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3D打印“连续层-晶格层-连续层”夹层结构的力学性能与失效分析

Mechanical Performance and Failure Analysis of a 3D-Printed "Continuous Layer-Lattice Layer-Continuous Layer" Sandwich Structure.

作者信息

Nie Daming, Kong Lingyu, Zhang Yu, Qiu Xingyu, Fu Yili, Gu Jason

机构信息

Research Center for Intelligent Robotics, Zhejiang Lab, Hangzhou 311100, China.

School of Mechanical and Energy Engineering, Zhejiang University of Science and Technology, Hangzhou 311100, China.

出版信息

Polymers (Basel). 2023 Oct 31;15(21):4283. doi: 10.3390/polym15214283.

Abstract

Sandwich structures are engineered with continuous layers surrounding the inner lattices, which combines the advantages of the high strength of the continuous layer and the light weight of the lattice layer. They are widely employed in weight-critical energy-absorbing engineering fields such as aerospace, automobile, and robotics. However, the application of sandwich structures made of polymer matrix composites is still limited due to lack of essential performance investigation and adequate reference data. The following innovative works are accomplished in this paper: (i) Continuous long glass fiber (CGF) is employed within the continuous layer of the sandwich structure, with composite short carbon fiber/polyamide (SCF/N) applied within the lattice layer. (ii) Sandwich structures with different cell types and orientations of the lattice infills are designed and prepared by additive manufacturing. (iii) The basic mechanical properties of the sandwich structures, i.e., the bi-directional tension/compression compound performance, failure modes and mechanisms in characteristic directions, are analyzed systematically. (iv) The effects of geometric features on the three-point bending properties of L-shaped sandwich structures are investigated and compared with those of pure SCF/N structures. The results show that the bending resistance per unit weight was up to 54.3% larger than that of pure SCF/N, while the weight could be decreased by 49%, and the bending flexibility before fracture could be increased by 44%. These studies contribute fundamental research data to the application of sandwich structures prepared by fiber reinforced polymer matrix composites.

摘要

夹层结构设计为具有围绕内部晶格的连续层,它结合了连续层高强度和晶格层轻质的优点。它们广泛应用于航空航天、汽车和机器人技术等对重量要求严格的能量吸收工程领域。然而,由于缺乏必要的性能研究和足够的参考数据,聚合物基复合材料制成的夹层结构的应用仍然有限。本文完成了以下创新性工作:(i)在夹层结构的连续层中使用连续长玻璃纤维(CGF),在晶格层中应用复合短碳纤维/聚酰胺(SCF/N)。(ii)通过增材制造设计并制备具有不同单元类型和晶格填充物取向的夹层结构。(iii)系统分析夹层结构的基本力学性能,即双向拉伸/压缩复合性能、特征方向上的失效模式和机制。(iv)研究几何特征对L形夹层结构三点弯曲性能的影响,并与纯SCF/N结构进行比较。结果表明,单位重量的抗弯能力比纯SCF/N结构高出54.3%,同时重量可降低49%,断裂前的弯曲柔韧性可提高44%。这些研究为纤维增强聚合物基复合材料制备的夹层结构的应用提供了基础研究数据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3d1a/10649593/1d7af2eefcc5/polymers-15-04283-g001.jpg

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