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首页> 外文期刊>Journal of engineering materials and technology >Thermofluid Properties of TI-6Al-4V Melt Pool in Powder-Bed Electron Beam Additive Manufacturing
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Thermofluid Properties of TI-6Al-4V Melt Pool in Powder-Bed Electron Beam Additive Manufacturing

机译:粉末床电子束增材制造中TI-6Al-4V熔池的热流体性质

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摘要

Electron beam additive manufacturing (EBAM) is a powder-bed fusion additive manufacturing (AM) technology that can make full density metallic components using a layer-by-layer fabrication method. To build each layer, the EBAM process includes powder spreading, preheating, melting, and solidification. The quality of the build part, process reliability, and energy efficiency depends typically on the thermal behavior, material properties, and heat source parameters involved in the EBAM process. Therefore, characterizing those properties and understanding the correlations among the process parameters are essential to evaluate the performance of the EBAM process. In this study, a three-dimensional computational fluid dynamics (CFD) model with Ti-6Al-4V powder was developed incorporating the temperature-dependent thermal properties and a moving conical volumetric heat source with Gaussian distribution to conduct the simulations of the EBAM process. The melt pool dynamics and its thermal behavior were investigated numerically, and results for temperature profile, melt pool geometry, cooling rate and variation in density, thermal conductivity, specific heat capacity, and enthalpy were obtained for several sets of electron beam specifications. Validation of the model was performed by comparing the simulation results with the experimental results for the size of the melt pool.
机译:电子束增材制造(EBAM)是一种粉末床熔融增材制造(AM)技术,可以使用逐层制造方法制造全密度金属部件。为了构建每一层,EBAM工艺包括散布粉末,预热,熔化和固化。构件的质量,过程可靠性和能效通常取决于EBAM过程中涉及的热行为,材料特性和热源参数。因此,表征这些特性并理解工艺参数之间的相关性对于评估EBAM工艺的性能至关重要。在这项研究中,建立了具有Ti-6Al-4V粉末的三维计算流体动力学(CFD)模型,该模型结合了温度相关的热特性和具有高斯分布的圆锥形体积热源,以进行EBAM过程的模拟。数值研究了熔池动力学及其热行为,并获得了几套电子束规格的温度曲线,熔池几何形状,冷却速率以及密度,导热率,比热容和焓的变化的结果。通过将模拟结果与熔池大小的实验结果进行比较,对模型进行验证。

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