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Multiphase solidification in multicomponent alloys

机译:多组分合金中的多相凝固

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Multiphase solidification in multicomponent alloys is pertinent to many commercial materials and industrial processes, while also raising challenging questions from a fundamental point of view. Within the past few years, research activities dedicated to multiphase solidification of ternary and multicomponent alloys experienced considerable amplification. This paper gives an overview of our present understanding in this field and the experimental techniques and theoretical methods research relies on. We start with an introduction to thermodynamic databases and computations and emphasize the importance of thermophysical property data. Then, we address pattern formation during coupled growth in ternary alloys and cover microstructure evolution during successive steps of phase formation in solidifying multicomponent alloys. Subsequently, we review advances made in phase field modeling of multiphase solidification in binary and multicomponent alloys, including various approaches to crystal nucleation and growth. Concluding, we address open questions and outline future prospects on the basis of a close interaction among scientists investigating the thermodynamic, thermophysical and microstructural properties of these alloys.
机译:多组分合金中的多相凝固与许多商业材料和工业过程有关,同时也从根本的角度提出了具有挑战性的问题。在过去的几年中,致力于三元和多组分合金多相凝固的研究活动得到了极大的发展。本文概述了我们目前在该领域的理解以及实验技术和理论方法所依赖的研究。我们首先介绍热力学数据库和计算,并强调热物理性质数据的重要性。然后,我们解决了三元合金耦合生长过程中的图案形成问题,并涵盖了在凝固多组分合金中相形成的连续步骤中的微观结构演变。随后,我们回顾了在二元和多组分合金中进行多相凝固的相场建模方面取得的进展,包括各种晶体成核和生长方法。最后,我们在研究这些合金的热力学,热物理和微观结构特性的科学家之间密切互动的基础上,提出了未解决的问题并概述了未来的前景。

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