首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Quantitative Microstructural Characterization of Thick Aluminum Plates Heavily Deformed Using Equal Channel Angular Extrusion
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Quantitative Microstructural Characterization of Thick Aluminum Plates Heavily Deformed Using Equal Channel Angular Extrusion

机译:等通道角挤压严重变形的厚铝板的微观组织定量表征

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A detailed quantitative analysis of the microstructure has been performed in three orthogonal planes of 15-mm-thick aluminum plates heavily deformed via two equal channel angular extrusion (ECAE) routes. One route was a conventional route A with no rotation between passes. Another route involved sequential 90 deg rotations about the normal direction (ND) between passes. The microstructure in the center of these plates, and especially the extent of microstructural heterogeneity, has been characterized quantitatively and compared with that in bar samples extruded via either route A or route Bc with 90 deg rotations about the longitudinal axis. Statistically robust data were obtained in this work using gallium enhanced microscopy and EBSD mapping of large sample areas. For the plate processed using route A, the fraction of high-angle boundaries was found to strongly depend on the inspection plane, being smallest in the plane perpendicular to the ND (plane Z), where the largest subgrain size and most profound microstructural heterogeneities were also revealed. In comparison, the plate extruded with 90 deg rotations about the ND was less heterogeneous and contained smaller subgrains in plane Z. Comparing the plate and bar samples, the most refined and least heterogeneous micro-structure was observed in the route Bc bar sample. The differences in the microstructure are reflected in the hardness data; the hardness is lowest after ECAE via route A and greatest in the bar sample processed using route Bc.
机译:在通过两个等通道角挤压(ECAE)路线严重变形的15毫米厚铝板的三个正交平面中,对微观结构进行了详细的定量分析。一种路线是常规路线A,在通过之间没有旋转。另一条路线包括在通过之间绕法线方向(ND)连续90度旋转。这些板中心的微观结构,特别是微观结构异质性的程度已得到定量表征,并与通过路径A或路径Bc绕纵轴旋转90度的条形样品进行了比较。在这项工作中,使用镓增强显微镜和大样品区域的EBSD绘图获得了统计上可靠的数据。对于使用路径A加工的板材,发现高角度边界的比例在很大程度上取决于检测平面,在垂直于ND的平面(Z平面)中最小,在该平面中,最大的亚晶粒尺寸和最深刻的微观结构异质性是还透露了。相比之下,以ND为中心旋转90度旋转的板的异质性较小,并且在平面Z中包含较小的亚晶粒。比较板和条形样品,在路径Bc的条形样品中观察到了最细化和异质性最低的微观结构。显微组织的差异反映在硬度数据中;在通过路径A进行ECAE之后,硬度最低,而在通过路径Bc处理的条形样品中硬度最高。

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