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In-Situ Neutron Diffraction Study of the Deformation Mechanisms in Solutionized Mg-Zn Alloys

机译:溶液化Mg-Zn合金变形机制的原位中子衍射研究

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In-situ neutron diffraction experiments were carried out on solutionized and randomly textured Mg-Zn alloy castings with similar grain sizes but variation in Zn content from 1.7 to 6.6 wt %. The evolution in internal elastic strains and diffraction peak intensities with increasing load were analyzed. The macroscopic stress strain curve shows an increase in yield strength with an increase in zinc content. Neutron diffraction results indicate that the strength of basal slip, tension twinning and slip/compression twinning modes increases with increase in zinc content. However, the strength of prismatic slip appears to be unaffected by zinc content at lower concentrations and increases with zinc content only at higher concentrations. These results are discussed in light of prior work on the Mg-Zn system.
机译:在原位中子衍射实验上进行溶液和随机纹理的Mg-Zn合金铸件,其具有类似的晶粒尺寸,但Zn含量的变化从1.7〜6.6wt%。分析了内部弹性应变和衍射峰强度随着载荷的衍射峰值强度的进化。宏观应力应变曲线显示出含锌含量增加的屈服强度的增加。中子衍射结果表明基底滑移,张力孪晶和滑移/压缩孪晶模式的强度随着锌含量的增加而增加。然而,棱柱形式的强度似乎不受锌含量在较低浓度下的影响,并且仅在较高浓度下用锌含量增加。根据MG-Zn系统的前进工作讨论了这些结果。

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