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Feed rate effects in freeform filament extrusion.

机译:进给速率对自由形态长丝挤出的影响。

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摘要

3D printing technologies have evolved drastically in the last decade. Professional grade 3D printers produce very high quality parts largely because they have been optimized for use with just a few different materials and do not allow the user to change process parameters. Conversely, Freeform Filament Extrusion (FFE) is a technology that has emerged as a favorite of hobbyists due to widespread availability of low cost open architecture machines that permit extensive experimentation with any number of materials. The FFE 3D printing process operates by feeding thermoplastic filament through a heated nozzle while the nozzle "draws" the desired pattern one layer upon the next. The output from these hobby style FFE 3D printers is often less than ideal in large part because users lack an understanding of how critical process parameters affect the speed and diameter of polymer filament as it exits the nozzle. This research focuses on the issue of unwanted deformation of the extruded polymer during 3D printing. As a first step, the feeding mechanism of an FFE 3D printer was studied in order to find the slippage (loss) between the feeding mechanism and the filament. The relationship between feed screw rotational speed and and volumetric flow rate through the nozzle tip was then established. With known volumetric flow rates, the cross sectional profiles of printed lines were measured using a laser profilometer. This information provides an indication of suitable nozzle head translation speeds for each feed screw rotational speed. Lastly, this study considers the effect of die swell in the extrusion process and concludes that the stand-off distance should be varied to avoid unwanted deformation of the extruded filament.
机译:在过去的十年中,3D打印技术得到了巨大的发展。专业级3D打印机可以生产出高质量的零件,这在很大程度上是因为它们已经过优化,只能与几种不同的材料一起使用,并且不允许用户更改过程参数。相反,自由形式的长丝挤出(FFE)技术已成为业余爱好者的青睐,这是因为低成本开放式结构机器的广泛普及,允许对多种材料进行广泛的实验。 FFE 3D打印过程通过将热塑性细丝送入加热的喷嘴,同时喷嘴在下一层“绘制”所需图案的方式进行操作。这些爱好型FFE 3D打印机的输出通常在很大程度上不理想,因为用户缺乏对关键工艺参数如何影响聚合物细丝离开喷嘴时的速度和直径的了解。这项研究的重点是3D打印过程中挤出的聚合物不必要的变形问题。第一步,研究了FFE 3D打印机的送纸机构,以便找出送纸机构与灯丝之间的打滑(损耗)。然后建立进料螺杆转速与通过喷嘴尖端的体积流量之间的关系。在已知的体积流速下,使用激光轮廓仪测量印刷线的横截面轮廓。该信息表示每种进给螺杆转速合适的喷嘴头平移速度。最后,这项研究考虑了模头膨胀在挤出过程中的影响,并得出结论,应该改变间隔距离,以避免挤出的长丝发生不希望的变形。

著录项

  • 作者

    Rishi, Omkar.;

  • 作者单位

    Rochester Institute of Technology.;

  • 授予单位 Rochester Institute of Technology.;
  • 学科 Engineering Industrial.;Engineering General.;Engineering Mechanical.
  • 学位 M.S.
  • 年度 2014
  • 页码 59 p.
  • 总页数 59
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 公共建筑;
  • 关键词

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