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Simulations of fused filament fabrication using a front tracking method

机译:使用前跟踪方法模拟熔丝丝制造的熔丝制造

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Fully resolved simulations are used to study a few aspects of fused filament fabrication. The simulations are done using a finite-volume/front tracking method where the governing conservation equations are solved for the air and polymer flow in a rectangular cuboid using a fixed structured grid and the interface is tracked using connected marker particles. The nozzle is modeled as a moving source for mass and heat. The viscosity of the polymer depends on the shear rate and the temperature, and once the polymer cools down and the viscosity is high enough, it is effectively solid. The effects of the control parameters are examined for the construction of three objects: an inverted cone, a "bridge", and a rectangle formed by parallel filaments. The results show that the shape of the objects depends sensitively on the control parameters. We find that an inverted cone, built with partially overlapping filaments, requires the polymer to quickly become very viscous for a stable shape, that parallel filaments need to be spaced closely for the formation of a large contact area and we show how the sagging of a freely suspended filament depends on the injection temperature. (C) 2019 Elsevier Ltd. All rights reserved.
机译:完全解决的模拟用于研究融合灯丝制造的几个方面。使用有限体积/前跟踪方法进行模拟,其中使用固定结构电网在矩形长方体中为空气和聚合物流求解控制保护方程,并且使用连接的标记粒子跟踪界面。喷嘴被建模为质量和热量的移动源。聚合物的粘度取决于剪切速率和温度,一旦聚合物冷却,粘度足够高,它有效固体。检查控制参数的效果用于构建三个物体:倒锥形,“桥梁”和由平行丝形成的矩形。结果表明,对象的形状敏感地取决于控制参数。我们发现用部分重叠长丝构建的倒锥形,要求聚合物快速变得非常粘性的稳定形状,并且平行的长丝需要紧密地间隔开巨大的接触区域,我们展示了如何下垂的缝合自由悬挂的灯丝取决于注射温度。 (c)2019 Elsevier Ltd.保留所有权利。

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