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Microstructure Evolution and Nanotribological Properties of Different Heat-Treated AISI 420 Stainless Steels after Proton Irradiation

机译:质子辐照后不同热处理的AISI 420不锈钢的组织演变和纳米摩擦学性能

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摘要

In this paper, low-energy proton irradiation experiments with different cumulative fluences were performed on samples of AISI 420 stainless steel that were either annealed or tempered at 600 or 700 °C. The effects of the cumulative proton irradiation fluence on the evolution of the microstructure of AISI 420 were studied by transmission electron microscopy (TEM). Scratch tests were performed using a Tribo Indenter nanomechanical tester, in order to investigate the effects of the cumulative fluence on the tribological properties of the AISI 420 stainless steel. The results indicate that the dislocation density of the microstructure near the surface of the AISI 420 stainless steel increases with higher cumulative proton irradiation fluences. Under the same load, the nanoscale friction coefficient and wear rate both decreased with increasing cumulative proton irradiation fluence. This indicates that the surface hardening effect induced by proton irradiation can diminish the nanoscale friction coefficient and wear rate.
机译:在本文中,对AISI 420不锈钢样品进行了不同累积注量的低能质子辐照实验,这些样品在600或700°C退火或回火。通过透射电子显微镜(TEM)研究了累积质子辐照通量对AISI 420微观结构演变的影响。为了研究累积通量对AISI 420不锈钢的摩擦学性能的影响,使用Tribo Indenter纳米机械测试仪进行了划痕测试。结果表明,AISI 420不锈钢表面附近的微观结构的位错密度随着更高的累积质子辐照通量而增加。在相同载荷下,纳米级摩擦系数和磨损率均随着累积质子辐照通量的增加而降低。这表明质子辐照引起的表面硬化作用可以减小纳米级摩擦系数和磨损率。

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