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Experimental and Statistical Investigation of the Bending and Surface Roughness Properties on Three-Dimensional Printing Parts

机译:三维打印零件弯曲和表面粗糙度特性的实验与统计研究

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摘要

This research is purposed to analyze the bending strength and surface roughness results of polylactic acid samples produced by fused filament fabrication. Using the experimental design method, the effect of fill density, layer thickness, infill, and raster orientation parameters on the bending and surface roughness performance of samples was investigated. In the study, the individual effects and interactions of the main four factors were analyzed using 2(3)3(1) mixed-level factorial design approaches. Whereas linear and honeycomb filled were preferred in the experimental design, 30 degrees, 60 degrees, and 90 degrees angles were used as raster orientation and 50 and 100 were used as fill density. In addition, 0.15 mm and 0.05 mm were printed as layer thicknesses. Samples were tested using a stylus profilometer (Mitutoyo SJ-301) to determine surface roughness characteristics, and the AUTOGRAPH AG-IS 100 KN was utilized to analyze the bending strength of the parts. In addition, fracture surfaces were analyzed by stereo microscope at various magnifications. The data were analyzed using the Minitab 19 software program. The most effective parameter for bending strength is the layer thickness with 40.02 . In addition, it has been observed that the fast honeycomb fill pattern has higher strength than the linear fill pattern. Inversely to literature, according to our result, when the layer thickness is reduced, the surface roughness increases, because of the bubble on the surface of the printed sample. The results obtained from this study will provide preliminary information to the users in order to produce the parts that will provide the necessary requirements according to the usage area with minimum time and costs.
机译:本研究旨在分析熔丝制备生产的聚乳酸样品的弯曲强度和表面粗糙度结果。采用实验设计方法,研究了填充密度、层厚、填充和光栅取向参数对试样弯曲和表面粗糙度性能的影响。本研究采用2(3)3(1)混合因子设计方法分析了主要4个因素的个体效应和交互作用。在实验设计中,线性和蜂窝填充是首选,30度、60度和90度角用作光栅方向,50%和100%用作填充密度。此外,0.15 mm 和 0.05 mm 作为层厚被打印出来。使用测针轮廓仪(Mitutoyo SJ-301)对样品进行测试以确定表面粗糙度特性,并使用AUTOGRAPH AG-IS 100 KN分析零件的弯曲强度。此外,通过体视显微镜在不同放大倍率下分析断裂表面。使用 Minitab 19 软件程序对数据进行分析。弯曲强度最有效的参数是层厚,为40.02%。此外,已经观察到快速蜂窝填充图案比线性填充图案具有更高的强度。与文献相反,根据我们的结果,当层厚度减小时,表面粗糙度增加,这是由于打印样品表面的气泡。从这项研究中获得的结果将为用户提供初步信息,以便以最少的时间和成本生产出根据使用领域提供必要要求的零件。

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