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Shear-mode Crack Initiation Behavior in the Martensitic and Bainitic Microstructures

机译:马氏体和贝氏体组织中的剪切模式裂纹萌生行为

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Fully reversed torsional fatigue tests were conducted to elucidate the behaviour of shear-mode crack initiation and propagation in one martensitic and two bainitic steels. The relationship between the crack initiation site and microstructure was investigated by means of an electron backscatter diffraction (EBSD) technique. From the S-N diagram, two notable results were obtained: (i) the shear-mode crack was initiated on the prior austenitic grain boundary in martensitic steel, while in bainitic steels, the crack was initiated along the {110} plane; one of the slip planes of bcc metals, and (ii) the torsional fatigue limit of lower bainitic steel with finer grains was 60 MPa higher than that of upper bainitic steel with coarser grains even though the hardnesses were nearly equivalent. The mechanism determining the torsional fatigue strength in these steels is discussed from the viewpoint of microstructure morphology.
机译:进行了完全反向扭转疲劳试验,以阐明一种马氏体和两种贝氏体钢中剪切模式裂纹萌生和扩展的行为。通过电子背散射衍射(EBSD)技术研究了裂纹萌生部位与微观结构之间的关系。从S-N图获得两个显着结果:(i)在马氏体钢中,先验奥氏体晶界上产生了剪切模式裂纹,而在贝氏体钢中,沿{110}面产生了裂纹; (ii)即使硬度几乎相等,晶粒细小的贝氏体钢的扭转疲劳极限也比晶粒粗的贝氏体钢的疲劳极限高60 MPa。从微观组织形态的角度讨论了确定这些钢扭转疲劳强度的机理。

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