Mesoscale Modeling of Extrusion and Solidification During Material Extrusion Additive Manufacturing

Jeffrey Allen, Guillermo Riveros, Ivan Beckman, Elton Freeman
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Abstract

In this work, we apply a multiphysics approach to fused deposition modeling to simulate extrusion and solidification. Restricting the work to a single line scan, we focus on the application of polylactic acid. In addition to heat, momentum and mass transfer, the solid/liquid/vapor interface is simulated using a front-tracking, level-set method. The results focus on the evolving temperature, viscosity, and volume fraction and are cast within a set of parametric studies, to include the printing and extrusion speed, as well as the extrusion temperature. Among other findings, it was observed that fused deposition modeling can be effectively modeled using a front-tracking method (i.e. the level set method) in concert with a temperature dependent porosity function. The use of the level-set method for discriminating the phase change interface in this context is relatively new and offers considerable advantages over existing methods.
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材料挤压增材制造过程中挤压和凝固的中尺度模拟
在这项工作中,我们应用多物理场方法来模拟熔融沉积建模,以模拟挤压和凝固。将工作限制在单线扫描,我们重点关注聚乳酸的应用。除了热量、动量和质量传递之外,还使用前置跟踪水平集方法模拟了固体/液体/蒸汽界面。结果集中在温度、粘度和体积分数的变化,并在一组参数研究中进行,包括打印和挤出速度以及挤出温度。在其他研究结果中,研究人员观察到,使用前置跟踪方法(即水平集方法)与温度相关的孔隙度函数可以有效地建模熔融沉积模型。在这种情况下,使用水平集方法来区分相变界面是相对较新的,并且比现有方法具有相当大的优势。
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