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High-Cycle Low-Cycle Extremely Low-Cycle Fatigue and Monotonic Fracture Behaviors of Low-Carbon Steel and Its Welded Joint

机译:低碳钢及其焊接接头的高循环低循环极低循环疲劳和单调断裂行为

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摘要

Low-carbon steels are commonly used in welded steel structures and are exposed to various fatigue conditions, depending on the application. We demonstrate that the various transitions in the fracture mode during fatigue testing can be distinguished by their different cyclic response curves and microstructural features after fracture. Fractography, surface damage micrographs, and microstructural evolution clearly indicated the transition of the fracture modes from high-cycle to low-cycle, extremely low-cycle fatigue, and monotonic behavior. The high-cycle fatigue mode showed initial cyclic softening, followed by cyclic stabilization, and showed inclusion-induced crack initiation at fish-eyes, while the low-cycle fatigue mode showed initial cyclic hardening followed by cyclic stabilization, where fractography images showed obvious striations. In addition, the extremely low-cycle fatigue mode showed no cyclic stabilization after initial cyclic hardening, which was characterized by quasi-cleavage fractures with a few micro-dimples and transgranular cracking, while the monotonic fracture mode predominantly showed micro-dimples.
机译:低碳钢通常用于焊接钢结构中,并根据应用暴露于各种疲劳条件下。我们证明,疲劳测试过程中断裂模式中的各种转变可以通过其断裂后的不同循环响应曲线和微观结构特征来区分。分形,表面损伤显微照片和微观结构演变清楚地表明了断裂模式从高循环到低循环,极低循环疲劳和单调行为的过渡。高循环疲劳模式显示了初始的循环软化,然后是循环稳定,并且在鱼眼中显示出夹杂物引起的裂纹萌生,而低循环疲劳模式显示了初始的循环硬化,然后是循环稳定,其中断口图像显示出明显的条纹。此外,极低循环疲劳模式在初始循环硬化后没有显示出循环稳定性,其特征是具有少量微凹坑和经晶粒裂纹的准裂解断裂,而单调断裂模式则主要表现为微凹坑。

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