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Investigation of a Short Carbon Fibre-Reinforced Polyamide and Comparison of Two Manufacturing Processes: Fused Deposition Modelling (FDM) and Polymer Injection Moulding (PIM)

机译:对短碳纤维增强聚酰胺的研究及两种制造工艺的比较:融合沉积建模(FDM)和聚合物注塑成型(PIM)

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摘要

New technologies are offering progressively more effective alternatives to traditional ones. Additive Manufacturing (AM) is gaining importance in fields related to design, manufacturing, engineering and medicine, especially in applications which require complex geometries. Fused Deposition Modelling (FDM) is framed within AM as a technology in which, due to their layer-by-layer deposition, thermoplastic polymers are used for manufacturing parts with a high degree of accuracy and minimum material waste during the process. The traditional technology corresponding to FDM is Polymer Injection Moulding, in which polymeric pellets are injected by pressure into a mould using the required geometry. The increasing use of PA6 in Additive Manufacturing makes it necessary to study the possibility of replacing certain parts manufactured by injection moulding with those created using FDM. In this work, PA6 was selected due to its higher mechanical properties in comparison with PA12. Moreover, its higher melting point has been a limitation for 3D printing technology, and a further study of composites made of PA6 using 3D printing processes is needed. Nevertheless, analysis of the mechanical response of standardised samples and the influence of the manufacturing process on the polyamide’s mechanical properties needs to be carried out. In this work, a comparative study between the two processes was conducted, and conclusions were drawn from an engineering perspective.
机译:新技术正在为传统的技术提供更有效的替代方案。添加剂制造(AM)在与设计,制造,工程和医学相关的田地中取得重要性,特别是在需要复杂几何形状的应用中。融合沉积建模(FDM)在AM内部框架作为一种技术,其中由于它们的层层沉积,热塑性聚合物用于制造在该过程中具有高精度和最小材料废物的制造部件。对应于FDM的传统技术是聚合物注射成型,其中使用所需的几何形状将聚合物粒料注入模具中。增加PA6在添加剂制造中的使用使得有必要研究通过使用FDM产生的注射成型制造的某些部件的可能性。在这项工作中,由于其较高的机械性能与PA12相比,选择了PA6。此外,其较高的熔点是3D打印技术的限制,并且需要使用3D打印工艺由PA6制成的复合材料的进一步研究。然而,需要进行分析标准化样品的机械响应和制造过程对聚酰胺的机械性能的影响。在这项工作中,进行了两种过程之间的比较研究,并从工程角度绘制了结论。

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