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Deceleration and Acceleration of Crack Propagation after an Overload under Negative Baseline Stress Ratio

机译:负基准应力比下超载后裂纹扩展的减速和加速

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In a previously reported study, it was found that the fatigue crack growth rate actually accelerated after a tensile overload under a negative value of baseline stress ratio R. This type of crack propagation behavior is related to the change in the compression residual stress to tensile residual stress distributed in the vicinity of the crack tip upon unloading to minimum load after an overload. In the present investigation, focused on the negative stress ratio, it was found that the deceleration and acceleration of crack propagation were associated with crack opening displacement at the overload point and the conditions of applied baseline cyclic stress. The fatigue crack growth rate decelerated after being overloaded at a positive R value. However, that rate accelerated rather than decelerated in some stress conditions at a negative R value. Therefore, the residual fatigue life after overloading became longer or shorter, depending on the overload level and baseline stress conditions.
机译:在先前报道的研究中,发现在基准应力比R为负值的情况下,拉伸过载后疲劳裂纹的生长速度实际上会加速。这种类型的裂纹扩展行为与压缩残余应力到拉伸残余的变化有关。在过载后卸载到最小载荷时,裂纹尖端附近的应力分布。在本研究中,着眼于负应力比,发现裂纹扩展的减速和加速与过载点处的裂纹开口位移以及施加的基线循环应力的条件有关。疲劳裂纹扩展率以正R值过载后减速。但是,该速率在某些应力条件下以负R值加速而不是减速。因此,取决于过载水平和基线应力条件,过载后的残余疲劳寿命变得更长或更短。

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