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Additive manufacturing of woven carbon fibre polymer composites

机译:编织碳纤维聚合物复合材料的增材制造

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摘要

A novel technique for the fabrication of woven composites using additive manufacturing (AM) is presented and evaluated. To-date fibre reinforced composites deposited by AM exhibit highly anisotropic properties as the individual layers do not interact, this study helps address this by printing of a 0/90 woven structure into one layer to aid in stress distribution. A fibre path generator was created utilising Gcode to emulate the weft-warp components of a woven construction using a continuous carbon fibre filament. This new pathing technique also allows for a woven structure to be integrated with features (such as notches) previously only possible through destructive machining processes. In order to evaluate the performance of the printed composites, open hole tensile studies were carried out in which 6 mm holes were routed into the composite structure and the resulting part's mechanical performance were compared with specimens which had been die punched as well as an unnotched control group. The latter exhibited strengths equivalent to 49% that of unnotched specimen. In contrast the specimens with woven holes exhibited strengths which were 44% higher, just 7% lower than the strength achieved for the unnotched specimens. Digital image correlation (DIC) analysis also demonstrated significantly reduced strain concentration around the printed hole perimeter, compared with that for the die punched hole.
机译:提出并评估了一种利用增材制造(AM)制造机织复合材料的新技术。迄今为止,通过AM沉积的纤维增强复合材料表现出高度的各向异性,因为各个层不相互作用,这项研究通过将0/90编织结构印刷到一层中以帮助应力分布来解决这一问题。利用Gcode创建了一个纤维路径生成器,以模拟使用连续碳纤维长丝的机织结构的纬纱/经纱组件。这种新的加工技术还允许将编织结构与以前只能通过破坏性加工过程实现的特征(例如缺口)集成在一起。为了评估印刷复合材料的性能,进行了裸眼拉伸研究,其中在复合结构中铺设了6毫米的孔,并将所得零件的机械性能与冲模和无缺口控制的样品进行了比较。组。后者的强度相当于缺口试样的49%。相比之下,带有编织孔的样品的强度高出44%,仅比未开孔样品的强度低7%。数字图像相关性(DIC)分析还表明,与冲模孔相比,印刷孔周边周围的应力集中显着降低。

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