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首页> 外文期刊>Materials Science and Engineering >The radial hardness-profile and the microstructure of railroad car axle materials treated by surface rolling, determined by novel examination methods
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The radial hardness-profile and the microstructure of railroad car axle materials treated by surface rolling, determined by novel examination methods

机译:用新的检验方法确定经表面滚轧处理的铁路车轴材料的径向硬度分布和显微组织

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摘要

Surface rolling is a cold-working technique used for hardening the surface of steel and ductile cast iron components. This process increases the surface hardness and improves the fatigue properties of components, so it is commonly used to treat railroad car wheel axles. The present paper examines the influence of this surface strengthening technique on the microstructure of the railroad car wheel axle material by hardness tests, optical microscopy (OM), and other novel examination methods, such as scanning electron microscopy (SEM), X-ray line profile analysis (XLPA), non-destructive magnetic evaluation (NDE) and automated electron backscatter diffraction (EBSD). The results show that surface rolling causes an increase in hardness down to a depth of ~10 mm. It is also shown, that the increase in hardness is not due to grain refinement or change in grain morphology; thus it is likely to be caused by an increase in dislocation density.
机译:表面轧制是一种冷加工技术,用于硬化钢和球墨铸铁部件的表面。该过程增加了表面硬度并改善了部件的疲劳性能,因此通常用于处理铁路车轮轴。本文通过硬度测试,光学显微镜(OM)和其他新颖的检查方法(例如扫描电子显微镜(SEM),X射线线)研究了这种表面强化技术对铁路车轮轴材料的微观结构的影响。轮廓分析(XLPA),无损磁性评估(NDE)和自动电子背散射衍射(EBSD)。结果表明,表面轧制会导致硬度降低到约10 mm的深度。还表明,硬度的增加不是由于晶粒细化或晶粒形态的改变;而是由于硬度的提高。因此很可能是由于位错密度的增加所致。

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