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Tungsten grain separation during initial stage of liquid phase sintering

机译:液相烧结初期钨晶粒的分离

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The initial stage, the first few seconds of liquid phase sintering has been investigated in experiments using a tungsten heavy alloy with low tungsten content. The heavy alloy has been melted in a temperature gradient for short periods, ∼9 s in an ellipsoid mirror furnace. During the liquid phase sintering at about 1470°C, a penetration followed by a remarkably rapid separation and dispersion of the tungsten grains by the molten matrix occur. The suggested explanation for this grain separation and dispersion is based on the effect of composition gradients in the liquid matrix and a theory based on interagglomerate melt swelling due to a Kirkendall effect.
机译:在初始阶段,液相烧结的最初几秒钟已在实验中使用低钨含量的钨重合金进行了研究。重合金已在椭圆形镜炉中以约9 s的温度梯度短暂熔化。在约1470℃的液相烧结过程中,发生熔融,随后熔融基体使钨晶粒显着快速分离和分散。对于这种晶粒分离和分散的建议解释是基于液体基体中成分梯度的影响,以及基于柯肯达尔效应而导致的团聚熔体溶胀的理论。

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