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Determination of the Solid-Liquid Interface Energy in the Al-Cu-Ag System

机译:Al-Cu-Ag系统中固液界面能的确定

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摘要

The solid-liquid interface energy, σ SL , is of major importance during phase transformation. It has a strong influence on solidification morphologies and the final grain structure. The “grain boundary groove in an applied temperature gradient” method developed by Gündüz et al.[6] was found to be suitable for measuring the solid-liquid interface energy in ternary alloy systems (e.g., Al-Cu-Ag). In order to measure the solid-liquid interface energy, a radial heat flow apparatus was constructed and assembled. This apparatus ensures a stable temperature gradient for hours and leads to grain boundary grooves in chemical equilibrium. After rapid quenching, the samples were metallographically prepared and the local curvature of the grooves was analyzed. To determine the interface energy, the Gibbs–Thomson equation was used, which requires the local curvature of the grain boundary grooves and the adherent local undercooling obtained from heat flux simulations on the scale of the grooves.
机译:在相变过程中,固液界面能σSL 非常重要。它对凝固形态和最终晶粒结构有很大影响。 Gündüz等人[6]提出的“在应用温度梯度下的晶界槽”方法。被发现适合于测量三元合金系统(例如Al-Cu-Ag)中的固液界面能。为了测量固液界面能,构造并组装了径向热流装置。该设备可确保数小时内稳定的温度梯度,并导致晶界沟槽处于化学平衡状态。快速淬火后,对样品进行金相制备并分析沟槽的局部曲率。为了确定界面能,使用了吉布斯-汤姆森方程,该方程需要晶界槽的局部曲率和在槽的尺度上通过热通量模拟获得的粘附局部过冷。

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  • 来源
    《Metallurgical and Materials Transactions A》 |2007年第9期|1956-1964|共9页
  • 作者单位

    Foundry Institute RWTH Aachen University Aachen D-52072 Germany;

    Foundry Institute RWTH Aachen University Aachen D-52072 Germany;

    Foundry Institute RWTH Aachen University Aachen D-52072 Germany;

    Foundry Institute RWTH Aachen University Aachen D-52072 Germany;

    Foundry Institute RWTH Aachen University Aachen D-52072 Germany;

    Department of Metallurgy University of Leoben Leoben A-8700 Austria;

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