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首页> 外文期刊>MATEC Web of Conferences >Using Carbon-fibre Reinforcement with a 5-axis Material Extrusion System
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Using Carbon-fibre Reinforcement with a 5-axis Material Extrusion System

机译:将碳纤维增强与5轴材料挤出系统结合使用

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摘要

One of the main limitations of material extrusion (ME) components is their anisotropic mechanical behaviour, mainly due to the poor bonding between layers. 5-axis ME has the capability to orientate theprint layers in line with loading conditions, in order to limit the effect of poor inter-laminar bonding. Previous work has demonstrated how aligning deposited material in the same direction as the dominant stresses can improve a part’s mechanical performance. When fibre-reinforcement is added to theseoriented layers, the stiffness and strength of parts should increase further. This paper presents a comparison between 5-axis parts that were printed in pure poly-lactic acid (PLA) and in carbon-fibrereinforced (CFR) PLA. Sets of dome-shaped components were built using several different build strategies and tested for compressive stiffness and strength. The results were rather mixed but did show a marked improvement in compressive strength under certain conditions. Further work is required to understand one of the failure mechanisms that was seen and to overcome some of the limitations of the 5-axis machine currently being used. The work was undertaken to support the Directional Composites through Innovative Manufacturing (DiCoMI) project, funded by the European Commission.
机译:材料挤出(ME)组件的主要限制之一是其各向异性的机械性能,这主要是由于各层之间的粘合性较差。 5轴ME具有根据加载条件调整打印层方向的能力,以限制不良的层间粘合效果。先前的工作表明,将沉积的材料与主应力沿同一方向对齐可以如何改善零件的机械性能。将纤维增强材料添加到这些定向层中后,零件的刚度和强度应进一步提高。本文介绍了用纯聚乳酸(PLA)和碳纤维增强(CFR)PLA印刷的5轴零件之间的比较。使用几种不同的构建策略构建了圆顶形状的组件集,并测试了压缩刚度和强度。结果相当复杂,但在某些条件下确实显示出抗压强度的显着改善。需要做进一步的工作来理解所见到的一种故障机制,并克服当前使用的5轴机床的某些限制。这项工作是由欧洲委员会资助的,旨在通过创新制造支持定向复合材料(DiCoMI)项目。

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