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Optimization of The FDM Parameters to Improve The Compressive Strength of The PLA-copper Based Products

机译:优化FDM参数,提高PLA铜产品抗压强度

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Nowadays, Fused Deposition Modeling (FDM) has accomplished huge proficiency in modelling and wide variety in products shape and size in the industry. Alongside with its development, many problems came up, one of which is to ensure the technical requirements of the parts such as: compressive strength, tensile strength, dimensional accuracy, etc. To solve this problem, new composite materials has been developing and at the same time correlative process parameters has been optimized to achieve the most optimal technical requirements of that material. In this paper, we focus on researching the effect of process parameters consist of: raster angle; build direction and layer thickness on the part's compressive strength made by one of the newest composite material which is the PLA-Copper filament. Central composite design (CCD) methodology is used to lower the experimental runs, the analysis of variance (ANOVA) method is employed to investigate the process parameters in order to achieve optimal compressive strength.
机译:如今,融合沉积建模(FDM)已经实现了巨大的熟练熟练在行业中产品形状和大小的型号和各种各样的态度。随着它的发展,许多问题出现了,其中一个是为了确保零件的技术要求,如:抗压强度,拉伸强度,尺寸精度等。为了解决这个问题,新的复合材料已经开发出来了相同的时间相关工艺参数已被优化以实现该材料的最佳技术要求。在本文中,我们专注于研究过程参数的效果:光栅角度;构建方向和层厚度在部分的抗压强度上由作为PLA铜丝丝的最新复合材料之一制成。中央复合设计(CCD)方法用于降低实验运行,使用方差分析(ANOVA)方法来研究过程参数以实现最佳的抗压强度。

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