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Effect of Process Parameters on Tensile Mechanical Properties of 3D Printing Continuous Carbon Fiber-Reinforced PLA Composites

机译:工艺参数对三维印刷连续碳纤维增强PLA复合材料拉伸力学性能的影响

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摘要

Three-dimensional (3D) printing continuous carbon fiber-reinforced polylactic acid (PLA) composites offer excellent tensile mechanical properties. The present study aimed to research the effect of process parameters on the tensile mechanical properties of 3D printing composite specimens through a series of mechanical experiments. The main printing parameters, including layer height, extrusion width, printing temperature, and printing speed are changed to manufacture specimens based on the modified fused filament fabrication 3D printer, and the tensile mechanical properties of 3D printing continuous carbon fiber-reinforced PLA composites are presented. By comparing the outcomes of experiments, the results show that relative fiber content has a significant impact on mechanical properties and the ratio of carbon fibers in composites is influenced by layer height and extrusion width. The tensile mechanical properties of continuous carbon fiber-reinforced composites gradually decrease with an increase of layer height and extrusion width. In addition, printing temperature and speed also affect the fiber matrix interface, i.e., tensile mechanical properties increase as the printing temperature rises, while the tensile mechanical properties decrease when the printing speed increases. Furthermore, the strengthening mechanism on the tensile mechanical properties is that external loads subjected to the components can be transferred to the carbon fibers through the fiber-matrix interface. Additionally, SEM images suggest that the main weakness of continuous carbon fiber-reinforced 3D printing composites exists in the fiber-matrix interface, and the main failure is the pull-out of the fiber caused by the interface destruction.
机译:三维(3D)印刷连续碳纤维增强聚乳酸(PLA)复合材料具有出色的拉伸力学性能。本研究旨在通过一系列机械实验研究过程参数对3D印刷复合标本的拉伸力学性能的影响。基于改进的熔丝制造3D打印机改变为制造样品的主要印刷参数,包括基于改进的熔丝丝制造3D打印机,并提出了3D印刷连续碳纤维增强PLA复合材料的拉伸力学性能。通过比较实验结果,结果表明,相对纤维含量对机械性能具有显着影响,复合材料中的碳纤维的比例受层高和挤出宽度的影响。连续碳纤维增强复合材料的拉伸力学性能随层高度和挤出宽度的增加而逐渐减小。此外,印刷温度和速度也影响光纤基质界面,即拉伸力学性能随着印刷温度升高而增加,而打印速度增加时拉伸机械性能降低。此外,拉伸机械性能的强化机理是经受组分的外部载荷可以通过纤维 - 基质界面转移到碳纤维中。此外,SEM图像表明,纤维矩阵界面中连续碳纤维增强3D印刷复合材料的主要弱点,主故障是由界面破坏引起的纤维的拉出。

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