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Numerical simulation on evolution process of molten pool and solidification characteristics of melt track in selective laser melting of ceramic powder

机译:陶瓷粉体选择性激光熔化过程中熔池演化过程及熔体轨迹凝固特性的数值模拟

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? 2022 Elsevier Ltd and Techna Group S.r.l.A three-dimensional high-fidelity physical model for selective laser melting (SLM) of ceramic powder was created based on computational fluid dynamics (CFD) to examine the physical mechanism of molten pool and solidified tracks at mesoscopic scale. The discrete element method (DEM) was used to generate a randomly packed powder bed, and the volume-of-fluid method (VOF) was applied to dynamically monitor the free surface of the molten pool. The formation mechanism and evolution characteristics of the molten pool were found and analyzed, and the effects of laser power on the typical characteristics of solidified ceramic tracks of SLM were investigated. The molten pool was eventually solidified into a concave geometric shape track by surface tension. The laser power played a significant impact on the shaping quality of solidified ceramic track. When the laser power was too low, the melt track suffers from severe porosity and distortion defects, which can be effectively solved with increasing laser power. The simulation results were validated via single track selective laser melting of TiC ceramic powder.
机译:?2022 Elsevier Ltd 和 Techna Group S.r.l.基于计算流体力学 (CFD) 建立了陶瓷粉末选择性激光熔化 (SLM) 的三维高保真物理模型,以研究熔池和凝固轨迹在细观尺度上的物理机理。采用离散元法(DEM)生成随机堆积粉末床,采用流体体积法(VOF)动态监测熔池自由表面。发现并分析了熔池的形成机理和演化特征,研究了激光功率对SLM凝固陶瓷轨迹典型特征的影响。熔池最终通过表面张力凝固成凹形几何形状的轨道。激光功率对固化陶瓷轨道的成型质量有显著影响。当激光功率过低时,熔体轨迹存在严重的孔隙和变形缺陷,随着激光功率的增加,可以有效解决。通过TiC陶瓷粉体的单轨选择性激光熔化验证了仿真结果。

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