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首页> 外文期刊>Virtual and Physical Prototyping >Towards a standard experimental protocol for open source additive manufacturing - This paper proposes a benchmarking model for evaluating accuracy performance of 3D printers
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Towards a standard experimental protocol for open source additive manufacturing - This paper proposes a benchmarking model for evaluating accuracy performance of 3D printers

机译:迈向开源增材制造的标准实验协议-本文提出了一种用于评估3D打印机精度性能的基准模型

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摘要

The technological development of open source three-dimensional (3D) printers is creating more affordable Additive Manufacturing (AM) machines for society in different applications. For this reason, the machines' capability should be evaluated in order to establish minimum standards of performance. This paper deals with the development, manufacture and testing of a geometrical benchmarking model (GBM) in order to evaluate the geometrical accuracy performance of open source 3D printers. The methodology is demonstrated with a case study based on fused deposition modelling (FDM). The case study positions the evaluated machine according to ANSI-ISO's International Tolerance (IT) Grades. Furthermore, root-mean-square deviation (RMSD) value is employed as an accuracy estimator, while Taguchi tools are employed to determine the control factors with the highest accuracy for the fabrication of the GBM.
机译:开源三维(3D)打印机的技术发展正在为社会提供各种应用中价格更实惠的增材制造(AM)机器。因此,应评估机器的性能,以建立最低性能标准。本文讨论了几何基准模型(GBM)的开发,制造和测试,以评估开源3D打印机的几何精度性能。通过基于熔融沉积建模(FDM)的案例研究证明了该方法。案例研究根据ANSI-ISO的国际公差(IT)等级对被评估的机器进行定位。此外,均方根偏差(RMSD)值用作精度估算器,而Taguchi工具则用于确定制造GBM的精度最高的控制因子。

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