An Examination of Anisotropic Void Evolution in Aluminum Alloy 7075

被引:0
|
作者
H. Jin
W.-Y. Lu
J. W. Foulk
A. Mota
G. Johnson
J. Korellis
机构
[1] Sandia National Laboratories,Mechanics of Materials Department
[2] University of California,Department of Mechanical Engineering
来源
Experimental Mechanics | 2013年 / 53卷
关键词
Anisotropy; Void evolution; X-ray tomography;
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中图分类号
学科分类号
摘要
This paper investigates the anisotropy of void evolution and its relation with ductility in the high strength rolled aluminum alloy 7075-T7351. Smooth tension specimens are extracted from three principal material orientations, i.e. rolling (R), transverse (T), and short transverse (S). The mechanical behavior of these specimens is characterized and the varying ductility in the three orientations is clearly observed. Electron Backscattered Diffraction (EBSD), optical microscopy, and Scanning Electron Microscopy (SEM) are employed to characterize the grain structure and the size, location, and chemical composition of the intermetallic particles. In-situ X-ray Tomography (XCT) experiments are performed to obtain tomographic images of the specimens at critical loading steps. The radiographs acquired during the tensile test are then reconstructed and examined through quantitative analysis to partition particles and voids. These tomographic images enable us to visualize void evolution as the specimens are loaded along material orientations. The tomographic images clearly illustrate anisotropy in the void evolution and highlight the importance of local coalescence in developing 1D and 2D void structures prior to global coalescence. Fractography confirms tomography. These findings motivate model forms with appropriate internal variables to adequately describe the dominant mechanisms which govern anisotropic void evolution.
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页码:1583 / 1596
页数:13
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