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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Microsegregation behavior of Inconel 718 superalloy prepared by electron beam smelting layered solidification technology
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Microsegregation behavior of Inconel 718 superalloy prepared by electron beam smelting layered solidification technology

机译:电子束熔炼层凝固技术制备的Inconel 718超合金的微量测定行为

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Based on the principle of additive manufacturing in a layer-by-layer manner, a new electron beam smelting layered solidification technology (EBS-LST) was curried out to fabricated Inconel 718 superalloy. The microsegregation coefficient and the redistribution were calculated. A well-recognized model associated with secondary dendrite arm spacing was used to investigate the cooling rate during the solidification. The distribution of the surface temperature of the molten pool during EBS-LST was calculated based on the Gaussian distribution. The results show that there is a dendritic-cellular interface with a width of 400 mu m between the layers, and the secondary dendrite arm spacing approximates 23 mm. The value of microsegregation coefficient of Nb, Mo and Ti is approximately 1.97, 1.52 and 1.13, respectively. Its solute distribution is more uniform than conventional processes, which attributed to the high cooling rate of the solidification process. (c) 2020 Elsevier B.V. All rights reserved.
机译:基于逐层方式的添加剂制造原理,将新的电子束熔炼层状凝固技术(EBS-LST)进行摩托,以制造的Inconel 718超合金。计算微量测定系数和再分配。使用与二级树枝状臂间距相关的公认的模型用于研究凝固过程中的冷却速率。基于高斯分布计算EBS-LST期间熔池的表面温度的分布。结果表明,在层之间存在宽度为400μm的树枝状细胞界面,并且次级树枝架间隔近似于23mm。 Nb,Mo和Ti的微量测定系数的值分别为约1.97,1.52和1.13。其溶质分布比常规方法更均匀,归因于凝固过程的高冷却速率。 (c)2020 Elsevier B.v.保留所有权利。

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