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首页> 外文期刊>Philosophical magazine: structure and properties of condensed matter >A combined study of surface roughness in polycrystalline aluminium during uniaxial deformation using laser-induced photoemission and confocal microscopy
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A combined study of surface roughness in polycrystalline aluminium during uniaxial deformation using laser-induced photoemission and confocal microscopy

机译:激光诱导的光发射和共聚焦显微镜研究多晶铝单轴变形过程中的表面粗糙度

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摘要

A new technique integrating measurements obtained by photo-stimulated electron (PSE) emission and scanning laser confocal microscopy (SLCM) has been developed to characterize the deformation of commercially pure aluminium in uniaxial plastic strain. Real time, in situ PSE signals provide details about the evolution and propagation rates of surface events during the deformation process. High-resolution SLCM measurements yield details describing the relative magnitude and spatial distribution of the surface features. During homogeneous deformation, uniform generation of surface area produces a monotonic increase in PSE intensity whereas necking induces a saturation condition. Analysis of the surface area created by the deformation revealed that the rate of generation correlates well with the PSE intensity. The consistencies in the data acquired with these two techniques signify that they yield complementary information and that the combination provides essential details about the deformation process in a material with low hardness such as an aluminium alloy.
机译:已经开发出一种新技术,该技术结合了通过光激发电子(PSE)发射和扫描激光共聚焦显微镜(SLCM)获得的测量结果,以表征商业纯铝在单轴塑性应变中的变形。实时原位PSE信号提供有关变形过程中表面事件的演化和传播速率的详细信息。高分辨率SLCM测量产生的细节描述了表面特征的相对大小和空间分布。在均匀变形过程中,均匀产生表面积会导致PSE强度单调增加,而颈缩会引起饱和状态。对由变形产生的表面积的分析表明,生成速率与PSE强度密切相关。用这两种技术获得的数据的一致性表明它们产生了互补的信息,并且这种结合提供了有关低硬度材料(例如铝合金)变形过程的基本细节。

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