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Low-cycle fatigue behavior of austenitic stainless steels with gradient structured surface layer

机译:具有梯度结构化表面层的奥氏体不锈钢的低周疲劳行为

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摘要

Low-cycle fatigue behavior of gradient structured (GSed) 316L steels is investigated. The results show that both the homogeneous and gradient structures exhibit first cyclic hardening then cyclic softening. The GSed surface layer can, however, speed up cyclic hardening and extend cyclic softening processes. The analyses using hysteresis energy-based criterion indicates that the former phenomenon can be attributed to the reduced fatigue damage capacity, while the latter to the improved ability of damage defusing. This finding accordingly pinpoints that the retarded fatigue damage accumulation process has been acting as the main contributor to the enhanced fatigue performance of GSed 316L steels.
机译:研究了梯度结构(GSed)316L钢的低周疲劳行为。结果表明,均质和梯度结构均表现出先循环硬化然后循环软化。但是,GSed表面层可以加快循环硬化并扩展循环软化过程。使用基于磁滞能量的标准进行的分析表明,前者可归因于疲劳损伤能力的降低,而后者则归因于损伤消除能力的提高。因此,这一发现指出,延迟疲劳损伤累积过程一直是GSed 316L钢增强疲劳性能的主要因素。

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