微晶
材料科学
晶体孪晶
透射电子显微镜
变形机理
结晶学
晶界
位错
打滑(空气动力学)
微观结构
合金
变形(气象学)
复合材料
纳米结构
粒度
凝聚态物理
冶金
纳米技术
化学
热力学
物理
作者
Xiaozhou Liao,Jianyu Huang,Yuntian Zhu,Fei Zhou,Enrique J. Lavernia
标识
DOI:10.1080/1478643031000152799
摘要
An Al-7.6 at.% Mg alloy was ball milled in liquid N2 for 8 h and its microstructures were investigated using transmission electron microscopy. Electron diffraction confirmed that the resulting powder is a supersaturated Al-Mg solid solution with an fcc structure. Three typical nanostructures with different grain-size ranges and shapes were observed and the deformation mechanisms in these structures were found to be different. High densities of dislocations were found in large crystallites, implying that dislocation slip is the dominant deformation mechanism. The dislocations rearranged to form small-angle subboundaries upon further deformation, resulting in the formation of medium-sized crystallites with diameters of 10-30 nm. In very small crystallites with dimensions less than 10 nm, twinning becomes an important deformation mechanism. The reasons for the different deformation mechanisms were discussed. Some defects, such as twin boundaries, and small- and large-angle grain boundaries were investigated in detail.
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