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首页> 外文期刊>Journal of Materials Science >Composition evolution and coalescence behavior of titanium oxide particles in Iron-Nickel binary alloy melt
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Composition evolution and coalescence behavior of titanium oxide particles in Iron-Nickel binary alloy melt

机译:铁 - 镍二元合金熔体中氧化钛颗粒的组成演化与聚结行为

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Particle coalescence refers to the dispersed particles in a suspension sticking to each other through the random collisions. This phenomenon is of vital importance for the process control and mechanical property of the metallic materials, such as Iron-Nickel binary alloy. The present work performed a fundamental study of the composition evolution and coalescence behavior of the Ti-oxide particles in the liquid Iron-Nickel binary alloy. The effect of the titanium addition amount on the composition of the inclusion particles is investigated through the Ti deoxidation experiments. The particle features are characterized by using a potentiostatic electrolytic extraction method. It shows that when the amount of the Ti addition arrives at a certain degree, the state of the oxide particles changes from the liquid to the solid. Meanwhile, the formation of the cluster can occur. The coalescence efficiency and attraction forces of the particles are calculated theoretically. It is found that the coalescence degree of the solid TiOx (x=1.5-1.67) particle is close to that of the Al2O3 particle. The initial sintering behavior of the particles after coalescence-collision is analyzed by measuring the sintered neck radius. The apparent self-diffusion of the TiOx (x=1.5-1.67) particle is approximately 1.7 times larger than that of the Al2O3 particle.
机译:颗粒聚结是指通过随机碰撞彼此粘附的悬浮液中的分散颗粒。这种现象对于金属材料的过程控制和机械性能至关重要,例如铁镍二元合金。本作研究对液铁镍二元合金中Ti氧化物颗粒的组成演化和聚结行为进行了基本的研究。通过Ti脱氧实验研究了钛添加量对包容颗粒组成的影响。颗粒特征的特征在于使用电位电解提取方法。它表明,当Ti加法的量以一定程度到达时,氧化物颗粒的状态从液体变为固体。同时,可能发生群集的形成。从理论上计算颗粒的聚结效率和吸引力。发现固体TiOx(x = 1.5-1.67)颗粒的聚结程度接近Al 2 O 3颗粒的聚粒子。通过测量烧结颈部半径分析聚结碰撞后颗粒的初始烧结行为。 TiOx(X = 1.5-1.67)颗粒的表观自扩散比Al 2 O 3颗粒的粒度大约1.7倍。

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