首页> 外文会议>International Conference on Textures of Materials;ICOTOM 15 >3D MICROSTRUCTURES AND TEXTURES OF A PLANE STRAIN COMPRESSED {110} A1-0.3Mn SINGLE CRYSTAL
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3D MICROSTRUCTURES AND TEXTURES OF A PLANE STRAIN COMPRESSED {110} A1-0.3Mn SINGLE CRYSTAL

机译:{110} A1-0.3%Mn单晶压缩平面应变的3D显微组织和组织

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Crystal subdivision patterns of microbands have been extensively reported but mostly by studies on only one section, using either TEM or SEM-EBSD. To better correlate substructure with slip patterns a systematic study of the 3D deformation microstructure in a deformed single crystal (i.e. over the 3 perpendicular surfaces) has been carried out. The microstructure and microtexture evolutions during plane strain deformation of high purity single crystals of Al-0.3%wt.Mn alloy with initial near-brass{110}<112> orientation were characterised by TEM and high resolution FEG-SEM/EBSD after strains of 0.15 and 0.56. These two different techniques enable one to examine the crystal subdivision deformation pattern at different microscopic scales, on the 3 orthogonal sections, i.e. perpendicular to the nominal < 110>, < 112> and < 111 > crystallographic directions. Particular attention is paid to a comparison of the microband orientations with the expected slip traces of the 2 active slip systems on all 3 surfaces. It is concluded that the microband boundary alignment corresponds very well to the traces of the crystallographic {111} planes, on which most of the slip occurs.
机译:已经广泛报道了微带的晶体细分模式,但是大多数是通过使用TEM或SEM-EBSD在仅一个区域的研究进行的。为了更好地将子结构与滑动模式相关联,已经对变形的单晶(即在3个垂直表面上)的3D变形微观结构进行了系统的研究。用TEM和高分辨率FEG-SEM / EBSD表征了初始黄铜{110} <112>取向的Al-0.3%wt.Mn合金的高纯Al-0.3%wt.Mn合金的平面应变变形过程中的组织和微观组织演变。 0.15和0.56。这两种不同的技术使人们能够在3个正交截面上(即垂直于标称<110>,<112>和<111>晶体学方向)以不同的微观尺度检查晶体细分变形模式。要特别注意将微带方向与所有3个表面上2个活动滑移系统的预期滑移轨迹进行比较。可以得出结论,微带边界对准与晶体{111}平面的迹线非常吻合,大部分滑移都在该迹线上发生。

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