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Effects of Environmental Temperature and Humidity on the Geometry and Strength of Polycarbonate Specimens Prepared by Fused Filament Fabrication

机译:环境温度和湿度对熔融长丝制造制备的聚碳酸酯样品几何和强度的影响

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摘要

It is widely known that the printing quality of fused filament fabrication (FFF) is heavily affected by environmental temperature and humidity, taking the form of warping and porosity. However, there is little understanding about the quantitative relations between environmental conditions, geometry, and the mechanical properties of printed parts. In this study, we systematically investigated those relations using bisphenol A polycarbonate as a model material system. For the environmental temperature, an in-situ infrared imaging analysis revealed the presence of an up to 5.4 °C/mm thermal gradient when printing using an open-chamber printer and a heated build plate. For the environmental humidity, an analysis of X-ray micro-computed tomography (micro-CT) scans showed an up to 11.7% porosity that was brought by polymer water content absorbed from environmental moisture. Meanwhile, tensile tests showed a mechanical performance loss associated with those defects, but, surprisingly, the transverse direction ductility had the potential to increase at a higher porosity. Furthermore, the experimental results were combined with analytical and parametrical studies to elucidate quantitative relations between environmental conditions and printing quality. Based on the results, quantitative guidelines for the estimation of printing quality based on environmental conditions are provided that would also help users to obtain desired printing results with a better understanding of the effects of environmental conditions.
机译:众所周知,熔融丝制造(FFF)的印刷质量受环境温度和湿度的严重影响,采用翘曲和孔隙率的形式。然而,对印刷部件的环境条件,几何形状和机械性能之间的定量关系几乎没有了解。在本研究中,我们系统地研究了使用双酚A聚碳酸酯作为模型材料系统的关系。对于环境温度,原位红外成像分析显示使用开放式打印机和加热的构建板在打印时存在高达5.4°C / mm热梯度的存在。对于环境湿度,X射线微型计算机断层扫描(Micro-CT)扫描的分析显示出由环境水分吸收的聚合物水含量引起的高达11.7%的孔隙率。同时,拉伸试验显示与那些缺陷相关的机械性能损失,但令人惊讶的是,横向延展性具有较高的孔隙率的可能性增加。此外,实验结果与分析和参数研究相结合,以阐明环境条件和印刷质量之间的定量关系。基于结果,提供了基于环境条件的印刷质量估计的定量指南,也有助于用户获得所需的印刷结果,以更好地了解环境条件的影响。

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