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首页> 外文期刊>Acta Metallurgica et Materialia >SUBGRAIN GROWTH IN HEAVILY DEFORMED ALUMINIUM—EXPERIMENTAL INVESTIGATION AND MODELLING TREATMENT
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SUBGRAIN GROWTH IN HEAVILY DEFORMED ALUMINIUM—EXPERIMENTAL INVESTIGATION AND MODELLING TREATMENT

机译:变形铝中亚晶粒的生长—实验研究和模型处理

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A comprehensive study of the annealing behaviour of two variants of commercial purity aluminium alloys has been carried out. The primary objectives of this work have been to improve the understanding of the recovery processes in itself as well as to study the effect of recovery on the annealing behaviour of heavily deformed aluminium. The experimental part has focused, firstly on describing the as deformed structure with emphasis on sub-boundary misorientations and long range lattice curvature, secondly on following subgrain growth and characterization of the softening reaction. The modelling part treats subgrain growth as a reaction controlled by sub-boundary migration. The significance of sub-boundary flexibility in this context is emphasized, an aspect which requires lateral drift of ledges as an important element in the boundary migration mechanism. A subgrain growth model based on thermally activated migration of ledges has been developed and applied to the experimental results.
机译:已经对商业纯铝合金的两种变体的退火行为进行了全面研究。这项工作的主要目的是增进对回收过程本身的了解,并研究回收对严重变形的铝的退火行为的影响。实验部分的重点是,首先描述形变的结构,重点是亚边界失取向和大范围晶格曲率,其次关注随后的亚晶粒生长和软化反应的表征。建模部分将亚晶粒生长视为由亚边界迁移控制的反应。强调了在这种情况下亚边界灵活性的重要性,这一方面要求壁架的侧向漂移是边界迁移机制中的重要元素。已开发出基于壁架热活化迁移的亚晶粒生长模型,并将其应用于实验结果。

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