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Nanotribological behavior of deep cryogenically treated martensitic stainless steel

机译:深冷马氏体不锈钢的纳米摩擦学行为

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摘要

Cryogenic treatments are increasingly used to improve the wear resistance of various steel alloys by means of transformation of retained austenite, deformation of virgin martensite and carbide refinement. In this work the nanotribological behavior and mechanical properties at the nano-scale of cryogenically and conventionally treated AISI 420 martensitic stainless steel were evaluated. Conventionally treated specimens were subjected to quenching and annealing, while the deep cryogenically treated samples were quenched, soaked in liquid nitrogen for 2 h and annealed. The elastic–plastic parameters of the materials were assessed by nanoindentation tests under displacement control, while the friction behavior and wear rate were evaluated by a nanoscratch testing methodology that it is used for the first time in steels. It was found that cryogenic treatments increased both hardness and elastic limit of a low-carbon martensitic stainless steel, while its tribological performance was enhanced marginally.
机译:通过残留奥氏体的转变,原始马氏体的变形和碳化物的细化,越来越多地采用低温处理来改善各种钢合金的耐磨性。在这项工作中,对低温和常规处理的AISI 420马氏体不锈钢的纳米级纳米摩擦性能和力学性能进行了评估。常规处理的样品要进行淬火和退火,而深冷处理的样品要淬火,然后在液氮中浸泡2小时并退火。在位移控制下,通过纳米压痕测试评估了材料的弹塑性参数,而在钢中首次使用的纳米划痕测试方法则评估了摩擦性能和磨损率。发现低温处理增加了低碳马氏体不锈钢的硬度和弹性极限,同时其摩擦学性能略有提高。

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