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Microstructure Evolution and Mechanical Properties of Tempered 5140 Alloy Steel after Proton Irradiation at Different Temperatures

机译:不同温度质子辐照后温度5140合金钢的微观结构演化与力学性能

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摘要

This article introduces the effect of tempered 5140 alloy steel commonly used in engineering on its structure and mechanical properties under the action of proton irradiation. In the present study, the irradiation energy of 160 keV is applied to experimentally investigate the proton irradiation with different cumulative fluences on the tempered 5140 alloy steel. The effect of the cumulative fluence of the proton irradiation on the microstructure evolution of tempered 5140 alloy steel is studied through transmission electron microscopy. Moreover, the morphology of the tensile fracture is analyzed by scanning electron microscope. The effect of the cumulative fluence of the proton irradiation on the nanomechanical properties of tempered 5140 alloy steel is investigated with a nanomechanical tester. It is found that the surface hardening effect formed by the proton irradiation damage causes the dislocation density in the structure near the tempered 5140 alloy steel surface layer and such effect increases as the proton irradiation cumulative fluence increases. The results obtained show that the yield and tensile strength of the tempered 5140 alloy steel increase slightly as the cumulative fluence of the proton irradiation increases. However, the corresponding elongation decreases. For a stable pressure load of the nanoindentation, the hardness of the nanoindentation of the tempered 5140 alloy steel increases as the proton irradiation fluence increases. However, the corresponding indentation depth decreases. Based on the obtained results, it is concluded that proton irradiation has no significant effect on the macro- and nanomechanical properties of the tempered 5140 alloy steel. This may be attributed to the low energy of the proton irradiation, and the resulting radiation damage only acts on the thin layer of the tempered 5140 alloy steel surface.
机译:本文介绍了在质子辐射作用下工程常用于工程和机械性能的钢化5140合金钢的效果。在本研究中,应用160keV的照射能量,以实验研究质子辐照,在回火5140合金钢上用不同的累积流动辐射。通过透射电子显微镜研究了质子辐射质子辐射对温度5140合金钢微观结构演化的影响。此外,通过扫描电子显微镜分析拉伸骨折的形态。用纳米力学测试仪研究了质子辐射质子辐射对钢化5140合金钢的纳米力学性能的影响。结果发现,通过质子照射损伤形成的表面硬化效果导致升温5140合金钢表面层附近的结构中的位错密度,并且随着质子辐照累积量的增加,这种效果增加。得到的结果表明,随着质子辐射的累积量增加,回火5140合金钢的产量和拉伸强度略有增加。然而,相应的伸长率降低。对于纳米狭窄的稳定压力负荷,随着质子辐射流量的增加,回火5140合金钢的纳米率的硬度增加。但是,相应的压痕深度降低。基于所得的结果,得出结论,质子辐射对回火5140合金钢的宏观和纳米机械性能没有显着影响。这可能归因于质子辐射的低能量,并且所得到的辐射损坏仅作用于回火5140合金钢表面的薄层。

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