首页> 外文期刊>Journal of Thermal Spray Technology >Dry Sliding Behavior of Sub-Micrometer-Sized Suspension Plasma Sprayed Ceramic Oxide Coatings
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Dry Sliding Behavior of Sub-Micrometer-Sized Suspension Plasma Sprayed Ceramic Oxide Coatings

机译:亚微米级等离子喷涂陶瓷氧化物涂层的干滑行为

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摘要

Almost half of the energy produced by an automotive engine is dissipated by friction in the cylinders, the clutch, etc. In the context of reduction of the emissions of greenhouse gases (GHGs) to mitigate climate global warming (CGW), reduction of energy losses due to friction is a critical issue. Surface treatments appear in such a context, as never than before, to be able to provide pertinent solutions to improve sliding behavior of mechanical parts. Numerous studies have clearly shown that decreasing the scale of coating structure below the micrometer scale was leading to an improvement of its tribological behavior in terms of friction coefficient and wear rate thanks to improved mechanical properties, the toughness in particular. Suspension Plasma Spraying (SPS) appears as a thermal spray process to be able to manufacture thick (i.e., a few tens of micrometers) coatings exhibiting a sub-micrometer-sized or even a nanometer-sized architecture, while keeping the versatility and flexibility of the thermal spray routes: i.e., the ability to process a wide range of material natures onto a wide range of substrate materials of various geometries. This article aims at studying the tribological behavior of several ceramic oxide composite coatings under dry conditions. The structural scale and the effect of composition are considered in particular.
机译:汽车发动机产生的能量几乎有一半是通过气缸,离合器等的摩擦耗散的。在减少温室气体(GHG)排放以缓解全球气候变暖(CGW)的背景下,减少了能源损失由于摩擦是一个关键问题。在这种情况下,表面处理从未像现在这样出现过,它能够提供相关的解决方案来改善机械零件的滑动性能。大量研究清楚地表明,由于改善了机械性能,特别是韧性,将涂层结构的尺寸减小到微米级以下导致摩擦系数和磨损率方面的摩擦性能得到改善。悬浮等离子喷涂(SPS)作为一种热喷涂工艺出现,能够制造具有亚微米级甚至纳米级结构的厚涂层(即几十微米),同时又保持了涂层的多功能性和灵活性。热喷涂路线:即能够将各种材料性质处理到各种几何形状的各种基材上的能力。本文旨在研究几种陶瓷氧化物复合涂层在干燥条件下的摩擦学行为。特别要考虑结构规模和组成的影响。

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