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Effect of gas oxynitrocarburising on properties of medium carbon railway axle steel

机译:气体氧硝基碳共渗对中碳铁路车轴钢性能的影响

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摘要

In order to investigate the effect of the gas oxynitrocarburising on the properties of the medium carbon railway axle steel, the steel was gas oxynitrocarburised at five different temperatures for 2 h by applying a low temperature gas multielement penetrating system. The results show that the compound layer composed of γ'-Fe_4N and ε-Fe_(2-3)N and the oxide layer consisting of Fe_3O_4 and Fe_2O_3 are formed on the surface after treatment. The thickness of the compound layer increases with increasing temperature; however, the case depth decreases when the temperature is above the temper temperature of the origin material. The increase in treatment temperature resulted in an increase in the surface roughness. The properties of wear and corrosion resistance are improved, and the fatigue limit of the specimen treated at the optimum temperature, which is 570°C, improves largely compared to that of the untreated one and the one treated by microshot peening.
机译:为了研究气体氧硝基碳共渗对中碳铁路车轴钢性能的影响,通过应用低温气体多元素渗透系统,在五个不同的温度下对钢进行了气体氧硝基碳共渗2 h。结果表明,在处理后的表面上形成了由γ'-Fe_4N和ε-Fe_(2-3)N组成的化合物层以及由Fe_3O_4和Fe_2O_3组成的氧化物层。化合物层的厚度随着温度的升高而增加。但是,当温度高于原始材料的回火温度时,表壳深度会减小。处理温度的增加导致表面粗糙度的增加。与未经处理的试样和经微喷丸处理的试样相比,在570°C的最佳温度下处理的试样的疲劳极限得到改善,并且其疲劳极限得到了很大的改善。

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