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首页> 外文期刊>Journal of manufacturing science and engineering: Transactions of the ASME >Understanding Process Parameter Effects of RepRap Open-Source Three-Dimensional Printers Through a Design of Experiments Approach
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Understanding Process Parameter Effects of RepRap Open-Source Three-Dimensional Printers Through a Design of Experiments Approach

机译:通过实验方法设计了解RepRap开源三维打印机的工艺参数效果

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摘要

With a view to enabling additive manufacturing (AM) processes, today, open-source, low-cost 3D printers are systems with great potential. However there is a significant lack of scientific data on the performance of open-source 3D systems and on the selection of adequate process parameters that can help to improve the quality of the parts. The purpose of this paper is to assess the effects of the main process parameters on the dimensional accuracy of a specific open-source 3D printer, the RepRap Prusa-Mendel I2. This study consisted of a benchmarking part, involving elementary shapes representing a series of different features. By means of a full factorial DoE (Design of Experiments), with three factors (layer thickness, deposition speed, and flow rate), three levels, and three replications, 81 parts were obtained. Subsequently, a laser scanner (D700 Laser Scanner-3Shape, Denmark) was used as high resolution reverse engineering system in order to evaluate the variation between real parts and nominal geometry. The impact of the main process parameters was evaluated and optimal combinations were analyzed. On the basis of the results obtained in the experiments, practical suggestions for the settings of common process parameters were formulated. Test results serve to improve the quality of AM parts through the most appropriate selection of the main process parameters.
机译:为了实现增材制造(AM)工艺,如今,开源,低成本3D打印机是具有巨大潜力的系统。但是,关于开放源3D系统的性能以及选择有助于改善零件质量的适当工艺参数的科学数据非常缺乏。本文的目的是评估主要工艺参数对特定开源3D打印机RepRap Prusa-Mendel I2的尺寸精度的影响。这项研究由基准测试部分组成,涉及代表一系列不同特征的基本形状。通过全因子DoE(实验设计),利用三个因素(层厚度,沉积速度和流速),三个级别和三个重复项,获得了81个零件。随后,使用激光扫描仪(D700 Laser Scanner-3Shape,丹麦)作为高分辨率逆向工程系统,以评估实际零件和标称几何形状之间的差异。评估了主要工艺参数的影响并分析了最佳组合。根据实验结果,对常用工艺参数的设置提出了实用建议。通过最适当地选择主要工艺参数,测试结果有助于提高AM零件的质量。

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