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

机译:表面纹理 - 等离子体氮化双相处理,提高AISI 316不锈钢的摩擦学性能

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摘要

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 Si 3 N 4 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.
机译:表面纹理 - 等离子体氮化双相处理在AISI 316不锈钢上进行,以改善其摩擦学性能。使用销钉研究了地面316基板,等离子体氮化316(PN-316),表面纹理316(PN-316),表面纹理316(ST-316)和双面处理的316(DT-316)和在润滑脂润滑下进行了处理-DISC旋转摩擦计对抗高碳铬轴承钢GCR15和氮化硅Si 3 N 4球的对应物。系统地研究和分析了测试样品的摩擦系数,质量损失和磨损跟踪形态的变化并分析。结果表明,在15wt%NaCl溶液中电化学加工后316形成纹理表面。在纹理的表面上发现了凹槽和凹坑。随着等离子体氮化在316衬底上进行,在316基板和ST-316的表面上成功地制造了连续和均匀的氮化层。所获得的氮化层的两个呈现大于30μm的厚度值。氮化层由铁氮化物和氮化铬组成。在等离子体氮气之后,316基板和ST-316接收到改善的表面硬度。当在干滑动和润滑脂润滑条件下进行摩擦学试验时,测试样品显示出不同的摩擦学行为。正如预期的那样,DT-316样品揭示了最有前景的摩擦学特性,由最低质量损失和磨损的形态反映。 DT-316接受了最轻微的损害,其优异的摩擦学性能归因于以下方面:首先,氮化层具有高表面硬度;其次,表面纹理能够捕获磨损碎片,储存润滑脂,然后提供连续润滑。

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