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通过熔丝制造工艺生产的短碳纤维增强聚合物夹层结构的压缩和弯曲性能

Compression and Bending Properties of Short Carbon Fiber Reinforced Polymers Sandwich Structures Produced via Fused Filament Fabrication Process.

作者信息

Zaharia Sebastian Marian, Pop Mihai Alin, Chicos Lucia-Antoneta, Buican George Razvan, Lancea Camil, Pascariu Ionut Stelian, Stamate Valentin-Marian

机构信息

Department of Manufacturing Engineering, Transilvania University of Brasov, 500036 Brasov, Romania.

Department of Materials Science, Transilvania University of Brasov, 500036 Brasov, Romania.

出版信息

Polymers (Basel). 2022 Jul 19;14(14):2923. doi: 10.3390/polym14142923.

Abstract

Additive manufacturing, through the process of thermoplastic extrusion of filament, allows the manufacture of complex composite sandwich structures in a short time with low costs. This paper presents the design and fabrication by Fused Filament Fabrication (FFF) of composite sandwich structures with short fibers, having three core types C, Z, and H, followed by mechanical performance testing of the structures for compression and bending in three points. Flatwise compression tests and three-point bending have clearly indicated the superior performance of H-core sandwich structures due to dense core structures. The main modes of failure of composite sandwich structures were analyzed microscopically, highlighting core shear buckling in compression tests and face indentation in three-point bending tests. The strength-mass ratio allowed the identification of the structures with the best performances considering the desire to reduce the mass, so: the H-core sandwich structures showed the best results in compression tests and the C-core sandwich structures in three-point bending tests. The feasibility of the FFF process and the three-point bending test of composite wing sections, which will be used on an unmanned aircraft, have also been demonstrated. The finite element analysis showed the distribution of equivalent stresses and reaction forces for the composite wing sections tested for bending, proving to validate the experimental results.

摘要

增材制造通过长丝的热塑性挤出工艺,能够在短时间内低成本制造复杂的复合夹层结构。本文介绍了采用熔融长丝制造(FFF)工艺设计和制造的含短纤维的复合夹层结构,其芯材有C型、Z型和H型三种类型,随后对这些结构进行了三点压缩和弯曲力学性能测试。平面压缩试验和三点弯曲试验清楚地表明,由于芯材结构致密,H型芯夹层结构具有卓越的性能。对复合夹层结构的主要失效模式进行了微观分析,突出了压缩试验中的芯材剪切屈曲和三点弯曲试验中的面板压痕。强度质量比有助于在考虑减轻质量的需求下识别性能最佳的结构,因此:H型芯夹层结构在压缩试验中表现最佳,C型芯夹层结构在三点弯曲试验中表现最佳。还证明了FFF工艺和用于无人机的复合机翼部件三点弯曲试验的可行性。有限元分析显示了测试的复合机翼部件弯曲时等效应力和反作用力的分布,证明了实验结果的有效性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b026/9323064/7220ae6310d8/polymers-14-02923-g001.jpg

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