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Computational investigation of constitutional liquation in Al-Cu alloys

机译:Al-Cu合金中结构液化的计算研究

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摘要

Constitutional liquation means the local eutectic melting of second-phase particles in a matrix at temperatures above the eutectic temperature and below the solidus of the alloy, which may occur in the heat-affected zone (HAZ) during welding. In the present paper, the constitutional liquation in the Al-Cu system was computationally investigated using the DICTRA program coupled with critically assessed thermodynamic and kinetic databases. Computer simulated results are in quantitative agreement with existing experimental data. The computational procedures for obtaining the critical heating rate to avoid constitutional liquation are demonstrated. The critical heating rate was found to be inversely proportional to the square of the precipitate size. The present computational procedures can be readily extended to predict the susceptibility of multicomponent commercial alloys to constitutional liquation during welding with available thermodynamic and kinetic databases.
机译:构成液化是指在高于共晶温度且低于合金固晶的温度下,基体中第二相颗粒的局部共晶熔化,这可能发生在焊接过程中的热影响区 (HAZ)。本文使用DICTRA程序结合严格评估的热力学和动力学数据库对Al-Cu系统中的构成液化进行了计算研究。计算机模拟结果与现有实验数据在数量上一致。演示了获得临界加热速率以避免结构液化的计算程序。发现临界加热速率与沉淀物尺寸的平方成反比。目前的计算程序可以很容易地扩展,以利用现有的热力学和动力学数据库预测多组分商业合金在焊接过程中对结构液化的敏感性。

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