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首页> 外文期刊>Materials Characterization >(109941)Effect of extrusion ratios on microstructural evolution, textural evolution, and grain boundary character distributions of pure copper tubes during hydrostatic extrusion
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(109941)Effect of extrusion ratios on microstructural evolution, textural evolution, and grain boundary character distributions of pure copper tubes during hydrostatic extrusion

机译:(109941)挤出比对静压挤压过程中纯铜管的微观结构演化,纹理演化和晶界性状分布的影响

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摘要

This study fabricated Cu tubes by hydrostatic extrusion at various extrusion ratios from 2.7 to 6.5 at ambient temperature and then investigated the effects of the extrusion ratios on the microstructural evolution, textural evolution, and coincidence site lattice (CSL) boundary distribution. The hydrostatic extrusion process affected the grain recovery when the Cu tube was hydrostatically extruded at a certain extrusion ratio, resulting from the decrease in dislocation density calculated by the kernel average misorientation (KAM) values based on EBSD data. The fraction of the low-energy E 3 boundaries increased sharply at the highest extrusion ratio, resulting in grain recrystallization, followed by grain growth. The rolling texture components present in microstructure of Cu tubes are a function of the extrusion ratio. This study reports for the first time that the microstructure of Cu tubes can be developed by grain recovery and recrystallization, as well as by increasing the content of the rolling texture components. This is attributed to the heat generated during severe plastic deformation (SPD) at an extrusion ratio of 6.4, and the adiabatic heat plays a key role in dislocations, thus overcoming the obstacles faced during thermal activation and boundary migration under specific conditions of hydrostatic extrusion.
机译:该研究在环境温度下通过2.7至6.5的各种挤压率在各种挤出比下通过静水挤出制造Cu管,然后研究了挤出比对微观结构演化,纹理演化和符合条件晶格(CSL)边界分布的影响。当在某种挤出比下静电挤出Cu管液压挤出时,静水压挤出过程影响了籽粒恢复,由通过基于EBSD数据的核平均错误(KAM)值计算的位错密度降低。低能量E 3边界的级分以最高的挤出比急剧增加,导致晶粒重结晶,然后进行晶粒生长。存在于Cu管的微观结构中的轧制质地组分是挤出比的函数。本研究首次报告了Cu管的微观结构可以通过谷物回收和重结晶来开发,以及通过增加轧制纹理部件的含量。这归因于在挤出比为6.4的严重塑性变形(SPD)期间产生的热量,并且绝热热在脱位中起着关键作用,从而克服在静水挤出的特定条件下热激活和边界迁移期间面临的障碍物。

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