首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Effect of Heterophase Interfaces on Microstructure and Crystallographic Texture Evolution During Rolling of Directionally Solidified Ag-Cu Eutectic Alloy
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Effect of Heterophase Interfaces on Microstructure and Crystallographic Texture Evolution During Rolling of Directionally Solidified Ag-Cu Eutectic Alloy

机译:异相色界面对定向固化的Ag-Cu共晶合金轧制过程中杂交界面对微结构和晶体纹理演化的影响

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摘要

A directionally solidified Ag-Cu eutectic alloy was deformed by rolling to understand the role of heterophase interfaces on the deformation behavior of ultrafine and nanocrystalline face-centred cubic metals. During rolling, the initial < 220 & rang; fibre texture was gradually shifted to a Brass type texture for both Ag and Cu phases. More interestingly, a similar path of texture evolution was observed for both the phases at all strain levels. The in-depth transmission electron microscopy analysis revealed that the Ag lamellae deformed primarily by twinning, while the Cu lamellae deformed by twinning and dislocation slip. Furthermore, the special cube-on-cube and twin heterophase interfaces facilitated co-deformation and co-rotation of the adjacent Ag and Cu lamella due to a strong latent hardening effect, which stimulated a similar texture evolution for both phases.
机译:通过滚动来理解异相酶界面对超细和纳米晶体面对的立方金属变形行为的作用,使定向凝固的Ag-Cu共晶合金变形。 轧制期间,初始<220&r张; 对于AG和Cu相,纤维纹理逐渐移位为黄铜型纹理。 更有趣的是,所有应变水平的阶段都观察到相似的纹理演化路径。 深入的透射电子显微镜分析显示,Ag Lamellae主要通过孪生变形,而Cu Lamellae通过Twinning和位错滑动变形。 此外,特殊的立方体和双象间界面促进了相邻的Ag和Cu薄片的共变形和共旋,由于具有强烈的潜伏的硬化效果,这刺激了两个阶段的类似纹理演化。

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