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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Effect of Rare-Earth Additions on the Texture of Wrought Magnesium Alloys: The Role of Grain Boundary Segregation
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Effect of Rare-Earth Additions on the Texture of Wrought Magnesium Alloys: The Role of Grain Boundary Segregation

机译:稀土元素对变形镁合金织构的影响:晶界偏析的作用

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摘要

Magnesium alloys that contain certain rare-earth (RE) additions are known to have improved formability and this can be partly attributed to the different texture they display after recrystallization. Previous experimental work has identified segregation of RE to grain boundaries and dislocations as being potentially important in producing this change in behavior. In the present paper, two classical models (Langmuir-McClean and Cahn-Lucke-Stuwe) are used to explore the likely effect of RE additions on grain boundary solute concentration and drag. It is demonstrated that a wide range of RE elements are predicted to segregate strongly to grain boundaries due to the large atomic size misfit with magnesium. The maximum level of segregation is produced for elements such as Y or Gd that combine a high misfit and high bulk solubility. Segregated Y is predicted to produce a solute drag pressure on migrating boundaries several orders of magnitude greater than that obtained by Al or Zn additions. It is demonstrated that while this drag is predicted to be insufficient to strongly retard static recrystallization under typical annealing conditions, it is expected to suppress dynamic recrystallization by any mechanism requiring boundary migration.
机译:已知含有某些稀土(RE)添加剂的镁合金具有改善的可成形性,这部分归因于它们在重结晶后表现出的不同织构。先前的实验工作已经确定,稀土元素在晶界和位错中的分离对于产生这种行为变化可能具有重要意义。在本文中,使用两个经典模型(Langmuir-McClean和Cahn-Lucke-Stuwe)来研究稀土添加对晶界溶质浓度和阻力的可能影响。事实证明,由于镁的原子尺寸不匹配,预计各种稀土元素会强烈地偏析到晶界。对于结合了高失配和高体积溶解度的元素(例如Y或Gd),产生了最大的偏析水平。偏析的Y预计会在迁移边界上产生溶质阻力,其迁移阻力比添加Al或Zn所获得的阻力大几个数量级。已经证明,尽管预计该阻力不足以在典型的退火条件下强烈地阻碍静态再结晶,但是可以预期通过任何需要边界迁移的机理来抑制动态再结晶。

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