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Multiphysics Simulation of Nucleation and Grain Growth in Selective Laser Melting of Alloys

机译:核细胞核化合物和晶粒生长的多体学仿真

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摘要

Selective laser melting (SLM) builds parts by selectively melting metallic powders layer by layer with a high-energy laser beam. It has a variety of applications in aerospace, medical device, and other low-volume manufacturing. Nevertheless, the lack of fundamental understanding of the process-structure-property relationship for better quality control inhibits wider applications of SLM. Recently, a mesoscale simulation approach, called phase field and thermal lattice Boltzmann method (PF-TLBM), was developed to simulate micro-structure evolution of alloys in SLM melt pool with simultaneous consideration of solute transport, heat transfer, phase transition, and latent heat effect. In this paper, a nucleation model is introduced in the PF-TLBM framework to simulate heterogeneous nucleation at the boundary of the melt pool in SLM. A new method is also developed to estimate the thermal flux out of the SLM melt pool model given a constant cooling rate. The effects of latent heat and cooling rate on dendritic morphology and solute distribution are studied. The simulation results of AlSilOMg alloy suggest that the Inclusion of latent heat is necessary because it reveals the details of the formation of secondary arms, reduces the overes-timation of microsegregation, and provides more accurate kinetics of dendritic growth.
机译:选择性激光熔化(SLM)通过用高能激光束选择性熔化金属粉末层来构建零件。它在航空航天,医疗装置和其他低批量生产中拥有各种应用。然而,对更好质量控制的过程结构性质关系缺乏基本的理解抑制了SLM的更广泛的应用。近来,开发了一种名为相位场和热晶格Boltzmann方法(PF-TLBM)的Messcale仿真方法,以模拟SLM熔池中合金的微结构演变,同时考虑溶质转运,传热,相转变和潜伏热效果。在本文中,在PF-TLBM框架中引入了成核模型,以模拟SLM中熔体池边界处的异质成核。还开发了一种新方法来估计给定恒定冷却速率的SLM熔体池模型中的热量通量。研究了潜热和冷却率对树枝状形态和溶质分布的影响。 Alsilomg合金的仿真结果表明包含潜热是必要的,因为它揭示了二次臂的形成细节,减少了微量测定的胚层时间,并提供了更准确的树突生长动力学。

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