首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Tribological properties and wear mechanisms of DC pulse plasma nitrided austenitic stainless steel in dry reciprocating sliding tests
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Tribological properties and wear mechanisms of DC pulse plasma nitrided austenitic stainless steel in dry reciprocating sliding tests

机译:DC脉冲等离子体氮化奥氏体不锈钢在干燥往复式滑动试验中的摩擦学特性及磨损机理

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Expanded austenite (gamma N), or S-phase, is a special phase of low-temperature nitrided austenite containing highly super-saturated nitrogen in the form of heterogeneous Cr-N nano-clusters. A nitrided layer of singe phase gamma N is known to provide austenitic stainless steel with combined high hardness, good wear resistance and superior corrosion resistance. This paper reports recent experiments on a comparative study of the sliding wear properties and wear mechanisms of nitrided austenite stainless steel AISI 316, with a special attention paid on worn surface structural evolutions induced by frictional heating and sliding deformation. The samples were prepared by DC pulsed plasma nitriding treatments of various time at a fixed power. Knoop micro-indentation has revealed hardening behaviour of the nitrided samples. The reciprocating ball-on-disc sliding wear and friction properties were investigated at ambient environment conditions using an alumina counterpart ball. The worn surfaces have been analysed by XRD, FEG-SEM and EDX to show wear induced changes in the crystalline characteristics and the wear mechanisms of tribo-oxidation, cracking, abrasive wear and ploughing deformation. Moreover, longitudinal cross-sectional foils of the worn samples have been prepared and analysed using TEM, to investigate the wear induced structural changes, including tribofilm formation, plastic deformation and delamination in depths of nano-scale. (C) 2016 Elsevier B.V. All rights reserved.
机译:扩增的奥氏体(γN)或S相是含有高度超饱和氮的低温氮奥氏体的特殊阶段,以非均相CR-N纳米簇的形式。已知一种单相伽马N的氮化层,可提供奥氏体不锈钢,具有良好的高硬度,良好的耐磨性和卓越的耐腐蚀性。本文报告了最近关于氮化奥氏体不锈钢AISI 316的滑动磨损性能和磨损机制的比较研究的实验,采用摩擦加热和滑动变形引起的磨损表面结构进化的特别关注。通过DC脉冲等离子体氮化处理在固定功率下进行各种时间的氮化处理来制备样品。 Knoop微压痕揭示了氮化样品的硬化行为。使用氧化铝对手球在环境环境条件下研究往复球盘滑动磨损和摩擦性能。 XRD,FEG-SEM和EDX分析了破旧的表面,以显示磨损诱导的晶体特性变化和摩擦氧化,开裂,磨料磨损和耕作变形的磨损机制。此外,已经使用TEM制备和分析了覆盖样品的纵向横截面箔,以研究耐磨诱导的结构变化,包括纳米级深度的呋喃木形成,塑性变形和分层。 (c)2016年Elsevier B.v.保留所有权利。

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