首页> 外文会议>ASME(American Society of Mechanical Engineers) Turbo Expo vol.5; 20070514-17; Montreal(CA) >NON-LOCAL CYCLIC LIFE PREDICTION FOR GAS TURBINE COMPONENTS WITH SHARPLY NOTCHED GEOMETRIES
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NON-LOCAL CYCLIC LIFE PREDICTION FOR GAS TURBINE COMPONENTS WITH SHARPLY NOTCHED GEOMETRIES

机译:斜角几何形状的燃气轮机组件的非局部循环寿命预测

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摘要

The safe and efficient operation of modern heavy duty gas turbines requires a reliable prediction of fatigue behaviour of turbine components. Fatigue damage is located in areas where cyclic stress and strain amplitudes are highest. Thus, geometrical notches associated with stress/strain concentrations and stress/strain gradients appear to be the most important sites for fatigue crack initiation. The paper addresses a non-local concept for fatigue life prediction of notched components. In contrary to various local approaches in the field, the proposed method explicitly accounts for stress and strain gradients associated with notches, cooling holes, fillets and other design features with stress raising effect. As a result, empirical analytical expressions for considering either strain or stress gradients on cyclic life prediction are obtained. The method has been developed from cyclic test data on smooth and notched specimens made of a ferritic 1.5CrNiMo rotor steel. The obtained analytical formulations have then been applied to test data on the Nickel base superalloy MAR-M247 CC showing a good agreement between prediction and measurement. Moreover, the proposed non-local lifing concept has been validated by component tests on turbine blade firtrees. The predicted cycles to failure correlates well to the experimental results showing the applicability of the proposed method to complex engineering designs.
机译:现代重型燃气轮机的安全有效运行要求可靠地预测涡轮机部件的疲劳性能。疲劳损伤位于循环应力和应变幅度最高的区域。因此,与应力/应变集中度和应力/应变梯度相关的几何缺口似乎是引发疲劳裂纹的最重要位置。本文提出了非局部概念,用于带凹口部件的疲劳寿命预测。与本领域中的各种局部方法相反,所提出的方法明确考虑了与切口,冷却孔,圆角和其他具有应力提高效果的设计特征相关的应力和应变梯度。结果,获得了在循环寿命预测中考虑应变或应力梯度的经验解析表达式。该方法是根据对由铁素体1.5CrNiMo转子钢制成的光滑且有缺口的试样的循环测试数据开发的。然后,将获得的分析配方应用于镍基高温合金MAR-M247 CC上的测试数据,表明预测和测量之间具有良好的一致性。此外,所提出的非本地居住概念已经通过涡轮叶片冷杉树的组件测试得到了验证。预测的失效周期与实验结果密切相关,表明所提出的方法适用于复杂的工程设计。

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