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首页> 外文期刊>International Journal of Machine Tools & Manufacture: Design, research and application >Influence of thermodynamics within molten pool on migration and distribution state of reinforcement during selective laser melting of AlN/AlSi 10Mg composites
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Influence of thermodynamics within molten pool on migration and distribution state of reinforcement during selective laser melting of AlN/AlSi 10Mg composites

机译:AlN / AlSi 10Mg复合材料选择性激光熔融过程中熔池内热力学对增强材料迁移和分布状态的影响

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摘要

A transient three dimensional model for describing the thermo-capillary convection and migration behavior and the resultant distribution state of reinforcing particles during selective laser melting of AlN/AlSi10Mg is proposed. The powder-solid transformation, temperature dependent physical properties and interaction between the reinforcement and the melt are taken into account. The effect of the laser energy per unit length (LEPUL) on the molten pool dynamics, cooling rate and the resultant sizes and distribution state of AlN reinforcement has been investigated. It shows that the thermo-capillary convection pattern changes from inward flow pattern to outward one, due to the appearance of the oxidation in molten pool. Therefore, the morphology of the top surface undergoes a continuous variation from the balling phenomenon, to the discontinuous tracks and finally to the formation of a flat and dense one. Meanwhile, both the clockwise and counterclockwise convection patterns are produced in the molten pool, caused by the interaction of reinforcing particles and the melt. An increase in LEPUL will significantly intensify the thermo-capillary convection whereas result in a decrease in the cooling rate of the molten pool. As LEPUL decreases from 1800 J/m to 450 J/m, the distribution state of AlN particles changes from the severe aggregation, then to the formation of partial aggregation and finally to the homogeneous distribution in the solidified matrix. The particle sizes of AlN reinforcement are experimentally acquired, which are in a good agreement with the results predicted by simulation. (C) 2015 Elsevier Ltd. All rights reserved.
机译:提出了一个瞬态三维模型,用于描述AlN / AlSi10Mg选择性激光熔化过程中热毛细对流和迁移行为以及增强颗粒的最终分布状态。考虑了粉末-固体相变,取决于温度的物理性质以及增强材料与熔体之间的相互作用。研究了单位长度的激光能量(LEPUL)对熔池动力学,冷却速率以及AlN增强材料的尺寸和分布状态的影响。结果表明,由于熔池中氧化的出现,热毛细对流模式从向内流动模式变为向外流动模式。因此,顶表面的形态从球形现象到不连续的轨迹,最终到形成平坦而致密的轨迹,经历了连续的变化。同时,由于增强颗粒和熔体的相互作用,在熔池中产生顺时针和逆时针对流模式。 LEPUL的增加将显着增强热毛细管对流,而导致熔池的冷却速率降低。当LEPUL从1800 J / m降低到450 J / m时,AlN颗粒的分布状态从严重的聚集转变为部分聚集,最后转变为凝固基质中的均匀分布。通过实验获得了AlN增强材料的粒径,与模拟预测的结果非常吻合。 (C)2015 Elsevier Ltd.保留所有权利。

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