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Fatigue Crack Growth Behavior on Power Shafts with Semi-Elliptical Surface Cracks

机译:具有半椭圆形表面裂缝的动力轴上的疲劳裂纹生长行为

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An analysis of the influence of steady torsion loading on fatigue crack growth rates on shafts is presented. Tests were carried out on cylindrical specimens in DIN Ck45k steel, using a testing machine especially designed and constructed simulating the real conditions on power rotor shafts. The growth and shape evolution of semi-elliptical surface cracks, starting from a chordal notch on the cylindrical specimen surface, was measured for several Mode Ⅲ/ Mode Ⅰ ratios. Results have shown a significant reduction on the crack growth rates when a steady torsion is superimposed to cyclic Mode Ⅰ. This fact seems to be related with a decreasing of △K effective at crack tip due to crack closure effect and the zig-zag path of crack growth as a consequence of torsion. For this type of cracks, under mixed-mode loading, the shaft lifetime increases with torsion loading. A Finite Elements 3D analysis have also shown that the Stress Intensity Factors of semi-elliptical surface crack values at free surface crack tip depends on the direction of applied steady torsion but it is independent at the maximum crack depth. This study provides a contribution for a better understanding of crack growth rates under mixed-mode load conditions on pre-cracked rotor shafts in order to predict remaining lifetimes and to estimate the risks in operation conditions.
机译:介绍了稳定扭转加载对轴疲劳裂纹生长速率的影响分析。使用特别设计和构造的测试机器在DIN CK45K钢中的圆柱形样本进行了测试,这些试验机模拟了电源转子轴上的真实条件。从圆柱形样品表面上的曲线凹槽开始的半椭圆形表面裂缝的生长和形状演化被测量为几种模式Ⅲ/modeⅠ比率。当升高扭转循环模式时,结果显示出对裂纹生长速率的显着降低。由于裂纹闭合效应和裂纹增长的裂纹增长的曲折路径,这一事实似乎与在裂纹尖端有效的△k有效。对于这种类型的裂缝,在混合模式负载下,轴寿命随扭转负载增加。有限元3D分析还示出了自由表面裂纹尖端处半椭圆表面裂纹值的应力强度因子取决于施加稳定扭转的方向,但它在最大裂纹深度处独立。该研究提供了在预破裂的转子轴上更好地理解在混合模式负载条件下更好地理解裂纹生长速率,以预测剩余的寿命并估计操作条件中的风险。

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