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Fatigue Crack Propagation in Circumferentially Pre-Cracked Steel Bars under Torsional and Axial Loadings

机译:周向预裂纹钢筋在扭转和轴向载荷下的疲劳裂纹扩展

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摘要

The propagation behaviour of a circumferential fatigue crack in a cylindrical bar of medium carbon steel was studied under various combinations of cyclic torsional and axial loadings. The fatigue fracture surface was macroscopically flat under the conditions of excessive plasticity, and the J integral was applied to fatigue crack propagation under mixed mode loading. The propagation rate of fatigue cracks was expressed as a power function of the J integral range for both single and mixed mode cases. when compared at the same J integral range, the propagation rate was highest for the mode I case and the lowest for the mode III case. The simple addition of the propagation rates of mode I and III gives the lower hound of the propagation rate under mixed mode loading. Striations were observed on the fatigue fracture surface made under mixed mode loading, and their spacing was equal to the crack propagation rate as in the case of mode I loading.
机译:研究了在循环扭转载荷和轴向载荷的各种组合下,中碳钢圆柱棒中周向疲劳裂纹的扩展行为。在过量塑性条件下,疲劳断裂表面宏观上是平坦的,并且将J积分应用于混合模式载荷下的疲劳裂纹扩展。对于单模式和混合模式情况,疲劳裂纹的扩展速率均表示为J积分范围的幂函数。当在相同的J积分范围内进行比较时,模式I情况的传播速率最高,而模式III情况的传播速率最低。模式I和III的传播速率的简单加法给出了混合模式负载下传播速率的较低限制。在混合模式载荷下,在疲劳断裂表面观察到条纹,其间距与模式I载荷情况下的裂纹扩展速率相等。

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