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表面纹理化-等离子体氮化复合处理改善AISI 316不锈钢的摩擦学性能

Surface Texturing-Plasma Nitriding Duplex Treatment for Improving Tribological Performance of AISI 316 Stainless Steel.

作者信息

Lin Naiming, Liu Qiang, Zou Jiaojuan, Guo Junwen, Li Dali, Yuan Shuo, Ma Yong, Wang Zhenxia, Wang Zhihua, Tang Bin

机构信息

Research Institute of Surface Engineering, Taiyuan University of Technology, Taiyuan 030024, Shanxi, China.

Shanxi Key Laboratory of Material Strength and Structure Impact, Taiyuan University of Technology, Taiyuan 030024, Shanxi, China.

出版信息

Materials (Basel). 2016 Oct 27;9(11):875. doi: 10.3390/ma9110875.

Abstract

Surface texturing-plasma nitriding duplex treatment was conducted on AISI 316 stainless steel to improve its tribological performance. Tribological behaviors of ground 316 substrates, plasma-nitrided 316 (PN-316), surface-textured 316 (ST-316), and duplex-treated 316 (DT-316) in air and under grease lubrication were investigated using a pin-on-disc rotary tribometer against counterparts of high carbon chromium bearing steel GCr15 and silicon nitride Si₃N₄ balls. The variations in friction coefficient, mass loss, and worn trace morphology of the tested samples were systemically investigated and analyzed. The results showed that a textured surface was formed on 316 after electrochemical processing in a 15 wt % NaCl solution. Grooves and dimples were found on the textured surface. As plasma nitriding was conducted on a 316 substrate and ST-316, continuous and uniform nitriding layers were successfully fabricated on the surfaces of the 316 substrate and ST-316. Both of the obtained nitriding layers presented thickness values of more than 30 μm. The nitriding layers were composed of iron nitrides and chromium nitride. The 316 substrate and ST-316 received improved surface hardness after plasma nitriding. When the tribological tests were carried out under dry sliding and grease lubrication conditions, the tested samples showed different tribological behaviors. As expected, the DT-316 samples revealed the most promising tribological properties, reflected by the lowest mass loss and worn morphologies. The DT-316 received the slightest damage, and its excellent tribological performance was attributed to the following aspects: firstly, the nitriding layer had high surface hardness; secondly, the surface texture was able to capture wear debris, store up grease, and then provide continuous lubrication.

摘要

对AISI 316不锈钢进行了表面织构-等离子体氮化复合处理,以提高其摩擦学性能。使用销盘式旋转摩擦磨损试验机,以高碳铬轴承钢GCr15和氮化硅Si₃N₄球作为对偶,研究了研磨后的316基体、等离子体氮化316(PN-316)、表面织构316(ST-316)和复合处理316(DT-316)在空气和油脂润滑条件下的摩擦学行为。系统地研究和分析了测试样品的摩擦系数、质量损失和磨损轨迹形态的变化。结果表明,316在15 wt% NaCl溶液中进行电化学处理后形成了织构表面。在织构表面发现了沟槽和凹坑。当对316基体和ST-316进行等离子体氮化时,在316基体和ST-316表面成功制备了连续且均匀的氮化层。所获得的氮化层厚度均超过30μm。氮化层由铁氮化物和铬氮化物组成。等离子体氮化后,316基体和ST-316的表面硬度得到提高。当在干滑动和油脂润滑条件下进行摩擦学测试时,测试样品表现出不同的摩擦学行为。正如预期的那样,DT-316样品表现出最优异的摩擦学性能,表现为最低的质量损失和磨损形态。DT-316的损伤最小,其优异的摩擦学性能归因于以下几个方面:首先,氮化层具有较高的表面硬度;其次,表面织构能够捕获磨损颗粒、储存油脂,进而提供持续润滑。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/94af/5457215/6c9de4553e8e/materials-09-00875-g031a.jpg

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