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首页> 外文期刊>International Journal of Fracture >Experimental study of crack growth in thin sheet 2024-T3 aluminum under tension-torsion loading
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Experimental study of crack growth in thin sheet 2024-T3 aluminum under tension-torsion loading

机译:拉伸载荷作用下2024-T3铝薄板裂纹扩展的实验研究

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摘要

To assess the viability of using a critical COD criterion for flaws in 2024-T3 aluminum experiencing tension stresses (S_P) and torsion stresses (S_T), the enclosed work presents (a) a complete set of measurements for critical COD during crack growth under nominal tension-torsion loading, (b) the evolution of crack path with crack growth and (c) crack surface shape as a function of loading. Data from this work will provide an important experimental database for use in assessing the predictive capability of advanced, three-dimensional, crack growth simulation tools. Results for COD during crack growth under tension-torsion loading indicates that the measured critical COD for tension-torsion loading is constant during crack growth. In addition, the value of COD measured using image correlation methods is approximately 8 percent larger than observed for in-plane tension-shear, with much of the increase apparently due to specimen deformations in the crack tip vicinity. In addition, crack path evolution data for the range of S_T/S_P considered in this work show that the crack experiences both tunneling and slant fracture during loading, with tunneling rapidly decreasing (a) as crack growth progresses for all S_T/S_P values or (b) as S_T/S_P increases. Furthermore, results indicate that tearing during tension-torsion loading always occurs in a manner so that the crack surfaces tend to interfere during growth. Finally, crack surface shape data indicates that, with the exception of a small secondary transition, the direction of crack growth remains stable along a straight line oriented along the initial fatigue crack direction for the range of S_T /S_P being considered.
机译:为了评估使用临界COD准则对2024-T3铝中承受拉应力(S_P)和扭转应力(S_T)的缺陷的可行性,随附的工作提供(a)完整的一组测量值,用于在名义下裂纹扩展过程中的关键COD拉伸-扭转载荷,(b)随裂纹扩展的裂纹路径的演变,以及(c)载荷作用的裂纹表面形状。这项工作的数据将提供一个重要的实验数据库,用于评估先进的三维裂纹扩展模拟工具的预测能力。拉伸-拉伸载荷作用下裂纹扩展过程中的COD结果表明,拉伸-拉伸载荷下测得的临界COD在裂纹扩展过程中是恒定的。此外,使用图像相关方法测得的COD值比平面内拉伸试验所观察到的值大大约8%,其中大部分增加显然是由于裂纹尖端附近的试样变形所致。此外,在这项工作中考虑的S_T / S_P范围内的裂纹路径演化数据表明,裂纹在加载过程中同时经历了隧穿和倾斜断裂,随着所有S_T / S_P值的裂纹扩展,隧穿迅速减小(a)。 b)随着S_T / S_P的增加。此外,结果表明,在拉伸-扭转载荷期间的撕裂总是以某种方式发生,使得裂纹表面在生长期间趋于干涉。最后,裂纹表面形状数据表明,除了较小的二次过渡,裂纹扩展方向在考虑到S_T / S_P的范围内沿沿着初始疲劳裂纹方向定向的直线保持稳定。

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