Progress on High Magnetic Field-Controlled Transport Phenomena and Their Effects on Solidification Microstructure

Progress on High Magnetic Field-Controlled Transport Phenomena and Their Effects on Solidification Microstructure
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强磁场控制输运现象及其对凝固组织影响的研究进展

DOI:
10.2355/isijinternational.54.516
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发表时间:
2014-03
期刊:
影响因子:
1.8
通讯作者:
He, Jicheng
He, Jicheng
中科院分区:
材料科学3区
文献类型:
--
作者:
Wang, Kai;Gao, Pengfei;Liu, Yin;He, Jicheng

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本文综述和分析了近年来强磁场对流体中对流、溶质扩散、溶质或相迁移等输运现象的影响。由洛伦兹力、热电磁力(一种特殊的洛伦兹力)和磁力或其组合提供的选择性使得能够控制液体中的传输现象。这种可能性,以及传输现象影响合金凝固的能力,允许对凝固微观结构进行一定程度的控制。因此,最近的相关工作,可以找到处理的影响,高磁场的传输现象和相应的凝固微观结构演变的合金,基于洛伦兹,热电磁,和磁力或其组合。
The recent contributions on changes induced by high magnetic fields in transport phenomena, such as convection, solute diffusion, solute or phase migration in the liquid, are reviewed and analyzed. Selectivity provided by the Lorentz, thermoelectromagnetic (a special kind of Lorentz force), and magnetic forces or combinations enables the control of transport phenomena in liquids. This possibility, together with the capability of the transport phenomena to affect solidification in alloys, allows a level of control over solidification microstructures. As a result, recent relevant work can be found dealing with the effects of high magnetic fields on transport phenomena and the corresponding solidification microstructure evolution of alloys, based on the Lorentz, thermoelectromagnetic, and magnetic forces or combinations thereof.
DOI: 10.1063/1.3535270
发表时间: 2011-03
影响因子: 3.2
作者:
Zhi Sun;M. Guo;J. Vleugels;O. Biest;B. Blanpain
通讯作者: Zhi Sun;M. Guo;J. Vleugels;O. Biest;B. Blanpain