首页> 外文会议>International Conference on Fracture >NUMERICAL ANALYSIS OF MULTIAXIAL LOW CYCLE FATIGUE OF NOTCHED SPECIMENS MADE BY STAINLESS STEEL 316L UNDER NON-PROPORTIONAL LOADING
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NUMERICAL ANALYSIS OF MULTIAXIAL LOW CYCLE FATIGUE OF NOTCHED SPECIMENS MADE BY STAINLESS STEEL 316L UNDER NON-PROPORTIONAL LOADING

机译:非比例载荷不锈钢316L制造的缺口标本多轴低循环疲劳的数值分析

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This study analyzes notched specimens made of stainless steel 316L which undergo low cycle fatigue. The specimens were already tested with three different types of load paths and the results were carried out in terms of fatigue life and hardness. The geometries involved feature four types of stress concentration factors. From the pictures of the cracked specimens, the crack initiation spot was detected to be moved from the notch tip. This work evaluates the value and position of local parameters of strain and stress by means of a sophisticated finite element method analysis which described the real material behavior. Other than comparing the crack initiation spot found in the numerical analysis with the one observed in the tests, the model allowed to summarize the fatigue life in a narrow scatter band, giving a reliable design tool and a faithful interpretation of the phenomena involved in this type of load cycle.
机译:该研究分析了由不锈钢316L制成的缺口标本,该标本经过低循环疲劳。已经用三种不同类型的负载路径测试了标本,并在疲劳寿命和硬度方面进行结果。涉及的几何形状具有四种类型的应力集中因子。从裂缝样本的图片,检测裂缝启动点以从凹口尖端移动。这项工作通过复杂的有限元方法分析评估应变和应力的局部参数的值和位置,所述有限元方法分析描述了真实的材料行为。除了比较在测试中观察到的数值分析中的裂纹启动点,模型允许总结狭窄的散射带中的疲劳寿命,提供可靠的设计工具和对这种类型所涉及的现象的忠诚解释负载周期。

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