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首页> 外文期刊>High temperature materials and processes >Line-Profile Analysis Combined with Texture Analysis for Characterizing Dislocation Distribution in Texture Components of Cold-Rolled Copper Sheets
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Line-Profile Analysis Combined with Texture Analysis for Characterizing Dislocation Distribution in Texture Components of Cold-Rolled Copper Sheets

机译:线轮廓分析与质构分析相结合来表征冷轧铜板质构成分中的位错分布

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摘要

We described a newly developed characterization technique that dislocation density could be individually determined for each texture component of plastically deformed metals by combining the line-profile analysis with the texture analysis by using X-ray diffraction. This method was applied to major texture components of cube, copper, and brass evolved in cold-rolled copper sheets. The Warren–Averbach procedure using two diffraction peaks was used for estimating the dislocation density. An increase in the dislocation density with the rolling reduction was evaluated for individual texture components. Although the individual texture components underwent the different slip paths, the dislocation densities in these texture components were almost comparable; however, the non-texture component was shown to have a higher dislocation density than the texture components. The recovery and recrystallization proceeded preferentially in the non-texture component.
机译:我们描述了一种新开发的表征技术,该技术可以通过将线轮廓分析与X射线衍射纹理分析相结合来分别确定塑性变形金属的每个纹理成分的位错密度。该方法适用于冷轧铜板中析出的立方体,铜和黄铜的主要纹理成分。使用两个衍射峰的Warren–Averbach程序估算位错密度。对于单个织构成分,评估了随着轧制减少位错密度的增加。尽管各个纹理成分经历了不同的滑移路径,但这些纹理成分中的位错密度几乎是可比的;因此,它们之间的位错密度几乎是可比的。但是,非纹理成分的位错密度高于纹理成分。恢复和重结晶优先在非织构组分中进行。

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