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Synergistic reinforcement of polyamide-based composites by combination of short and continuous carbon fibers via fused filament fabrication

机译:通过融合的长丝制造,通过短碳纤维和连续碳纤维的组合,协同增强聚酰胺基复合材料

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The aim of the present work was to study the synergistic reinforcement, by short and continuous carbon fibers, of polyamide-based composites. The three-phase composites were obtained by the fused filament fabrication process where short fiber reinforced polyamide was deposited/printed along with continuous carbon fibers in a layered structure. The properties of the continuous carbon fiber tows and short carbon fiber reinforced polyamide tows were first evaluated by means of morphological, thermal and mechanical tests. The effects of stacking sequence of laminates as well as the effects of both short and continuous fibers' contents, on the mechanical properties of laminated composites, were carefully analyzed by considering several layering configuration. The results showed that the synergistic reinforcement of laminates by both short and continuous carbon fibers was indeed superior to the individual carbon fiber reinforcement for the tensile strength but not for the elastic modulus. The tensile properties of the laminated composites were higher when the stacked continuous carbon fiber reinforced layers (CCFRLs) were separated. Laminated composites with more interfaces between short carbon fiber reinforced layers (SCFRLs) and SCFRL/CCFRL interfaces showed higher mechanical performance due to the stronger adhesion of these interfaces compared to the interfaces between CCFRLs. The mechanical properties of laminated composites tended to be higher with increasing continuous carbon fiber content. The rule of mixture was used to estimate the mechanical behaviors of short and continuous fiber reinforced composites. All the experimental data was comprised between the upper bound and the lower bound estimates. However, the experimental results were rather close to the upper bound due to the alignment of the continuous carbon fibers.
机译:本工作的目的是研究通过短碳纤维和连续碳纤维对聚酰胺基复合材料的协同增强作用。三相复合材料是通过熔融长丝制造工艺获得的,在该工艺中,短纤维增强聚酰胺与连续碳纤维一起沉积/印刷成层状结构。首先通过形态学,热学和力学测试评估连续碳纤维丝束和短碳纤维增强聚酰胺丝束的性能。通过考虑几种分层结构,仔细分析了层压材料的堆叠顺序以及短纤维和连续纤维含量对层压材料机械性能的影响。结果表明,通过短碳纤维和连续碳纤维对层压材料的协同增强确实在抗拉强度方面优于单独的碳纤维增强,但在弹性模量方面却没有。当堆叠的连续碳纤维增强层(CCFRL)分开时,层压复合材料的拉伸性能更高。短碳纤维增强层(SCFRL)和SCFRL / CCFRL界面之间具有更多界面的层压复合材料显示出更高的机械性能,因为这些界面比CCFRL之间的界面具有更强的粘合力。随着连续碳纤维含量的增加,层压复合材料的机械性能趋于更高。使用混合法则来估计短纤维和连续纤维增强复合材料的机械性能。所有实验数据都包含在上限和下限估计之间。然而,由于连续碳纤维的排列,实验结果非常接近上限。

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