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A diffusion-based approach for modelling crack tip behaviour under fatigue-oxidation conditions

机译:疲劳氧化条件下建模裂纹尖端行为的扩散方法

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Modelling of crack tip behaviour was carried out for a nickel-based superalloy subjected to high temperature fatigue in a vacuum and air. In a vacuum, crack growth was entirely due to mechanical deformation and thus it was sufficient to use accumulated plastic strain as a criterion. To study the strong effect of oxidation in air, a diffusion-based approach was applied to investigate the full interaction between fatigue and oxygen penetration at a crack tip. Penetration of oxygen into the crack tip induced a local compressive stress due to dilatation effect. An increase in stress intensity factor range or dwell times imposed at peak loads resulted in enhanced accumulation of oxygen at the crack tip. A crack growth criterion based on accumulated levels of oxygen and plastic strain at the crack tip was subsequently developed to predict the crack growth rate under fatigue-oxidation conditions. The predicted crack-growth behaviour compared well with experimental results.
机译:对真空和空气中高温疲劳进行高温疲劳的基于镍的超合金进行裂纹尖端行为的建模。 在真空中,裂纹生长完全是由于机械变形,因此使用累积塑性应变作为标准就足够了。 为了研究空气中氧化的强烈效果,应用了基于扩散的方法来研究裂纹尖端疲劳和氧气渗透之间的完全相互作用。 由于扩张效果,氧气进入裂纹尖端的局部压缩应力。 在峰值载荷上施加的应力强度因子范围或停留时间的增加导致裂纹尖端的氧气积聚。 随后开发了基于裂纹尖端累积氧气和塑性应变水平的裂纹生长标准,以预测疲劳氧化条件下的裂纹生长速率。 预测的裂缝 - 生长行为与实验结果相比。

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