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MELT POOL GEOMETRY SIMULATIONS FOR POWDER-BASED ELECTRON BEAM ADDITIVE MANUFACTURING

机译:基于粉末的电子束增材制造的熔池几何模拟

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It is known that the melt pool geometry and dynamics strongly affect the build part properties in metal-based additive manufacturing (AM) processes. Thus, process temperature predictions may offer useful information of the melt pool evolution during the heating-cooling cycle. A transient thermal modeling for powder-based electron beam additive manufacturing (EBAM) process has been developed for process temperature simulations, considering temperature and porosity dependent thermal properties. In this study, the thermal model is applied to evaluate, for the case of Ti-6Al-4V in EBAM, the process parameter effects, such as the beam speed, on the temperature profile along the melt scan and the corresponding melt pool geometric characteristics such as the length-depth ratio and the cross-sectional area. The intent is to establish a process envelop for part quality control.
机译:众所周知,熔池的几何形状和动力学会严重影响金属基增材制造(AM)工艺中的零件性能。因此,过程温度预测可以提供加热-冷却循环期间熔池演变的有用信息。考虑到温度和孔隙率相关的热特性,已经开发了用于基于粉末的电子束增材制造(EBAM)过程的瞬态热模型,用于过程温度模拟。在这项研究中,对于在EBAM中的Ti-6Al-4V,应用热模型评估过程参数的影响,例如束速度对沿熔体扫描的温度分布以及相应的熔池几何特征的影响如长深比和横截面积。目的是建立用于零件质量控制的过程信封。

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