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Analysis of anisotropic damage in forged Al-Cu-Mg-Si alloy based on creep tests, micrographs of fractured specimen and digital image correlations

机译:基于蠕变试验,断裂试样的显微照片和数字图像相关性分析锻造Al-Cu-Mg-Si合金的各向异性损伤

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The aim of this paper is to analyze anisotropic damage mechanisms in forged Al-Cu-Mg-Si alloy based on the results of creep tests. Smooth specimens are sampled in three forging directions. Creep strain vs. time curves as well as light optical microscope and scanning electron microscope observations illustrate basic features of damage growth. Flat notch specimens are sampled in different directions to analyze stress redistributions and damage in zones of stress concentration. The digital image correlation technique has been applied in situ in order to extract the strain values on the surface of the notched specimens. All observations demonstrate that the principal origins of anisotropic creep and damage are associated with elongated grains and second phase clustered particles located at grain boundaries. Longitudinal specimens possess nucleations of decohesion sites and growth of voids around second phase particles at grain boundaries. Damage evolution for radial and transverse specimens is due to the formation and growth of cracks in second phase particles orthogonal to the principal stress axis. Residual strains are confined to the notch root as well as to the flanges of advanced macrocrack, indicating the small scale yielding during the creep fracture process.
机译:本文的目的是基于蠕变试验的结果来分析锻造的Al-Cu-Mg-Si合金的各向异性损伤机理。沿三个锻造方向对光滑的试样进行采样。蠕变应变与时间的关系曲线以及光学显微镜和扫描电子显微镜的观察结果说明了损伤增长的基本特征。在不同方向上取样平坦的缺口样品,以分析应力重新分布和应力集中区域中的损坏。数字图像相关技术已在原位应用,以提取缺口样品表面的应变值。所有观察结果表明,各向异性蠕变和破坏的主要起源与拉长的晶粒和位于晶界处的第二相簇状颗粒有关。纵向试样在晶粒边界处具有脱粘位点的成核和第二相颗粒周围的空隙的生长。径向和横向样品的损伤演化是由于与主应力轴正交的第二相颗粒中裂纹的形成和增长。残余应变被限制在缺口的根部以及先进的宏观裂纹的边缘,这表明蠕变断裂过程中的小规模屈服。

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