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首页> 外文期刊>International Journal of Mechanical Sciences >The relationship between convection mechanism and solidification structure of the iron-based molten pool in metal laser direct deposition
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The relationship between convection mechanism and solidification structure of the iron-based molten pool in metal laser direct deposition

机译:金属激光直接沉积中铁基熔池凝固结构与凝固结构的关系

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摘要

Metal Laser Direct Deposition (MLDD) is an additive manufacturing method involving multiple physical processes. Due to the existence of various complicated physical processes inside the molten pool, it is necessary to study the convection mode and solidification morphology in the molten pool. The convection of the molten pool generates heat and rapid solute transfer in the molten pool, which has an important influence on the solidification morphology of the deposited layer. In this study, the constructed MLDD numerical model was used to analyze the internal convection morphology of the molten pool. The convection form in the molten pool was revealed by setting different physical conditions. The results show that the Marangoni movement is the main factor in the formation of cladding layers. The impact force generated by the protective gas has an influence on the convective morphology, while the influence of gravity on the convection is limited. Through the numerical calculation, the relevant solidification parameters of the molten pool were obtained and verified by the MLDD experiment of the iron-based alloy powder. Numerical analysis and experimental results show that the Marangoni motion caused by the temperature gradient is the decisive factor leading to the solidification structure, and the phenomenon of columnar to equiaxed transition (CET) from the bottom to the top of the molten pool occurs.
机译:金属激光直接沉积(MLDD)是一种涉及多种物理过程的添加制造方法。由于熔池内部存在各种复杂的物理过程,有必要研究熔池中的对流模式和凝固形态。熔池的对流产生熔池中的热量和快速溶质转移,这对沉积层的凝固形态具有重要影响。在该研究中,建立的MLDD数值模型用于分析熔池的内部对流形态。通过设定不同的物理条件,揭示了熔池中的对流形式。结果表明,Marangoni运动是覆层层形成的主要因素。由保护气体产生的冲击力对对流形态产生影响,而重力对对流的影响是有限的。通过数值计算,通过铁基合金粉末的MLDD实验获得熔池的相关凝固参数并验证。数值分析和实验结果表明,温度梯度引起的Marangoni运动是导致凝固结构的决定性因子,以及从熔池的底部到顶部的柱状到等轴过渡(CET)的现象。

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