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通过喷嘴内浸渍实现连续纤维复合材料的三维打印。

Three-dimensional printing of continuous-fiber composites by in-nozzle impregnation.

作者信息

Matsuzaki Ryosuke, Ueda Masahito, Namiki Masaki, Jeong Tae-Kun, Asahara Hirosuke, Horiguchi Keisuke, Nakamura Taishi, Todoroki Akira, Hirano Yoshiyasu

机构信息

Tokyo University of Science, 2641 Yamazaki, Noda, Chiba 278-8510, Japan.

Nihon University, 1-8-14 Kanda-surugadai, Chiyoda, Tokyo 101-8308, Japan.

出版信息

Sci Rep. 2016 Mar 11;6:23058. doi: 10.1038/srep23058.

Abstract

We have developed a method for the three-dimensional (3D) printing of continuous fiber-reinforced thermoplastics based on fused-deposition modeling. The technique enables direct 3D fabrication without the use of molds and may become the standard next-generation composite fabrication methodology. A thermoplastic filament and continuous fibers were separately supplied to the 3D printer and the fibers were impregnated with the filament within the heated nozzle of the printer immediately before printing. Polylactic acid was used as the matrix while carbon fibers, or twisted yarns of natural jute fibers, were used as the reinforcements. The thermoplastics reinforced with unidirectional jute fibers were examples of plant-sourced composites; those reinforced with unidirectional carbon fiber showed mechanical properties superior to those of both the jute-reinforced and unreinforced thermoplastics. Continuous fiber reinforcement improved the tensile strength of the printed composites relative to the values shown by conventional 3D-printed polymer-based composites.

摘要

我们已经开发出一种基于熔融沉积建模的连续纤维增强热塑性塑料的三维(3D)打印方法。该技术无需使用模具即可直接进行3D制造,并且可能成为下一代复合材料制造的标准方法。将热塑性长丝和连续纤维分别供应到3D打印机中,并且在打印之前,纤维在打印机的加热喷嘴内立即被长丝浸渍。聚乳酸用作基体,而碳纤维或天然黄麻纤维的加捻纱用作增强材料。用单向黄麻纤维增强的热塑性塑料是植物源复合材料的实例;用单向碳纤维增强的热塑性塑料的机械性能优于黄麻增强和未增强的热塑性塑料。相对于传统3D打印的聚合物基复合材料所显示的值,连续纤维增强提高了打印复合材料的拉伸强度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7bcc/4786850/81d4a46fe626/srep23058-f1.jpg

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