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Microstructure and dry sliding wear resistance evaluation of plasma nitrided austenitic stainless steel type AISI 316LN against different sliders

机译:等离子渗氮奥氏体不锈钢AISI 316LN对不同滑块的显微组织和干滑耐磨性评估

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In this work, Plasma Nitriding was carried out at a temperature of 570°C on nuclear grade austenitic stainless steel type AISI 316 LN (316LN SS) in a gas mixture of 20% N _2-80% H _2 to improve the surface hardness and thereby sliding wear resistance. The Plasma Nitride (PN) treated surface has been characterized by Vickers microhardness measurements, Scanning Electron Microscopic (SEM) examination, X-ray Diffraction (XRD) and sliding wear assessment. The average thickness of the PN layer was found to be 70μm. Microhardness measurements showed a significant increase in the hardness from 210 HV ~(25)g (unnitrided sample) to 1040 HV _(25)g (Plasma Nitrided sample). The XRD reveals that PN layer consists of CrN, Fe _4N and Fe _3N phases along with austenite phase. The tribological parameters such as the friction coefficient and wear mechanism have been evaluated at ambient conditions for PN treated ring (PN ring) vs. ASTM A453 grade 660 pin (ASTM pin), PN ring vs. Nickel based alloy hard faced pin (Colmonoy pin), PN ring vs. 316LN SS pin and 316LN SS ring vs. 316LN SS pin. The wear tracks have been analyzed by SEM, Energy Dispersive X-ray Analysis (EDX) and Optical Profilometry. The untreated 316LN SS ring vs. 316LN SS pin produced severe wear and was characterized by a combination of delamination and adhesion wear mechanism, whereas wear mechanism of the PN rings reveals mild abrasion and a transfer layer from pin materials.
机译:在这项工作中,在570°C的温度下,在20%N _2-80%H _2的混合气体中,对核级奥氏体不锈钢AISI 316 LN(316LN SS)进行了等离子渗氮,以提高表面硬度和从而抗滑动磨损。经过维氏显微硬度测量,扫描电子显微镜(SEM)检查,X射线衍射(XRD)和滑动磨损评估,表征了经过等离子氮化(PN)处理的表面。发现PN层的平均厚度为70μm。显微硬度测量表明,硬度从210 HV〜(25)g(未氮化的样品)显着增加到1040 HV _(25)g(等离子氮化的样品)。 X射线衍射表明,PN层由CrN,Fe_4N和Fe_3N相以及奥氏体相组成。摩擦系数和磨损机理等摩擦学参数已在环境条件下针对PN处理环(PN环)与ASTM A453等级660销(ASTM销),PN环与镍基合金硬面销(Colmonoy销)进行了评估),PN环对316LN SS引脚和316LN SS环对316LN SS引脚。磨损轨迹已通过SEM,能量色散X射线分析(EDX)和光学轮廓测量法进行了分析。未处理的316LN SS环与316LN SS销会产生严重的磨损,其特点是分层和粘附磨损机制共同作用,而PN环的磨损机制显示出轻微的磨损和销材料的传递层。

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