Implementation of an Effective Bond Energy Formalism in the Multicomponent Calphad Approach.

IF 1.3 4区 工程技术 Q3 INSTRUMENTS & INSTRUMENTATION Journal of Research of the National Institute of Standards and Technology Pub Date : 2018-11-26 eCollection Date: 2018-01-01 DOI:10.6028/jres.123.020
Nathalie Dupin, Ursula R Kattner, Bo Sundman, Mauro Palumbo, Suzana G Fries
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引用次数: 8

Abstract

Most models currently used for complex phases in the calculation of phase diagrams (Calphad) method are based on the compound energy formalism. The way this formalism is presently used, however, is prone to poor extrapolation behavior in higher-order systems, especially when treating phases with complex crystal structures. In this paper, a partition of the Gibbs energy into effective bond energies, without changing its configurational entropy expression, is proposed, thereby remarkably improving the extrapolation behavior. The proposed model allows the use of as many sublattices as there are occupied Wyckoff sites and has great potential for reducing the number of necessary parameters, thus allowing shorter computational time. Examples for face centered cubic (fcc) ordering and the σ phase are given.

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多分量calphhad方法中有效键能形式的实现。
目前用于复杂相图计算(Calphad)方法的模型大多基于复合能量形式。然而,目前使用的这种形式方法在高阶系统中容易出现较差的外推行为,特别是在处理具有复杂晶体结构的相时。本文提出了在不改变构型熵表达式的情况下,将吉布斯能划分为有效键能的方法,从而显著改善了外推行为。所提出的模型允许使用尽可能多的子格,因为有占用的Wyckoff站点,并且有很大的潜力减少必要参数的数量,从而允许更短的计算时间。给出了面心立方(fcc)有序和σ相位的例子。
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33.30%
发文量
10
审稿时长
>12 weeks
期刊介绍: The Journal of Research of the National Institute of Standards and Technology is the flagship publication of the National Institute of Standards and Technology. It has been published under various titles and forms since 1904, with its roots as Scientific Papers issued as the Bulletin of the Bureau of Standards. In 1928, the Scientific Papers were combined with Technologic Papers, which reported results of investigations of material and methods of testing. This new publication was titled the Bureau of Standards Journal of Research. The Journal of Research of NIST reports NIST research and development in metrology and related fields of physical science, engineering, applied mathematics, statistics, biotechnology, information technology.
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