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3D-printable CFR polymer composites with dual-cure sequential IPNs

机译:具有双固化顺序IPN的3D可打印CFR聚合物复合材料

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In this work a sequential interpenetrating polymer network (IPN) obtained by co-formulation of a photocurable acrylic resin with a thermocurable epoxy resin is presented and proposed as matrix for the fabrication of carbon-fiber reinforced (CFR) composite structures by means of 3D-printing technology. This approach combines the advantages of the easy free-form fabrication typical of the 3D-printing technology with the purposely customized features of the newly developed IPN material. Photocalorimetric and dynamic-mechanical analyses were performed in order to investigate the photo-and thermal-crosslinking reactions and their effect on the development of the IPN system. The IPN resin was finally loaded with carbon fibers and successfully ultraviolet-assisted (UV)-3D printed, demonstrating the possibility of fabricating CFR composite materials in 3D with excellent mechanical properties. Being the first example of direct fabrication of IPN-based composites by 3D printing, this study clearly shows the great potential of this additive manufacturing technology for advanced industrial applications. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在这项工作中,提出了一种通过将光固化丙烯酸树脂与热固化环氧树脂共同配制而获得的依次互穿的聚合物网络(IPN),并作为通过3D-碳纤维增强(CFR)复合结构的制造基质印刷技术。这种方法结合了3D打印技术典型的轻松自由形式制造的优势以及新开发的IPN材料的有针对性的定制功能。为了研究光和热交联反应及其对IPN系统发展的影响,进行了光热分析和动态力学分析。 IPN树脂最终装载了碳纤维,并成功地进行了紫外线辅助(UV)-3D打印,这证明了以3D方式制造具有出色机械性能的CFR复合材料的可能性。通过3D打印直接制造基于IPN的复合材料的第一个示例,这项研究清楚地表明了这种增材制造技术在先进工业应用中的巨大潜力。 (C)2016 Elsevier Ltd.保留所有权利。

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