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Characterizations of Fatigue Deformation and Fracture Behavior of Commercially Pure Iron with Grain Boundary Micro-voids

机译:晶界微空隙商业纯铁的疲劳变形及断裂行为的特征

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Fatigue deformation behavior of the commercially pure iron containing micro-voids at grain boundaries (GBs) were investigated under total strain amplitude control, and fatigue fractures were quantitatively characterized by fractal analyses. The cyclic response curves of the CP iron show an initial softening stage within early several cycles followed by a continuous cyclic hardening. No stress saturation phenomenon was found. Pre-existence of micro-voids at GBs spurs intergranular cracking to become a common damage mode besides transgranular cracking along slip bands. Quantitative analyses of fracture surface demonstrate that the value of fractal dimension D of the scanning profile in the crack growth zone is the largest as compared to those in the crack source zone and final rapid fracture area, almost regardless of the applied strain amplitude. This phenomenon was discussed in terms of the tortuosity of crack propagation path.
机译:在总应变幅度控制下研究了含有微空隙(GBS)的商业纯铁的疲劳变形行为,通过分形分析定量表征疲劳骨折。 CP铁的循环响应曲线在几个循环中显示出初始软化阶段,然后是连续的环状硬化。没有发现压力饱和现象。除了沿着滑动带的转晶裂缝之外,GBS Spurs晶体裂化的微空隙的预存在成为常见的损伤模式。裂缝表面的定量分析表明,与裂纹源区和最终快速骨折区域相比,裂纹生长区中的扫描曲线的分形尺寸D的值最大,几乎无论施加的应变幅度如何。在裂缝繁殖路径的曲折方面讨论了这种现象。

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