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Influence of testing and tempering temperatures on fatigue behaviour, life and crack initiation mechanisms in a 5Cr martensitic steel

机译:试验和回火温度对5%Cr马氏体钢疲劳行为,寿命和裂纹起始机制的影响

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The effects of temperature as well as the initial hardness in the range 42 to 50HRC on the fatigue behaviour and life of a 5%Cr tool steel are investigated. Total strain controlled isothermal fatigue experiments between 200°C and 600°C are carried out under 1Hz frequency. The significant softening induced by tempering and/or cyclic loading is related to a strong reduction of the dislocation density clearly observed by transmission electron microscopy and x-ray diffraction The coalescence of secondary carbides is also involved in the yield strength decrease above 550°C and during cyclic loading. Increasing the initial hardness reduces the cyclic softening rate and increases the fatigue life. Moreover, several isothermal fatigue experiments with regular interruptions at different fractions of life are performed in order to investigate the crack initiation mechanisms. Three main crack initiation sites were observed depending on testing temperatures: non-metallic inclusions, prior austenitic grain boundary and lath boundary.
机译:研究了温度的影响42至50Hrc的初始硬度对5%Cr工具钢的疲劳行为和寿命进行了研究。在1Hz频率下进行200℃和600℃之间的总应变控制等温疲劳实验。通过回火和/或环状载荷诱导的显着软化与通过透射电子显微镜清楚观察的位错密度的强度减小,X射线衍射二次碳化物的聚结也涉及550°C以上的屈服强度降低在循环载荷期间。增加初始硬度降低了循环软化率并增加了疲劳寿命。此外,进行几种具有定期中断的等温疲劳实验,以研究裂纹引发机制。根据测试温度观察到三个主要裂纹引发位点:非金属夹杂物,先前奥氏体晶界和板条边界。

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