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单个晶粒中的间歇性塑性:一项使用高能X射线衍射的研究。

Intermittent plasticity in individual grains: A study using high energy x-ray diffraction.

作者信息

Chatterjee K, Beaudoin A J, Pagan D C, Shade P A, Philipp H T, Tate M W, Gruner S M, Kenesei P, Park J-S

机构信息

Mechanical Science and Engineering, University of Illinois, Urbana-Champaign, Illinois 61801, USA.

Cornell High Energy Synchrotron Source (CHESS), Cornell University, Ithaca, New York 14853, USA.

出版信息

Struct Dyn. 2019 Jan 7;6(1):014501. doi: 10.1063/1.5068756. eCollection 2019 Jan.

Abstract

Long-standing evidence suggests that plasticity in metals may proceed in an intermittent fashion. While the documentation of intermittency in plastically deforming materials has been achieved in several experimental settings, efforts to draw connections from dislocation motion and structure development to stress relaxation have been limited, especially in the bulk of deforming polycrystals. This work uses high energy x-ray diffraction measurements to build these links by characterizing plastic deformation events inside individual deforming grains in both the titanium alloy, Ti-7Al, and the magnesium alloy, AZ31. This analysis is performed by combining macroscopic stress relaxation data, complete grain stress states found using far-field high energy diffraction microscopy, and rapid x-ray diffraction spot measurements made using a Mixed-Mode Pixel Array Detector. Changes in the dislocation content within the deforming grains are monitored using the evolution of the full 3-D shapes of the diffraction spot intensity distributions in reciprocal space. The results for the Ti-7Al alloy show the presence of large stress fluctuations in contrast to AZ31, which shows a lesser degree of intermittent plastic flow.

摘要

长期以来的证据表明,金属中的塑性可能以间歇性方式进行。虽然在几种实验环境中已经实现了对塑性变形材料中间歇性的记录,但从位错运动和结构发展到应力松弛建立联系的努力一直有限,尤其是在大量变形多晶体中。这项工作使用高能X射线衍射测量来建立这些联系,通过表征钛合金Ti-7Al和镁合金AZ31中单个变形晶粒内部的塑性变形事件。这种分析是通过结合宏观应力松弛数据、使用远场高能衍射显微镜获得的完整晶粒应力状态以及使用混合模式像素阵列探测器进行的快速X射线衍射斑点测量来进行的。利用倒易空间中衍射斑点强度分布的完整三维形状的演变来监测变形晶粒内位错含量的变化。Ti-7Al合金的结果显示存在较大的应力波动,而AZ31则显示出较小程度的间歇性塑性流动。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1e27/6404918/007a6e1d3757/SDTYAE-000006-014501_1-g001.jpg

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