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熔融沉积成型增材制造加工的聚乳酸几何特性分析:工艺参数和板材挤出机精密运动的影响

Analysis of PLA Geometric Properties Processed by FFF Additive Manufacturing: Effects of Process Parameters and Plate-Extruder Precision Motion.

作者信息

García Plaza Eustaquio, López Pedro José Núñez, Torija Miguel Ángel Caminero, Muñoz Jesús Miguel Chacón

机构信息

Energy Research and Industrial Applications Institute (INEI), Higher Technical School of Industrial Engineering, Department Applied Mechanics & Engineering of Projects, University of Castilla-La Mancha, Avda. Camilo José Cela, s/n, 13005 Ciudad Real, Spain.

Higher Technical School of Industrial Engineering, IMACI, Department Applied Mechanics & Engineering of Projects, University of Castilla-La Mancha, Avda. Camilo José Cela, s/n, 13005 Ciudad Real, Spain.

出版信息

Polymers (Basel). 2019 Sep 27;11(10):1581. doi: 10.3390/polym11101581.

Abstract

The evolution of fused filament fabrication (FFF) technology, initially restricted to the manufacturing of prototypes, has led to its application in the manufacture of finished functional products with excellent mechanical properties. However, FFF technology entails drawbacks in aspects, such as dimensional and geometric precision, and surface finish. These aspects are crucial for the assembly and service life of functional parts, with geometric qualities lagging far behind the optimum levels obtained by conventional manufacturing processes. A further shortcoming is the proliferation of low cost FFF 3D printers with low quality mechanical components, and malfunctions that have a critical impact on the quality of finished products. FFF product quality is directly influenced by printer settings, material properties in terms of cured layers, and the functional mechanical efficiency of the 3D printer. This paper analyzes the effect of the build orientation (), layer thickness (), feed rate () parameters, and plate-extruder movements on the dimensional accuracy, flatness error, and surface texture of polylactic acid (PLA) using a low cost open-source FFF 3D printer. The mathematical modelling of geometric properties was performed using artificial neural networks (ANN). The results showed that thinner layer thickness generated lower dimensional deviations, and feed rate had a minor influence on dimensional accuracy. The flatness error and surface texture showed a quasi-linear behavior correlated to layer thickness and feed rate, with alterations produced by 3D printer malfunctions. The mathematical models provide a comprehensive analysis of the geometric behavior of PLA processing by FFF, in order to identify optimum print settings for the processing of functional components.

摘要

熔融丝材制造(FFF)技术最初仅限于制造原型,如今已发展到可用于制造具有优异机械性能的成品功能产品。然而,FFF技术在尺寸和几何精度以及表面光洁度等方面存在缺陷。这些方面对于功能部件的组装和使用寿命至关重要,其几何质量远远落后于传统制造工艺所能达到的最佳水平。另一个缺点是低成本的FFF 3D打印机激增,其机械部件质量低,故障对成品质量有重大影响。FFF产品质量直接受打印机设置、固化层方面的材料属性以及3D打印机的功能机械效率影响。本文使用低成本开源FFF 3D打印机分析了构建方向()、层厚()、进给速度()参数以及打印头-挤出机运动对聚乳酸(PLA)尺寸精度、平面度误差和表面纹理的影响。使用人工神经网络(ANN)对几何属性进行了数学建模。结果表明,较薄的层厚产生较低的尺寸偏差,进给速度对尺寸精度影响较小。平面度误差和表面纹理呈现出与层厚和进给速度相关的准线性行为,3D打印机故障会产生变化。数学模型对FFF加工PLA的几何行为进行了全面分析,以便确定功能部件加工的最佳打印设置。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6576/6836060/7f1d0ec35ad8/polymers-11-01581-g001.jpg

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