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A NEW ENERGY-BASED UNIAXIAL FATIGUE LIFE PREDICTION METHOD FOR A GAS TURBINE ENGINE MATERIAL

机译:一种用于燃气轮机原料的新能源的单轴疲劳寿命预测方法

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A new energy-based fatigue life prediction framework for calculation of axial and bending fatigue life at various stress ratios has been developed. The purpose of the life prediction framework is to account for materials used in gas turbine engines, such as Titanium 6Al-4V, which experience an endurance stress limit as the number of cycles increase towards infinity. The work conducted to develop this energy-based framework consist of the following entities: (1) A new life prediction criterion for axial and bending fatigue at various stress ratios for Aluminum 6061-T6, (2) use of the previously developed improved uniaxial energy-based method to acquire fatigue life prior to endurance limit behavior [1], (3) and the incorporation of a statistical energy-based fatigue life calculation scheme to the uniaxial life criterion (the first entity of the framework), which is capable of constructing prediction intervals based on a specified percent confidence level. The exactitude of this work was verified by comparison between theoretical approximations and experimental results from recently acquired Al 606-T6 and Ti 6Al-4V data. The comparison shows very good agreement, thus validating the capability of the framework to produce accurate fatigue life predictions.
机译:开发了一种新的基于能量的疲劳寿命预测框架,用于计算各种应力比的轴向和弯曲疲劳寿命。寿命预测框架的目的是考虑燃气涡轮发动机中使用的材料,例如6AL-4V,其经历耐循环次数朝向无穷大的次数。开发这种基于能量的框架的工作包括以下实体:(1)在6061-T6的各种应力比下的轴向和弯曲疲劳的新寿命预测标准,(2)使用先前显影的单轴能量基于耐久性限制行为之前获取疲劳寿命的方法[1],(3)以及将统计能量的疲劳寿命计算方案纳入一个能够的单轴生命标准(框架的第一个实体),其能够基于指定的置信度级别构建预测间隔。通过最近获得的Al 606-T6和Ti 6Al-4V数据的理论近似和实验结果比较,验证了这项工作的精确性。比较显示了非常好的协议,从而验证框架的能力,以产生准确的疲劳寿命预测。

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