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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Quantifying the Solute Drag Effect on Ferrite Growth in Fe-C-X Alloys Using Controlled Decarburization Experiments
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Quantifying the Solute Drag Effect on Ferrite Growth in Fe-C-X Alloys Using Controlled Decarburization Experiments

机译:使用受控脱碳实验量化Fe-C-X合金中溶质对铁素体生长的拖曳效应

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The kinetics of ferrite growth in the Fe-C-Co and Fe-C-Si systems has been" quantified using controlled decarburization experiments. The Fe-C-Co system is a particularly interesting system since a large range of Co contents can be considered providing a suitable data set for exami nation of the composition dependence of the solute drag effect. Six Fe-C-Co alloys containing Co from 0.5 to 20 pct have been considered. Three Fe-C-Si alloys have also been considered and each has been transformed at three temperatures proving a suitable data set for examining the temperature dependence of the solute drag effect. This data set, along with ferrite growth data from decarburization experiments on an Fe-C-2Cr alloy has been used to test the ferrite growth model proposed in the companion article by Zurob et al. It is shown that this model for ferrite growth, that includes diffusional dissipation due to interaction between the solute and the migrating boundary, quantitatively captures both the temperature and composition dependence of the deviation of experimental ferrite growth kinetics from the PE and/or LENP models.
机译:Fe-C-Co和Fe-C-Si系统中铁素体生长的动力学已使用受控脱碳实验进行了“量化”。Fe-C-Co系统是一个特别有趣的系统,因为可以考虑大范围的Co含量为研究溶质拖曳效应的成分依赖性提供了一个合适的数据集,已考虑了六种含钴量为0.5至20 pct的Fe-C-Co合金,还考虑了三种Fe-C-Si合金,每种均具有在三个温度下进行了转化,证明了合适的数据集可用于检测溶质拖曳效应的温度依赖性,该数据集以及Fe-C-2Cr合金脱碳实验中的铁素体生长数据已用于测试铁素体生长模型Zurob等人在同伴文章中提出的结果表明,该铁素体生长模型包括由于溶质和迁移边界之间相互作用而引起的扩散耗散,定量地捕获了两个PE和/或LENP模型的实验铁素体生长动力学偏差的性质和成分依赖性。

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