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Relevance of electrical current distribution to the forced flow and grain refinement in solidified Al-Si hypoeutectic alloy

机译:电流分布与凝固的Al-Si低分解合金强制流动和晶粒细化的相关性

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Significant grain refinement in cast metals can be achieved through the application of electric currents during the solidification process. The present paper investigates the distribution of electric currents on the grain size of solidified Al-7wt.%Si alloy under the application of electric current with constant parameters flowing through two parallel electrodes into the melt within a cylindrical mould. The distribution of electric current was controlled by applying an electrical insulation material coating, boron nitride (NB), to the sidewall of the electrodes. Experimental results showed that the employment of these insulated electrodes can reduce grain size in comparison with the reference case of electrodes without BN coating. Flow measurements were performed in Ga-20wt.%In-12wt.%Sn liquid metal. Higher intensity forced flow occurred when the sidewall of the electrodes was insulated. In order to understand the underlying mechanism behind the stronger forced flow, corresponding numerical simulations were performed to reveal the distributions of the electric current, magnetic field, Lorentz force, and the resultant forced flow. The results achieved indicate that the mechanism of grain refinement driven by electric current is dendrite fragmentation induced by forced flow. In addition, a novel approach to enhance the grain refinement without additional input of current energy was developed.
机译:通过在凝固过程中施加电流,可以通过在凝固过程中施加电流来实现铸造金属中的显着晶粒细化。本文研究了电流在电流下施加电流的晶粒尺寸上的电流分布,其具有恒定参数流过两个平行电极的恒定参数进入圆柱形模具中的熔体。通过将电绝缘材料涂层,氮化物(Nb)施加到电极的侧壁来控制电流的分布。实验结果表明,与没有BN涂层的电极的参考情况相比,这些绝缘电极的使用可以减少粒度。在Ga-20wt中进行流量测量。%In-12wt。%sn液态金属。当电极的侧壁被绝缘时发生较高的强度强制流动。为了理解强制强制流程背后的潜在机制,进行了相应的数值模拟以揭示电流,磁场,洛伦兹力和所得强制流动的分布。实现的结果表明,电流驱动的晶粒细化机制是由强制流动诱导的枝晶碎片。此外,还开发了一种在没有当前能量额外输入的情况下提高晶粒细化的新方法。

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