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Plastic CTOD as fatigue crack growth characterising parameter in 2024-T3 and 7050-T6 aluminium alloys using DIC

机译:塑料CTOD作为2024-T3和7050-T6铝合金的疲劳裂纹生长特征参数使用DIC

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The plastic range of crack tip opening displacement (CTOD) has been used for the experimental characterisation of fatigue crack growth for 2024-T3 and 7050-T6 aluminium alloys using digital image correlation (DIC). Analysis of a complete loading cycle allowed resolving the CTOD into elastic and plastic components. Fatigue tests were conducted on compact tension specimens with a thickness of 1 mm and a width of 20 mm at stress ratios of 0.1, 0.3 and 0.5. The range of plastic CTOD could be related linearly to da/dN independent of stress ratio for both alloys. To facilitate accurate measurements of CTOD, a method was developed for correctly locating the crack tip and a sensitivity analysis was performed to explore the effect of measurement position behind the crack tip on the CTOD. The plastic range of CTOD was demonstrated to be a suitable alternate parameter to the stress intensity factor range for characterising fatigue crack propagation. A particularly innovative aspect of the work is that the paper describes a DIC-based technique that the authors believe gives a reliable way to determine the appropriate position to measure CTOD.
机译:裂纹尖端开口位移(CTOD)的塑料范围已被用于使用数字图像相关(DIC)的疲劳裂纹生长的实验表征2024-T3和7050-T6铝合金。分析完整的装载循环允许将CTOD解析为弹性和塑料部件。在紧凑的张力试样上进行疲劳试验,厚度为1mm,应力比为0.1,0.3和0.5的应力比为20mm的宽度。塑料CTOD的范围可以线性地与两种合金的应力比不同的DA / DN相关。为了便于CTOD的精确测量,开发了一种用于正确定位裂纹尖端的方法,并进行灵敏度分析以探讨CTOD上裂纹尖端后面的测量位置的效果。 CTOD的塑料范围被证明是对应力强度因子范围的合适的替代参数,以表征疲劳裂纹谱的表征。该工作的一个特别是创新的方面是本文描述了基于DIC的技术,即作者认为提供了一种可靠的方法来确定测量CTOD的适当位置。

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