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Fatigue life and mechanical behaviors of bearing steel by nitrogen plasma immersion ion implantation

机译:氮等离子体浸没离子注入轴承钢的疲劳寿命和力学行为。

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Rolling contact fatigue (RCF) performance and mechanical characteristics of nitrogen plasma immersion ion implantation (PIII) on AISI52100 bearing steel surface has been investigated using a conventional three ball-on-rod rig. Testing investigations include optical microscopy (OM), friction and wear behavior, rolling contact fatigue life, and nano-indentation measurements. Results indicate that the rolling elements failed at the surface or near-surface layer. Moreover, an appreciable amount of surface wear was observed on the surface of the rolling elements after RCF tests. The maximum microhardness of treated samples is nearly twice as that of substrate. The friction coefficient of the treated samples is decreased from 0.90 to 0.15. The L10 life of the treated specimens increase by 99.6% and L50 life enhance by 236.3% at a Hertzian stress level of 5.1 GPa and 90% confidence level, respectively. OM morphology results indicate that the surface roughness, processing parameters, and inner defects play an important role in surface and near-surface initiated RCF. This improvement of fatigue and mechanical performance is attributed to form a combination of nitrides phase structure and residual compressive stress during the nitrogen-PIII process.
机译:使用常规的三杆钻机研究了AISI52100轴承钢表面上的氮等离子体浸没离子注入(PIII)的滚动接触疲劳(RCF)性能和机械特性。测试研究包括光学显微镜(OM),摩擦和磨损行为,滚动接触疲劳寿命以及纳米压痕测量。结果表明,滚动元件在表层或近表层失效。此外,在RCF测试之后,在滚动元件的表面上观察到相当数量的表面磨损。处理过的样品的最大显微硬度几乎是基材的两倍。处理后的样品的摩擦系数从0.90降低到0.15。在5.1 GPa的Hertzian应力水平和90%的置信度下,处理过的样品的L10寿命分别增加了99.6%和L50寿命增加了236.3%。 OM形态学结果表明,表面粗糙度,加工参数和内部缺陷在表面和近表面引发的RCF中起着重要作用。疲劳和机械性能的这种提高归因于在氮-PIII工艺过程中形成了氮化物相结构和残余压应力的组合。

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