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The stress ratio effect on plastic dissipation during fatigue crack growth

机译:应力比对疲劳裂纹扩展过程中塑性耗散的影响

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Plastic energy dissipation is inevitable during fatigue crack growth. There have been previous attempts reported in literature to correlate the plastic dissipated energy ( dW/dN ) to fatigue crack growth rate ( da/dN ). However, at a given dW/dN , the da/dN changes with the ratio of minimum and maximum loads, known as the stress ratio. This paper describes an experimental study carried out on 2024-T3 central crack tension specimens to quantify the relation between dW/dN and da/dN . By selecting different stress ratios in the individual tests, the experiments reveal the influence of the stress ratio on this relationship. It is evident that dW/dN has no unique relationship with da/dN valid for the tested stress ratios. Instead, the relationship for each stress ratio is different. This is illustrated with the value of plastic dissipation per unit of fatigue crack growth ( dW/da ), representing the effective resistance to the crack increment. This value is not a constant, but changes with the stress ratios and da/dN values. Hence the plastic energy dissipation cannot be used directly for predicting crack growth.
机译:在疲劳裂纹扩展过程中,不可避免地要消耗塑料能量。以前有文献报道过尝试将塑性耗散能量(dW / dN)与疲劳裂纹扩展速率(da / dN)相关联。但是,在给定的dW / dN下,da / dN随最小载荷和最大载荷之比(即应力比)而变化。本文描述了对2024-T3中心裂纹拉伸试样进行的实验研究,以量化dW / dN和da / dN之间的关系。通过在各个测试中选择不同的应力比,实验揭示了应力比对该关系的影响。显然,dW / dN与da / dN没有唯一关系,对测试的应力比有效。相反,每个应力比的关系都不同。用每单位疲劳裂纹扩展的塑性耗散值(dW / da)可以说明这一点,它表示对裂纹增量的有效抵抗力。该值不是常数,而是随应力比和da / dN值而变化。因此,塑性能耗散不能直接用于预测裂纹扩展。

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