Manufacturing of 3D Printed Laminated Carbon Fibre Reinforced Nylon Composites: Impact Mechanics

Yohan Delporte, H. Ghasemnejad
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引用次数: 4

Abstract

This paper presents the manufacturing development of laminated Carbon Fibre Reinforced Thermoplastics Polymer (CFRTP) specimens, which show significant improvement of mechanical properties in comparison with existing thermoplastic composites. There is a need to improve structural performance of thermoplastic composites by using a fully integrated chopped and continuous carbon fibre bundle into a thermoplastic resin matrix in a laminated shape with various stacking sequences. The developed manufacturing technique is capable to print components with various fibre orientations, which is spotted as the novelty of this research. The CFRTP specimens were tested under quasi-static tensile and low-velocity impact loading to proof the improvement of mechanical performance in both static and dynamic applications. Our results indicate a significant improvement in impact resistance and energy absorption capability of CFRTP composites in comparison with existing thermoplastic composites.
3D打印层压碳纤维增强尼龙复合材料的制造:冲击力学
本文介绍了碳纤维增强热塑性塑料复合材料(CFRTP)的制备进展,与现有热塑性复合材料相比,CFRTP的力学性能有了显著提高。为了提高热塑性复合材料的结构性能,需要在热塑性树脂基体中使用完全集成的剪切连续碳纤维束,以不同的堆叠顺序形成层压形状。所开发的制造技术能够打印具有不同纤维取向的部件,这被认为是本研究的新颖之处。在准静态拉伸和低速冲击载荷下对CFRTP试样进行了测试,以证明CFRTP在静态和动态应用中力学性能的改善。研究结果表明,与现有的热塑性复合材料相比,CFRTP复合材料的抗冲击性能和吸能能力有了显著提高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
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