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Diffusion Controlled Grain Triple Junctions Wetting in Metals

机译:金属中的扩散控制晶粒三结润湿

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The interaction between liquid and solid metals where the liquid-solid interface contains three grain boundary lines which meet in triple junction point is considered. The assumption that the liquid grooves may be formed not only along grain boundaries but along triple junctions is presented. The variation of Gibbs energy during the formation of triangle pyramidal groove along triple junction is determined. The dependence of Gibbs energy variation from groove dimensions shows that the wetting of triple junctions occurs by lower temperatures than the wetting of grain boundaries. This result allows to take into account the existence of grain size effect on the liquid phase penetration depth into the polycrystalline sample. The proposed mechanism of wetting in polycrystalline metal contains two stages: the outstrip melt penetration along triple junctions and the liquid grooving on grain boundaries forming the triple junctions. One of the processes - triple junction diffusion or liquid diffusion - may control the wetting in the polycrystalline sample.
机译:考虑了液体与固体金属之间的相互作用,其中液体-固体界面包含三个在三个结点相遇的晶界线。提出了不仅可以沿着晶界而且可以沿着三重结形成液槽的假设。确定了沿三重结的三角锥槽形成过程中吉布斯能量的变化。吉布斯能量变化与沟槽尺寸的关系表明,三结的润湿发生的温度低于晶界的润湿温度。该结果允许考虑晶粒尺寸对液相进入多晶样品的渗透深度的影响。拟议的多晶金属润湿机制包括两个阶段:沿着三重结的熔体穿透渗透和形成三重结的晶界上的液体开槽。过程之一-三结扩散或液体扩散-可以控制多晶样品的润湿。

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