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首页> 外文期刊>Journal of Applied Mechanics and Technical Physics >CALCULATION OF THE STRESS INTENSITY FACTOR FOR A SEMI-ELLIPTICAL SURFACE CRACK ON A ROTATING COMPRESSOR BLADE
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CALCULATION OF THE STRESS INTENSITY FACTOR FOR A SEMI-ELLIPTICAL SURFACE CRACK ON A ROTATING COMPRESSOR BLADE

机译:旋转压缩机叶片上半椭圆表面裂缝应力强度因子的计算

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摘要

Propagation of a semi-elliptical crack on the suction surface of a rotating blade of a gas turbine compressor is modelled and analysed. The analytical solution for the stress intensity factor (SIF) at the deepest point of the crack shows that the SIF increases with an increase in the crack depth and rotation speed, whereas the SIF decreases with an increase in the semi-elliptical aspect ratio and crack-rotation axis distance. The SIF increase rate with increasing crack depth is found to depend on the aspect ratio. Comparisons of theoretical and numerical calculation results reveal a relative error within 4%. The SIF distribution along the semi-elliptical surface crack front at different depths, positions, and aspect ratios are obtained by a numerical method.
机译:建模和分析了半椭圆裂缝对燃气轮机压缩机旋转叶片的吸入表面的传播。裂缝最深点的应力强度因子(SIF)的分析解决方案表明,SIF随着裂纹深度和转速的增加而增加,而SIF随着半椭圆形纵横比和裂缝的增加而降低 - 轴距离。发现裂缝深度增加的SIF增加率取决于纵横比。理论和数值计算结果的比较显示4%以内的相对误差。通过数值方法获得沿着半椭圆形表面裂纹前沿的SIF分布。

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