首页> 外文期刊>Journal of Tribology >Effect of Surface Nanocrystallization Pretreatment on the Tribological Properties of Plasma Nitrided AISI 316 L Stainless Steel Under Boundary Lubrication
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Effect of Surface Nanocrystallization Pretreatment on the Tribological Properties of Plasma Nitrided AISI 316 L Stainless Steel Under Boundary Lubrication

机译:表面纳米晶体化预处理对边界润滑下血浆氮化AISI 316 L不锈钢摩擦学性能的影响

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摘要

It has been proved that surface nanocrstallization pretreatment is beneficial to plasma nitriding of steel by enhancing nitrogen diffusion, while the tribological properties of the nitrided nanostructured steel under boundary lubrication are not clear. In this work, AISI 316 L stainless steel with and without ultrasonic cold forging technology (UCFT) pretreatment was plasma nitrided at 500 degrees C for 4 h. The effects of UCFT pretreatment on the microstructure and properties of the nitrided layer and the tribochemical interactions between the nitrided layer and friction modifier molybdenum dithiocarbamate (MoDTC) and antiwear additive zinc dialkyldithio-phosphate (ZDDP) were investigated using SRV tribometer, scanning electron microscopy (SEM), vickers hardness tester, optical microscope, X-ray diffraction, and X-ray photoelectron spectroscopy (XPS). Surface analyses confirm the formation of a 20 mu m thick nitrided layer on the UCFT-pretreated sample and it had higher hardness than that on the unpretreated sample. Furthermore, the nitrided UCFT-pretreated sample presented better synergetic effect with MoDTC and ZDDP on tribological behaviors than the nitrided unpretreated sample. This is attributed to the higher contents of Mo, S, Zn, P, and MoS2/MoO3 ratio in the tribofilms on the nitrided UCFT-pretreated sample.
机译:已经证明,通过增强氮气扩散,表面纳米粥预制预处理是有益于钢等离子体氮化,而边界润滑下的氮化纳米结构钢的摩擦学特性尚不清楚。在这项工作中,AISI 316 L具有和不具有超声波锻造技术(UCFT)预处理的不锈钢是血浆氮化为500℃,4小时。采用SRV摩擦计,扫描电子显微镜(扫描电子显微镜( SEM),维氏硬度测试仪,光学显微镜,X射线衍射和X射线光电子谱(XPS)。表面分析证实在UCFT预处理样品上形成了20μm厚的氮化层,并且它具有比未普通样品更高的硬度。此外,氮化的Ucft-PreatReated样品对Modtc和ZDDP呈现出比摩擦学行为的更好的协同作用,而不是氮化未经普通的样品。这归因于氮化UCFT预处理样品上的呋喃霉菌中的Mo,S,Zn,P和MOS2 / MOO3比例的较高含量。

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