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Fatigue Crack Propagation from a Precrack under Mode ⅡCyclic Torsional Loading

机译:从模式下的预碎片疲劳裂纹传播Ⅱ环扭转载荷

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Fatigue tests of crack propagation from a pre-crack in thin-walled tubular specimens made of a medium-carbon steel were performed under cyclic torsion with and without superposed static tension. The condition of the transition from shear to tensile mode and the propagation behavior during this transition were investigated from a viewpoint of fracture mechanics. The direction of fatigue crack propagation follows the direction of the maximum of the total range of the tangential stress, Δσ_(θ max) near the crack tip and then gradually changes to the direction perpendicular to the maximum of the total range of the principal nominal stress. The propagation rate is faster than the uniaxial data when compared at the onset of crack extension and at high stress intensity factors. The former acceleration is caused by crack closure and the latter acceleration is due to the non singular T stress. The negative nonsingular stress induces excessive plasticity ahead of the fatigue crack, and then accelerates the fatigue crack.
机译:在循环扭转和没有叠加的静压张力的循环扭转下进行由中碳钢制成的薄壁管状标本中的薄壁管状试样的裂纹传播疲劳试验。从裂缝力学的观点来看,研究了从剪切到拉伸模式和在该转变期间的传播行为的条件。疲劳裂纹传播的方向遵循切向应力的总范围的最大范围,ΔΣ_(θmax)靠近裂纹尖端,然后逐渐变为垂直于主标称应力的总范围的方向的方向。在裂缝延伸的发作和高应力强度因子时,传播速率比单轴数据快。前加速度是由裂纹闭合引起的,后者加速是由于非奇异的T应力。负面的缠结应力在疲劳裂缝之前引起过度的可塑性,然后加速疲劳裂缝。

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