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G-code Visualization and Editing Program for Inexpensive Metal 3D Printing

机译:G代码可视化和廉价金属3D打印的编辑​​程序

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This work focuses on improving an existing system for 3D printing of metal objects using a sinterable clay or paste. The existing software and firmware used by the current 3D Mini Metal Maker (MMM) printer produce a high rate of poor quality products that result from either under-extrusion or over-extrusion conditions. In practice, to successfully print an object, different extrusion rates and printing speeds are needed for different sections of the part, such as the outline, the infill, and the lettering. For an MMM printer, the extrusion rate is manually controlled by a knob, which is ineffective and inaccurate given the noticeable lag response of the extruder motor. In this paper, a 3D visualization MATLAB program is developed to read the G-code file, separate the G-code into color-coded sections and produce a 3D graphical model, and change the values according to user specifications. It allows users to easily and visually recognize and select a separate chunk of G-code, such as layer by layer or individual graphical elements in each layer, then to edit the printing speed and extrusion rate accordingly. It also allows users to optimize these printing parameters in a batch mode if such desired printing speeds and extrusion rates for a different section of the printing part are already known. Experiments conducted with an MMM printer and bronze-paste materials show improvements in both printing time and quality.
机译:这项工作侧重于改善使用可烧结粘土或浆料的金属物体的现有系统。目前3D迷你金属制造商(MMM)打印机使用的现有软件和固件产生高速度的劣质产品,这些产品劣质,可引起挤出或过挤出条件。在实践中,为了成功地打印对象,部分零件的不同部分需要不同的挤出速率和印刷速度,例如轮廓,填充和刻字。对于MMM打印机,通过旋钮手动控制挤出速率,这是无效和不准确的给定挤出机电动机的显着滞后响应。在本文中,开发了一种3D可视化MATLAB程序以读取G代码文件,将G代码分成颜色编码部分并产生3D图形模型,并根据用户规范改变值。它允许用户轻松且视觉上识别并选择一个单独的G代码块,例如通过层中的层或单个图形元素,然后相应地编辑打印速度和挤出速率。如果已知用于打印部分的不同部分的这种期望的打印速度和挤出速率,则用户还允许用户以批量模式优化这些打印参数。用MMM打印机和青铜膏材料进行的实验显示打印时间和质量的改进。

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