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Effect of the Nozzle Radiation on the Fused Filament Fabrication Process: Three-Dimensional Numerical Simulations and Experimental Investigation

机译:喷嘴辐射对熔融长丝制造过程的影响:三维数值模拟和实验研究

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摘要

This paper addresses heat distribution issues in fused filament fabrication (FFF) process. Three-dimensional (3D) numerical simulations and experimental investigations are performed during additive manufacturing of parts by FFF process. The transient numerical simulations of the filament temperature field are based on the finite difference method. Experimental measurements of the temperature field are carried out using infrared thermography. The proposed model mainly highlights the contribution of heat exchange from the nozzle to the fabricated part and from filament to filament. Optimum adhesion of filaments deposited by FFF requires control of the thermal history. The nozzle radiation is taken into account as a source term in the heat balance equation. The temperature fields of the printed parts computed by numerical simulations are in very good agreement with the temperature fields measured by infrared thermograph. The 3D numerical model provides information on how the nozzle affects the temperature field of the printed part. This source term must be taken into account for the optimization of the FFF process.
机译:本文解决了熔丝制造(FFF)过程中的热分布问题。在通过FFF工艺进行零件增材制造的过程中,进行了三维(3D)数值模拟和实验研究。灯丝温度场的瞬态数值模拟是基于有限差分法的。温度场的实验测量是使用红外热像仪进行的。所提出的模型主要突出了从喷嘴到制造零件以及从细丝到细丝的热交换的贡献。 FFF沉积的长丝的最佳附着力需要控制热过程。在热平衡方程中,喷嘴辐射被视为源项。通过数值模拟计算得出的印刷零件的温度场与红外热像仪测量的温度场非常吻合。 3D数值模型提供有关喷嘴如何影响打印零件温度场的信息。为了优化FFF流程,必须考虑该源术语。

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