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Effect of Travelling Magnetic Field on the Directional Solidification of refined Al-3.5 wt Ni alloys

机译:行进磁场对精制Al-3.5wt%Ni合金定向凝固的影响

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The specific objective of the paper is to investigate the effect of fluid flow on the development of a dendritic microstructure and more particularly on the columnar and equiaxed solidification regimes. A gradient furnace (BATMAF) with a possibility of applying a travelling magnetic field was designed for the solidification of aluminium-based alloys. The travelling magnetic field (TMF) drives a forced flow in the liquid above the solidifying interface. Some experiments are achieved in this furnace on an Al-Ni3.5wt% refined alloy. As a result, a significant change of the microstructure due to the transversal melt flow is observed. This work is performed in the framework of the CETSOL/MICAST Microgravity Application Projects of the European Space Agency (ESA).
机译:本文的具体目的是研究流体流动对树枝状微观结构的发展的影响,更具体地对柱状和等式的凝固制度。设计具有施加行驶磁场的梯度炉(BATMAF)用于凝固铝基合金。行驶磁场(TMF)驱动固化界面上方的液体中的强制流动。在该炉中在Al-Ni3.5wt%精制合金中实现了一些实验。结果,观察到由于横向熔体流动引起的微观结构的显着变化。这项工作是在欧洲航天局(ESA)的CETSOL / MICAST微争问申请项目的框架中进行的。

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