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Microstructural evolution during remelting of laser surface alloyed hyper-monotectic Al-Bi alloy

机译:激光表面合金化的超单晶Al-Bi合金重熔过程中的组织演变

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摘要

The present investigation explores the possibility of synthesizing a two-phase microstructure consisting of a fine dispersion of bismuth particles in an aluminium matrix using the laser surface alloying technique. The possibility of controlling the size distribution of bismuth particles by subsequent remelting is also investigated. The microstructural analysis of the surface alloyed samples shows that the average size of the bismuth particles reduces with increase in laser scan speed. In order to understand the factors that determine the nature of the size distribution of the particles, a detailed model is developed. The model incorporates heat and fluid flow induced by the laser to arrive at the evolution of the temperature and velocity of the melt in three dimensions. Using these as inputs, a kinetic analysis of the nucleation, growth and coarsening induced by collision-controlled coalescence of the bismuth particles from the melt is carried out. Comparison with the experiments indicates that coalescence due to convection plays an important role in the evolution of the size distribution of bismuth particles.
机译:本研究探索了使用激光表面合金化技术合成由铋颗粒在铝基质中精细分散组成的两相微观结构的可能性。还研究了通过随后的重熔来控制铋颗粒尺寸分布的可能性。表面合金化样品的微观结构分析表明,铋颗粒的平均尺寸随激光扫描速度的增加而减小。为了理解决定颗粒尺寸分布性质的因素,开发了详细的模型。该模型结合了激光诱导的热量和流体流动,从而在三个维度上得出了熔体的温度和速度的演变。使用这些作为输入,对铋颗粒从熔体中碰撞控制的聚结所引起的成核,生长和粗化进行了动力学分析。与实验的比较表明,由于对流产生的聚结在铋颗粒尺寸分布的演变中起着重要作用。

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