以及因此而确定检查间隔,应对其进行量化。微动损伤包括同时期和竞争性的通过磨损去除材料和引发疲劳裂纹的过程。在现代实践中,低摩擦涂料被广泛用于控制部件的微动损伤。在本研究中考虑了两种类型的低摩擦涂料:常规的热喷涂干膜润滑剂(DFL)涂料和使用机械化学途径沉积的新型固体涂料。该研究集中于表征低摩擦涂层性能的两个主要参数的演变,即摩擦系数(COF)和剩余相对厚度(RT)。在本文中,我们描述了用于在涂层系统上进行微动磨损测试的程序,以及在微动磨损过程中表征低摩擦涂层中的摩擦系数和相对厚度演变的程序。结果可以更好地了解涂层系统中微动磨损的进展。

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