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Microscopic simulation of the effect of process parameters by the Marangoni convection on the temperature field of Inconel 718 alloy using selective laser melting

机译:选择性激光熔化对Marangoni对流工艺参数对Inconel 718合金温度场影响的微观模拟

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A 3D transient finite element model of Inconel 718 nickel-based superalloy processed by selective laser melting was developed to study the heat flux in the molten pool under the condition of different process parameters and its effect on the temperature field and the shape of molten pool, in which a solid heat transfer module and a laminar flow module in the finite element simulation software COMSOL Multiphysics was applied. In the simulation several special phenomenon characterized with SLM process was considered, such as the interaction between the laser and material with stochastic porosity distribution on powder bed, and the nonlinear change of thermophysical properties due to the state change of material and the influence of the Marangoni effect in the molten pool. The results show that the Marangoni effect caused by the surface tension of molten pool makes the convective heat flux play a leading role in the heat transfer process in the molten pool, and its depth/width ratio is changed by changing the magnitude and direction of the heat flow, what determines the shape of molten pool. The increase in laser power or reduced scanning speed can increase the heat input per unit time, and then lead to a Marangoni convection enhancement within the molten pool, thus enlarge the size of the molten pool. The experimental results are in good agreement with the simulation results.
机译:建立了Inconel 718镍基高温合金经选择性激光熔融处理的3D瞬态有限元模型,以研究不同工艺参数条件下熔池中的热通量及其对温度场和熔池形状的影响,其中使用了有限元模拟软件COMSOL Multiphysics中的固体传热模块和层流模块。在模拟中,考虑了几种具有SLM工艺特征的特殊现象,例如激光与粉末床上具有随机孔隙分布的材料之间的相互作用,以及由于材料状态变化和Marangoni影响而引起的热物理性质的非线性变化。在熔池中起作用。结果表明,熔池表面张力引起的Marangoni效应使对流热流在熔池传热过程中起主导作用,通过改变熔池的大小和方向改变了熔池的纵横比。热流决定了熔池的形状。激光功率的增加或扫描速度的降低会增加单位时间内输入的热量,然后导致熔池内的马兰戈尼对流增强,从而增大熔池的大小。实验结果与仿真结果吻合良好。

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