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Resistance to mechanically small fatigue crack growth in ultrafine grained interstitial-free steel fabricated by accumulative roll-bonding

机译:累积轧制制造的超细晶粒无间隙钢对机械小疲劳裂纹扩展的抵抗力

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摘要

Effects of ultrafine grain refinement on fatigue crack growth were investigated using an interstitial-free (IF) steel with a grain size of 590 tun produced by accumulative roll bonding. The fatigue properties and associated microstructures were characterized by fully reversed bending fatigue tests, replica method coupled with optical microscopy, and electron backscattering diffraction measurements near the fracture surfaces. Compared with a coarse-grained IF steel tested at the same stress amplitude, the fatigue strength of ultrafine-grained steel was higher, which was attributed to an increase in hardness. Compared with the coarse-grained steel at the same ratio of stress amplitude to hardness, the crack growth rates in the ultrafine grained steel were higher in the short-crack regime because of the smaller crack roughness and perhaps the difference in the strain gradient at the crack tip.
机译:使用通过累积辊压粘合生产的晶粒尺寸为590 tun的无间隙(IF)钢研究了超细晶粒细化对疲劳裂纹扩展的影响。通过完全反向弯曲疲劳试验,复制方法与光学显微镜以及断裂表面附近的电子反向散射衍射测量来表征疲劳性能和相关的微观结构。与在相同应力振幅下测试的粗晶IF钢相比,超细晶钢的疲劳强度更高,这归因于硬度的提高。与在相同应力振幅与硬度比率下的粗晶粒钢相比,由于裂纹的粗糙度较小,并且可能是由于裂纹应变较小,因此在短裂纹状态下超细晶粒钢的裂纹扩展速率较高。裂纹尖端。

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