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首页> 外文期刊>Journal of Materials Science & Technology >A Model for Evaluation of Grain Sizes of Aluminum Alloys with Grain Refinement Additions
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A Model for Evaluation of Grain Sizes of Aluminum Alloys with Grain Refinement Additions

机译:添加细化晶粒的铝合金晶粒尺寸评估模型

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Based on the assumption that the nucleation substrates are activated by constitutional undercooling generated by an adjacent grain growth and solute distribution during the initial solidification, a model for calculation of the grain size of aluminum alloys with the grain refinement is developed, where the nucleation is dominated by two parameters, i.e. growth restriction factor Q and the undercooling parameter P. The growth restriction factor Q is proportional to the initial rate of constitutional undercooling development and can be used directly as a criterion of the grain refinement in the alloys with strong potential nucleation particles. The undercooling parameter P can be regarded as the maximum of constitutional undercooling △T_c. For weak potential nucleation particles, the use of RGS would be more accurate. The experimental data of the grain refinement of pure aluminum and AISi7 alloys are coincident predicted results with the model.
机译:基于初始凝固过程中相邻晶粒生长和溶质分布产生的结构性过冷激活成核基底的假设,建立了以晶粒细化为基础计算铝合金晶粒尺寸的模型,其中以成核为主导由生长限制因子Q和过冷参数P这两个参数决定。生长限制因子Q与组织过冷发展的初始速率成正比,可以直接用作具有强势成核颗粒的合金中晶粒细化的标准。过冷参数P可以看作是组织过冷的最大值△T_c。对于弱势成核颗粒,使用RGS会更准确。纯铝和AISi7合金晶粒细化的实验数据与模型相符。

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