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3D Printed Composites with Continuous Carbon Fiber Reinforcements

机译:连续碳纤维增强的3D打印复合材料

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Additively manufactured polymers can be reinforced with high-performance reinforcements such as carbon fibers. Printed thermoplastics with embedded continuous carbon fibers are up to two orders of magnitude stronger and stiffer than high-grade 3D printed polymers. In this work, the mechanical response of such 3D printed carbon fiber specimens is evaluated. While the precursor carbon fiber reinforced filaments achieve a stiffness of 50GPa and strength 700MPa, mechanical properties of their printed parts are highly affected by printed carbon fiber curvatures. In this work, the structure of 3D printed parts was examined, and some design rules for 3D printing with continuous carbon fibers are suggested. Moreover, failure mechanisms in these samples are discussed and correlated to the micro-structure of the composites and the carbon fiber configuration.
机译:增材制造的聚合物可以用高性能增强材料(例如碳纤维)增强。与高级3D打印聚合物相比,具有嵌入式连续碳纤维的印刷热塑性塑料的强度和刚度高出两个数量级。在这项工作中,评估了此类3D打印碳纤维样品的机械响应。尽管前体碳纤维增强长丝的刚度达到50GPa,强度达到700MPa,但其印刷零件的机械性能却受印刷碳纤维曲率的影响很大。在这项工作中,检查了3D打印部件的结构,并提出了一些使用连续碳纤维进行3D打印的设计规则。此外,讨论了这些样品中的破坏机理,并将其与复合材料的微观结构和碳纤维构型相关联。

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