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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >On the evolution of heterogeneous microstructure and microtexture in impacted aluminum-lithium alloy
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On the evolution of heterogeneous microstructure and microtexture in impacted aluminum-lithium alloy

机译:冲击铝锂合金中非均质组织和微观组织的演变

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The microstructure and texture evolution in an aluminum-lithium alloy showing adiabatic shear band after dynamic deformation has been carried out using electron backscatter diffraction and bulk texture measurement using X-ray diffraction. The uniquely heterogeneous microstructure is characterized by fine sub-micron grains of the matrix phase and small spherical precipitates while the region away from the shear band shows deformed elongated grains and plate shaped precipitates. The interface between the shear band and rest of the sample shows unique deformation features indicating the existence of both continuous as well as geometric dynamic recrystallization in the impacted sample. It is inferred that the coarse grain size accompanied with heterogeneous deformation conditions during dynamic loading leads to the coexistence of competing recrystallization mechanisms in aluminum-lithium alloy.
机译:使用电子反向散射衍射和使用X射线衍射进行的整体织构测量已经进行了动态变形后显示绝热剪切带的铝锂合金的微观结构和织构演变。独特的异质微观结构的特征是基体相的亚微米细晶粒和小的球形沉淀物,而远离剪切带的区域显示出变形的细长晶粒和板状沉淀物。剪切带和样品其余部分之间的界面显示出独特的变形特征,表明在受影响的样品中同时存在连续的以及几何的动态再结晶。可以推断,在动态加载过程中,粗大晶粒尺寸与不均匀变形条件共同导致铝锂合金中竞争性重结晶机制的共存。

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