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Impact of process parameters on dimensional accuracy of PolyJet 3D printed parts using grey Taguchi method

机译:使用灰色Taguchi方法对工艺参数对多角形3D印刷部件尺寸精度的影响

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摘要

In this study, the dimensional accuracy of parts fabricated with PolyJet 3D Printing Direct process is investigated. An L4 orthogonal array was utilized as the design of experiments, while the process parameters examined are layer thickness, build style and scale. A simple prototype was proposed and specified external and internal dimensions were measured using a digital vernier calliper. Grey-Taguchi method was applied for optimizing all dimensional measurements. The effect of each parameter on dimensional accuracy has been identified using ANOM (Analysis of Means), while ANOVA (Analysis of Variances) has been performed to determine each parameter’s dominance. Additionally, the results of this study were compared with the findings of a previous optimization study in which the usual Taguchi method was used. It was concluded that 16 μm of layer thickness, glossy style and 50% scale provide the optimum dimensional results, while scale is the most important factor.
机译:在这项研究中,研究了用多角形3D打印直接工艺制造的部件的尺寸精度。 L4正交阵列用作实验的设计,而检查的过程参数是层厚度,构建风格和尺度。提出了一个简单的原型,并使用数字游标卡钳测量外部和内部尺寸。应用Gray-Taguchi方法,用于优化所有尺寸测量。使用ANOM(手段分析)识别每个参数对尺寸精度的影响,而已经执行了ANOVA(差异分析)以确定每个参数的主导地位。此外,将该研究的结果与先前优化研究的结果进行了比较,其中使用了通常的Taguchi方法。得出结论,16μm层厚度,光泽风格和50%的规模提供了最佳尺寸效果,速度是最重要的因素。

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