A Comparison of in- and ex-situ Shear Bands in Metallic Glass by Transmission Electron Microscopy

H. Rösner, C. Kübel, S. Ostendorp, G. Wilde
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Abstract

Plastic deformation of metallic glasses performed at temperatures well below the glass transition proceeds via the formation of shear bands. In this contribution shear bands originating from in situ tensile tests of Al88Y7Fe5 melt-spun ribbons conducted in a transmission electron microscope are compared with ones which had formed ex situ during cold rolling. The observed contrasts for shear bands generated in situ at the edges of thin electron-transparent foils are shown to be related to a meniscus-like foil thickness reduction. In comparison with ex situ samples, alternating contrast changes due to volume changes are missing and the shear band width is a factor of 15 larger. The meniscus-like shear band profile is accounted for by the thin foil allowing volume increase due to shear deformation to annihilate via the free surfaces of the thin foil and the sheared zones to widen.
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金属玻璃原位剪切带与非原位剪切带的透射电镜比较
金属玻璃的塑性变形在远低于玻璃化转变的温度下通过剪切带的形成进行。通过透射电镜对Al88Y7Fe5熔体纺带原位拉伸试验中产生的剪切带与冷轧过程中形成的剪切带进行了比较。观察到的剪切带在薄电子透明箔边缘产生的对比显示与半月板状箔厚度减少有关。与非原位样品相比,由于体积变化而产生的交替对比度变化缺失,剪切带宽度增大了15倍。半月板状剪切带轮廓是由薄箔引起的,由于剪切变形通过薄箔的自由表面湮灭而使体积增加,剪切区扩大。
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