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混合式FFF/CNC:一种开源硬件与软件系统。

Hybrid FFF/CNC: An open source hardware & software system.

作者信息

Tejada Martinez Luis Vincent, Witz Jean-François, Najjar Denis, Boidin Xavier, Lesaffre François, Martin Vincent, Badin Sophie, Berte Emmanuel

机构信息

CNRS: UMR 9013 - LaMcube - Laboratoire de Mécanique, Multiphysique, Multiéchelle, Lille, France.

Centrale Lille, Cité Scientifique, 59650 Villeneuve-d'Ascq, France.

出版信息

HardwareX. 2024 May 17;18:e00536. doi: 10.1016/j.ohx.2024.e00536. eCollection 2024 Jun.

Abstract

This paper presents a low-cost milling system composed of spindle mountable on a multi tool 3D printer equipped with maxwell kinematic coupling (E3D "ToolChanger" in this article) as well as two open-source software solutions for implementing a hybrid FFF/CNC manufacturing process. The first solution is the use of a traditional CAM software (FreeCad) for machining programming through the development of a dedicated post-processor. The second is an automatic layer-by-layer hybridization enabled by the software "SuperSlicer". This method requires no machining knowledge but only allows contouring operations. Results of experiments show that the spindle presented in this work is capable of successfully carrying out a hybrid process that significantly improves the surface roughness parameters, with an improvement factor of 10 for most parameters. An uniformization of surface roughness parameters was also observed in the construction direction and in the deposition/machining direction. The layer-by-layer hybridization yields the better results in terms of surface roughness. This is because the reduced depth of cut (equivalent to a printed layer) minimizes stress and temperature rise, resulting in highly favorable cutting conditions.

摘要

本文介绍了一种低成本铣削系统,该系统由可安装在配备麦克斯韦运动耦合器(本文中的E3D“换刀器”)的多工具3D打印机上的主轴以及用于实现混合熔融沉积成型/数控加工(FFF/CNC)制造工艺的两个开源软件解决方案组成。第一个解决方案是通过开发专用后处理器,使用传统的计算机辅助制造软件(FreeCad)进行加工编程。第二个是由“SuperSlicer”软件实现的自动逐层混合工艺。这种方法不需要加工知识,但只允许进行轮廓加工操作。实验结果表明,本文提出的主轴能够成功地进行混合加工,显著改善表面粗糙度参数,大多数参数的改善系数为10。在构建方向和沉积/加工方向上也观察到表面粗糙度参数的均匀化。逐层混合在表面粗糙度方面产生了更好的结果。这是因为减小的切削深度(相当于一个打印层)使应力和温度升高最小化,从而产生了非常有利的切削条件。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/57fa/11170475/d2fa91fc9c55/ga1.jpg

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