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Study on Vacuum Tribological Behavior of 9Cr18Mo Bearing Steel by PIII Combined with MS Surface Hybrid Modification Processes

机译:PIII结合MS表面杂交改性工艺对9Cr18MO轴承钢的真空摩擦学行为研究

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Hybrid modification processes are used to improve the working surface of 9Cr18Mo bearing steel by plasma immersion ion implantation (PIII) combined with magnetron sputtering (MS). The untreated and treated samples were evaluated by the microhardness and vacuum fiction coefficient tests. Wear morphology of surfaces were also evaluated. It has been found that the microhardness of treated samples increased substantially, and the maximum microhardness was increased 31.9%, the adhesion force at the interface of the film and substrate was improved from 79mN to 107mN, the vacuum friction coefficient was decreased from 0.43 to 0.15, the wear scar diameter was reduced 28.6%. By the comparison of the comprehensive properties of different surface modification processes, hybrid process is better than single process.
机译:混合改性工艺用于通过等离子体浸渍离子注入(PIII)与磁控溅射(MS)组合改善9CR18MO轴承钢的工作表面。通过微硬度和真空小说系数测试评估未处理和处理的样品。还评估了表面的磨损形态。已经发现经处理的样品的显微硬度基本上增加,并且最大微硬度增加了31.9%,膜和基材界面处的粘合力从79mn提高至107mn,真空摩擦系数从0.43降至0.15 ,耐磨疤痕直径减少了28.6%。通过比较不同表面改性过程的综合性质,混合过程优于单程。

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