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Deformation mechanism at impact test of Al-11% Si alloy processed by equal-channel angular pressing with rotary die

机译:等径角旋转压模加工Al-11%Si合金冲击试验时的变形机理

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摘要

Al-11%Si (mass fraction) alloy was transformed into a ductile material by equal-channel angular pressing (ECAP) with a rotary die. Two mechanisms at impact test, slip deformation by dislocation motion and grain boundary sliding, were discussed. The ultrafine grains with modified grain boundaries and the high content of fine particles ( < 1 μm) were necessary for attaining high absorbed energy. The results contradict the condition of slip deformation by dislocation motion and coincide with that of grain boundary sliding. Many fine zigzag lines like a mosaic were observed on the side surface of the tested specimens. These observed lines may show grain boundaries appeared by the sliding of grains.
机译:Al-11%Si(质量分数)合金通过带有旋转模具的等通道角挤压(ECAP)转变为易延展材料。讨论了两种冲击试验机理:位错运动引起的滑动变形和晶界滑动。为了获得高吸收能,必须使用具有改进的晶界和高含量的细颗粒(<1μm)的超细晶粒。结果与位错运动引起的滑移变形条件相矛盾,与晶界滑动条件相吻合。在测试样品的侧面观察到许多细的锯齿形线条,如马赛克。这些观察到的线可能显示出由于晶粒的滑动而出现的晶界。

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