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Fatigue Endurance Diagram for Materials with Defects

机译:缺陷缺陷的疲劳耐久性图

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Engine and turbine components that experience high cycle fatigue should operate under the fatigue threshold stress level to ensure their safe service life. In general, designers have to consider two types of thresholds, i.e. fatigue stress threshold for crack initiation and fatigue stress intensity factor threshold for crack propagation. These two thresholds overlap for short cracks or materials with defects. A new approach, which is called the fatigue endurance diagram (FED) for the prediction of fatigue threshold of materials with defects, is presented. This approach indicates that the fatigue strength of materials with cracks or defects is determined simultaneously by two parameters, the normalized stress intensity factor range and the normalized stress range. The FED indicates that the fatigue threshold condition is governed mainly by the threshold stress intensity factor and by the fatigue limit for the long and short cracks, respectively.
机译:体验高周期疲劳的发动机和涡轮机组件应在疲劳阈值应力水平下运行,以确保其安全使用寿命。通常,设计人员必须考虑两种类型的阈值,即裂缝引发和疲劳应力强度因子阈值进行裂纹传播的疲劳应力阈值。这两个阈值与短裂缝或具有缺陷的材料重叠。呈现了一种新的方法,称为用于预测具有缺陷的材料疲劳阈值的疲劳耐久性图(FED)。该方法表明,通过两个参数,归一化应力强度因子范围和归一化应力范围同时测定具有裂缝或缺陷的材料的疲劳强度。馈送表明疲劳阈值条件主要受阈值应力强度因子和长短裂缝的疲劳极限来控制。

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