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Fractographic evaluation of high cycle fatigue strength of a high V alloyed powder metallurgy tool steel

机译:高钒合金粉末冶金工具钢的高周疲劳强度的分形评价

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摘要

The high cycle fatigue strength and the fracture surface morphology of a high V alloyed powder metallurgy tool steel were investigated and connected with microstructure. The inclusion with size above 30 ìm was demonstrated to be responsible for the reduction in fatigue strength. The shape and size of inclusion and the stress amplitude affected the position of crack origin in fish eye. Based on fractographic evaluation and statistical analysis, the most harmful inclusions with the largest size proportion for steel A are ~30 ìm, and that of B_1, B_2 and B_3 is roughly 50, 60 and 60 ìm respectively. A distinctive granular-like zone with specific morphology was found to be confined in a very small area, suggesting that the fatigue crack propagation was mainly controlled by Paris Law regime. A linear fracture mechanics approach was implemented to evaluate the effect of grain size, yield stress and inclusion size on fatigue strength.
机译:研究了高V合金粉末冶金工具钢的高周疲劳强度和断口形貌,并与组织进行了联系。尺寸大于30μm的夹杂物被证明是导致疲劳强度降低的原因。夹杂物的形状和大小以及应力幅度影响了鱼眼中裂纹起源的位置。根据分形评估和统计分析,钢A中最大比例的有害夹杂物约为30ìm,B_1,B_2和B_3的有害夹杂物分别约为50、60和60ìm。发现具有特定形态的独特颗粒状区域被限制在很小的区域内,这表明疲劳裂纹扩展主要受巴黎法律制度控制。实施了线性断裂力学方法来评估晶粒尺寸,屈服应力和夹杂物尺寸对疲劳强度的影响。

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