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Direct observation of nucleation in the bulk of an opaque sample

机译:直接观察大量不透明样品中的成核现象

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摘要

Remarkably little is known about the physical phenomena leading to nucleation of new perfect crystals within deformed metals during annealing, in particular how and where volumes with nearly perfect lattices evolve from structures filled with dislocations, and how local variations at the micrometer length scale affect this nucleation process. We present here the first experimental measurements that relate directly nucleation of recrystallization to the local deformation microstructure in the bulk of a sample of cold rolled aluminum, further deformed locally by a hardness indentation. White beam differential aperture X-ray microscopy is used for the measurements, allowing us to map a selected gauge volume in the bulk of the sample in the deformed state, then anneal the sample and map the exact same gauge volume in the annealed state. It is found that nuclei develop at sites of high stored energy and they have crystallographic orientations from those present in the deformed state. Accordingly we suggest that for each nucleus the embryonic volume arises from a structural element contained within the voxels identified with the same orientation. Possible nucleation mechanisms are discussed and the growth potentials of the nuclei are also analyzed and discussed.
机译:关于导致退火过程中变形金属内新的完美晶体成核的物理现象知之甚少,特别是几乎没有完美晶格的体积如何从何处填充到位错的结构中以及在何处演化,以及微米长度尺度上的局部变化如何影响这种成核处理。我们在这里介绍了第一个实验测量,该测量直接将重结晶的成核与大部分冷轧铝样品中的局部变形微观结构相关,并通过硬度压痕进一步局部变形。白光束差动孔径X射线显微镜用于测量,这使我们能够在变形状态下映射选定体积的大部分样品中的体积,然后对样品进行退火,并在退火状态下绘制出完全相同的体积。发现核在高储存能量的位点发展,并且它们具有从处于变形状态时存在的那些的晶体学取向。因此,我们建议,对于每个核,胚胎体积都来自包含在以相同方向标识的体素中的结构元素。讨论了可能的成核机理,并分析和讨论了核的生长潜力。

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