Co-Mo-Ta 系统的实验研究和热力学描述

IF 1.9 3区 材料科学 Q4 CHEMISTRY, PHYSICAL
Yu Shi, Cuiping Guo, Changrong Li, Zhenmin Du
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引用次数: 0

摘要

通过 SEM/EDS 和 XRD 方法研究了 38 种退火合金和 30 种铸造合金,以构建 Co-Mo-Ta 系统在 1273 和 1473 K 时的等温截面和液面投影。确定了 1273 K 时的 Co3Mo+λ3+μ 和 fcc(Co) + Co3Mo+λ3 三相区域,以及 1473 K 时的 fcc(Co)+λ3+μ 三相区域。在液面投影中,有八个主要凝固相区:fcc(Co)、bcc(Mo, Ta)、σ、μ、λ1、λ2、λ3 和 CoTa2,以及五个不变反应:liq.得到→fcc(Co)+λ3+μ、liq.→λ1+λ3+μ、liq.+λ2→λ1+λ3、liq.+CoTa2→μ+bcc(Mo, Ta)和liq.+bcc(Mo, Ta)+σ→μ五个不变反应。在实验结果的基础上,利用 CALPHAD 方法对 Co-Mo-Ta 体系进行了评估,以获得一组自洽的热力学参数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental investigation and thermodynamic description of the Co–Mo–Ta system

38 annealed and 30 as-cast alloys were investigated to construct the isothermal sections at 1273 and 1473 K and the liquidus surface projection of the Co–Mo–Ta system by SEM/EDS and XRD methods. The three-phase regions Co3Mo+λ3+μ and fcc(Co) + Co3Mo+λ3 at 1273 K, and the three-phase region fcc(Co)+λ3+μ at 1473 K, were determined. In the liquidus surface projection, eight primary solidification phase regions, fcc(Co), bcc(Mo, Ta), σ, μ, λ1, λ2, λ3 and CoTa2, and five invariant reactions, liq.→fcc(Co)+λ3+μ, liq.→λ13+μ, liq.+λ2→λ13, liq.+CoTa2→μ+bcc(Mo, Ta) and liq.+bcc(Mo, Ta)+σ→μ, were obtained. On the basis of the experimental results, the Co–Mo–Ta system was evaluated to obtain a set of self-consistent thermodynamic parameters by CALPHAD method.

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来源期刊
CiteScore
4.00
自引率
16.70%
发文量
94
审稿时长
2.5 months
期刊介绍: The design of industrial processes requires reliable thermodynamic data. CALPHAD (Computer Coupling of Phase Diagrams and Thermochemistry) aims to promote computational thermodynamics through development of models to represent thermodynamic properties for various phases which permit prediction of properties of multicomponent systems from those of binary and ternary subsystems, critical assessment of data and their incorporation into self-consistent databases, development of software to optimize and derive thermodynamic parameters and the development and use of databanks for calculations to improve understanding of various industrial and technological processes. This work is disseminated through the CALPHAD journal and its annual conference.
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