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首页> 外文期刊>Journal of Materials Science >A1-L12 interfacial free energies from data on coarsening in five binary Ni alloys, informed by thermodynamic phase diagram assessments
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A1-L12 interfacial free energies from data on coarsening in five binary Ni alloys, informed by thermodynamic phase diagram assessments

机译:热力学相图评估为基础的五种二元镍合金粗化数据的A1-L12 界面自由能

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摘要

The data on coarsening of γ′-type precipitates (Ni3X, with the L12 crystal structure) in Ni–Al, Ni–Ga, Ni–Ge, Ni–Si, and Ni–Ti alloys are re-evaluated in the context of recent (TIDC) and classical (LSW) theories of coarsening, with the objective of ascertaining the best values possible of interfacial free energies, σ, of the γ/γ′ interfaces in these five alloy systems. The re-evaluations include fitting of the particle size distributions, reanalyzing all the available data on the kinetics of particle growth and kinetics of solute depletion, and using thermodynamic assessments of the binary alloy phase diagrams to calculate curvatures of the Gibbs free energies of mixing. The product of the work is two sets of interfacial free energies, one set for the analysis using the recent TIDC theory and the other for the analysis using the classical LSW theory. The TIDC-based analysis yields lower values of σ by about a factor of 2/3. All the interfacial energies are considerably larger, by factors ranging from ~4 to 10, than those previously reported, which were for the most part calculated from data on coarsening assuming ideal-solution thermodynamics. In the TIDC theory the width of the interface, δ, is allowed to increase with particle size, r. A simple equation relating σ to the ratio of the gradient energy and δ is used to show that σ can remain constant even though δ increases with r. Published work supporting this contention is presented and discussed.
机译:Ni-Al,Ni-Ga,Ni-Ge,Ni-Si和Ni-Ti合金中γ'型析出物(Ni3 X,具有L12 晶体结构)的粗化数据在最近的粗化理论(TIDC)和经典的粗略理论(LSW)的背景下,对这些元素进行了重新评估,目的是确定这五个合金系统中γ/γ'界面的界面自由能σ的最佳值。重新评估包括对粒度分布的拟合,重新分析所有有关颗粒生长动力学和溶质耗尽动力学的可用数据,以及使用二元合金相图的热力学评估来计算吉布斯混合自由能的曲率。这项工作的结果是两组界面自由能,一组用于使用最新的TIDC理论进行分析,另一组用于使用经典LSW理论进行分析。基于TIDC的分析产生的σ较低值大约为2/3。所有的界面能都比以前报道的大得多,约在4到10倍之间,这主要是根据假设理想溶液热力学的粗化数据计算得出的。在TIDC理论中,界面的宽度δ随粒径r的增加而增加。用一个简单的方程式将σ与梯度能量和δ的比率相关联,可以证明即使δ随着r的增加,σ也可以保持恒定。提出并讨论了支持该论点的已发表工作。

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  • 来源
    《Journal of Materials Science 》 |2011年第14期| p.4832-4849| 共18页
  • 作者

    Alan J. Ardell;

  • 作者单位

    Division of Materials Research, National Science Foundation, Arlington, VA, 22230, USA;

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  • 正文语种 eng
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