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An analytical-numerical model of laser direct metal deposition track and microstructure formation

机译:激光直接金属沉积轨迹与组织形成的解析数值模型

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Multiple analytical and numerical models of the laser metal deposition process have been presented, but most rely on sequential solution of the energy and mass balance equations or discretization of the problem domain. Laser direct metal deposition is a complex process involving multiple interdependent processes which can be best simulated using a fully coupled mass-energy balance solution. In this work a coupled analytical-numerical solution is presented. Sub-models of the powder stream, quasi-stationary conduction in the substrate and powder assimilation into the area of the substrate above the liquidus temperature are combined. An iterative feedback loop is used to ensure mass and energy balances are maintained at the melt pool. The model is verified using Ti-6Al-4V single track deposition, produced with a coaxial nozzle and a diode laser. The model predictions of local temperature history, the track profile and microstructure scale show good agreement with the experimental results. The model is a useful industrial aid and alternative to finite element methods for selecting the parameters to use for laser direct metal deposition when separate geometric and microstructural outcomes are required.
机译:已经提出了激光金属沉积过程的多种分析模型和数值模型,但是大多数模型依赖于能量和质量平衡方程的顺序求解或问题域的离散化。激光直接金属沉积是一个复杂的过程,涉及多个相互依赖的过程,可以使用完全耦合的质量能平衡解决方案对其进行最佳模拟。在这项工作中,提出了一种耦合的解析数字解决方案。粉末流的子模型,基底中的准静态传导以及液相线温度以上的粉末同化到基底区域的子模型被组合在一起。迭代反馈回路用于确保熔池处的质量和能量平衡。该模型使用Ti-6Al-4V单轨沉积进行验证,该沉积由同轴喷嘴和二极管激光器产生。局部温度历史,轨道轮廓和微观结构尺度的模型预测与实验结果吻合良好。该模型是有用的工业辅助工具,是有限元方法的替代方法,用于在需要单独的几何和微观结构结果时选择用于激光直接金属沉积的参数。

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