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Transient eutectic solidification in In-Bi-Sn: Two-dimensional experiments and numerical simulation

机译:In-Bi-Sn中的瞬态共晶凝固:二维实验和数值模拟

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摘要

A technique widely used for the in situ observation of microstructure formation in transparent organic systems was applied to metallic alloys with low melting temperature. In the ternary eutectic alloy system In-Bi-Sn, we observed by light microscopy steady state and transient eutectic microstructure formation during unidirectional solidification in thin (5-10 μm) glass capillaries. Starting from an equilibrated planar single-phase front in a slightly off-eutectic alloy we studied the dynamic processes like nucleation of univariant, and finally invariant ternary eutectic when the liquid transforms into three distinct solid phases. Numerical microstructure simulation was performed by applying a general multiphase and multi-component phase field model which couples directly to the complete thermodynamic dataset of the In-Bi-Sn alloy system. Via comparison of the experimental to the simulated data some thermo-physical values like diffusion coefficients and critical undercooling for nucleation have been evaluated.
机译:广泛用于透明有机体系中微观结构形成的原位观察的技术应用于具有低熔融温度的金属合金。在三元共晶体系In-Bi-Sn中,我们通过光学显微镜观察了薄(5-10μm)玻璃毛细管中单向凝固过程中的稳态和瞬态共晶微观结构的形成。从稍微偏共晶合金中的平衡平面单相前沿开始,我们研究了动力学过程,例如单变量成核,以及当液体转变成三个不同的固相时最终变为不变的三元共晶。通过应用通用的多相和多组分相场模型进行数值微结构仿真,该模型直接耦合到In-Bi-Sn合金系统的完整热力学数据集。通过将实验数据与模拟数据进行比较,已评估了一些热物理值,例如扩散系数和用于成核的临界过冷。

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