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Inclusions, Stress Concentrations and Surface Condition in Bending Fatigue of an H13 Tool Steel

机译:H13工具钢弯曲疲劳中的夹杂物,应力集中和表面状况

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Combined effects of inclusions, surface condition and geometrical stress concentration on the fatigue strength of a tool steel have been studied. Bending fatigue testing was performed for milled tool components and smooth specimens produced from an experimental AISI H13 tool steel with varying additions of sulphur and oxygen. Inclusion distributions of the different test series were determined. Fracture surfaces after fatigue failures were studied in a scanning electron microscope. The sulphur content does not have a significant influence on the fatigue strength of the milled tool components in the range of 0.02 - 0.09 wt percent. A clear reduction in the fatigue strength is obtained for the smooth specimens when the steel becomes rich in inclusions. Here, the oxide type inclusions dominated as crack initiators and the effect of sulphides was smaller. The results demonstrate the reduced effect of inclusions on the fatigue strength in components with large stress concentrations and rough surfaces.
机译:研究了夹杂物,表面条件和几何应力集中对工具钢疲劳强度的综合影响。对铣削后的工具零件和由实验性AISI H13工具钢制成的光滑试样进行弯曲疲劳测试,试验钢的硫和氧的添加量不同。确定了不同测试系列的夹杂物分布。疲劳失效后的断裂表面在扫描电子显微镜中研究。在0.02-0.09重量%的范围内,硫含量对铣削的工具部件的疲劳强度没有显着影响。当钢中夹杂物丰富时,光滑试样的疲劳强度明显降低。在此,氧化物类夹杂物主要作为裂纹引发剂,硫化物的作用较小。结果表明,夹杂物对应力集中较大且表面粗糙的组件的疲劳强度的影响减小。

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