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Investigations on Dimensional Analysis of Fused Filament Fabrication of Wax Filament by Taguchi Design

机译:TAGUCHI设计对熔丝丝丝丝制造尺寸分析的研究

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Experimental investigations were carried out on the machinable wax filament using the fused deposition modelling (FDM) rapid prototyping process. The printer used for conducting the experiments was Flash Forge guider 2. The filament material used for this study was machinable wax filament of 1.75 mm diameter. Experimental trials were carried out as per Taguchi L9 orthogonal array to determine the optimum process parameter combination. The dimensional analysis of test samples were carried out in terms of change in volume of samples which is result of combine effect of deviations in all the dimensions of test sample. Four factors each at three levels was used to obtain the optimum printing parameters for better dimensional accuracy and proper printing. The four important printing parameters were taken as factor and set to analyse the significant factor affecting on printing. The complexity in printing of wax filament is taken in to consideration during the experimental study. The main effect plot for S/N ratio was plotted and ANOVA was carried out to determine the significant factor that was affecting the dimensional accuracy of the printed test samples. The results shows that there is positive deviation in the dimension along the nozzle axis and dimensionally accurate and defect free printing is achieved with layer thickness of maximum layer resolution and vertical orientation. The defects are observed in the inclined orientation samples due to support structure and delamination is detected. The Minitab software was used to analyse the results obtained from experiment. The printing parameters, which are varied for the experiment, are orientation, layer thickness, printing speed and travel speed.
机译:使用熔融沉积建模(FDM)快速原型工艺来对可加工蜡丝进行实验研究。用于进行实验的打印机是Flash Forge Guider 2.用于该研究的长丝材料是直径为1.75毫米的可加工蜡丝。根据Taguchi L9正交阵列进行实验试验,以确定最佳过程参数组合。测试样品的尺寸分析在样品的变化变化方面进行,这是在测试样品的所有尺寸中的偏差效应的结果的结果。每个三个级别的四个因素用于获得最佳打印参数,以便更好的尺寸精度和适当的打印。将四个重要的印刷参数视为因素,并设定分析对印刷影响的重要因素。在实验研究期间考虑了蜡丝印刷的复杂性。绘制S / N比的主要效果图和进行ANOVA以确定影响印刷测试样品的尺寸精度的重要因素。结果表明,沿喷嘴轴线的尺寸存在正偏差,并且通过最大层分辨率的层厚度和垂直取向实现尺寸准确和缺陷的打印。由于支撑结构和检测到分层,在倾斜取向样品中观察到缺陷。 Minitab软件用于分析从实验获得的结果。改变实验的印刷参数,是取向,层厚度,印刷速度和行进速度。

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