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Discrete-Event Simulation Thermal Model for Extrusion-Based Additive Manufacturing of PLA and ABS

机译:用于PLA和ABS的挤出添加剂制造的离散事件仿真热模型

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摘要

The material properties of thermoplastic polymer parts manufactured by the extrusion-based additive manufacturing process are highly dependent on the thermal history. Different numerical models have been proposed to simulate the thermal history of a 3D-printed part. However, they are limited due to limited geometric applicability; low accuracy; or high computational demand. Can the time–temperature history of a 3D-printed part be simulated by a computationally less demanding, fast numerical model without losing accuracy? This paper describes the numerical implementation of a simplified discrete-event simulation model that offers accuracy comparable to a finite element model but is faster by two orders of magnitude. Two polymer systems with distinct thermal properties were selected to highlight differences in the simulation of the orthotropic response and the temperature-dependent material properties. The time–temperature histories from the numerical model were compared to the time–temperature histories from a conventional finite element model and were found to match closely. The proposed highly parallel numerical model was approximately 300–500 times faster in simulating thermal history compared to the conventional finite element model. The model would enable designers to compare the effects of several printing parameters for specific 3D-printed parts and select the most suitable parameters for the part.
机译:通过挤出基添加剂制造工艺制造的热塑性聚合物部件的材料特性高度依赖于热历史。已经提出了不同的数值模型来模拟3D印刷部分的热历史。但是,由于几何适用性有限;低精度;或高计算需求。 3D印刷部分的时间 - 温度历史可以通过计算更少的要求模拟,快速的数字模型模拟,而不会减少精度?本文介绍了一种简化离散事件仿真模型的数值实现,可提供与有限元模型相当的准确性,但速度较快。选择两种具有不同热性质的聚合物系统以突出显示正交反应模拟和温度依赖性材料特性的差异。将来自数值模型的时间温度历史与来自传统有限元模型的时间温度历史进行比较,并被发现与密切相匹配。与传统的有限元模型相比,在模拟热历史上,所提出的高度平行的数值模型大约是300-500倍。该模型将使设计人员能够比较特定的3D打印部分的几个打印参数的效果,并为零件选择最合适的参数。

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