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首页> 外文期刊>Journal of Materials Science >Simulation of equiaxed growth ahead of an advancing columnar front in directionally solidified Ni-based superalloys
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Simulation of equiaxed growth ahead of an advancing columnar front in directionally solidified Ni-based superalloys

机译:模拟定向凝固的镍基高温合金中先于柱状前沿的等轴生长

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Growth of equiaxed grains ahead of an advancing columnar front leads to the formation of as-cast defects, such as stray grains in single crystals or tree rings in vacuum arc remelting (VAR) ingots. In this study a combined cellular automata-finite difference model was applied to simulate dendrite growth and the formation of equiaxed grains in directionally solidified nickel-based superalloys. Realistic dendritic structures and complex solute concentration profiles at the growth front were simulated. It was observed that the solute interaction between primary dendrites occurs well below their tips, while strong solute interaction occurs between the diffusion fields of secondary and tertiary arms. The influence of thermal gradient and growth velocity on CET was investigated and the results were combined on a CET map, showing that a decrease in thermal gradient and an increase in growth rate favour a CET. (C) 2004 Kluwer Academic Publishers.
机译:等轴晶粒在前进的柱状前沿之前的生长会导致铸态缺陷的形成,例如单晶中的杂散晶粒或真空电弧重熔(VAR)铸锭中的年轮。在这项研究中,将组合的单元自动机-有限差分模型用于模拟定向凝固镍基高温合金中的枝晶生长和等轴晶的形成。模拟了真实的树突结构和生长前沿的复杂溶质浓度分布。观察到,初级树枝状晶体之间的溶质相互作用远低于其尖端,而二级和三级臂的扩散场之间则发生强的固溶相互作用。研究了热梯度和生长速度对CET的影响,并将结果结合在CET图上,表明热梯度的降低和生长速率的提高有利于CET。 (C)2004 Kluwer学术出版社。

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