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熔丝制造工艺中制造方向对复合纤维增强聚合物元件力学性能影响的研究

Investigation of the Manufacturing Orientation Impact on the Mechanical Properties of Composite Fiber-Reinforced Polymer Elements in the Fused Filament Fabrication Process.

作者信息

Spišák Emil, Nováková-Marcinčínová Ema, Nováková-Marcinčínová Ľudmila, Majerníková Janka, Mulidrán Peter

机构信息

Faculty of Mechanical Engineering, Technical University of Košice, Letná 9, 042 00 Košice, Slovakia.

Faculty of Manufacturing Technologies with a Seat in Prešov, Technical University of Kosice, Bayerova 1, 080 01 Prešov, Slovakia.

出版信息

Polymers (Basel). 2023 Jun 21;15(13):2757. doi: 10.3390/polym15132757.

Abstract

This article examines the mechanical properties and compatibility of selected composite materials produced with RP technology and the FFF-fused filament fabrication process. The article scales sophisticated modern materials based on PLA-polylactic acid-plastic and its composite variants. The research is carried out on the 3D FFF printer Felix 3.1 with a dual extruder, which works on the "open-source" principle. In this research, elements of the paradigm and methodology of the processing technology for RP were applied; they were implemented according to EN ISO 527 and ISO 2602 standards. The aim of this study was to investigate the impact of 3D-printing strategy on the mechanical properties of 5 types of PLA composites. The results of this research solve the material compatibility problem, primarily through experimental testing of different combinations of filaments in different printing directions. Analysis of the experimental data showed correlations between the choice of printing strategy and mechanical properties, mainly tensile strength of the selected filaments. The research results show the influence of the printing orientation on mechanical properties of 3D printed samples: parts extruded in length orientation showed higher values of tensile strength compared to parts made in width and height. The CarbonPLA material exhibited 10 times higher tensile strength when printed in length compared to samples.

摘要

本文研究了采用RP技术和FFF熔丝制造工艺生产的特定复合材料的力学性能和兼容性。本文对基于聚乳酸(PLA)塑料及其复合变体的复杂现代材料进行了分级。研究在具有双挤出机的3D FFF打印机Felix 3.1上进行,该打印机采用“开源”原理工作。在本研究中,应用了RP加工技术的范式和方法要素;它们是根据EN ISO 527和ISO 2602标准实施的。本研究的目的是研究3D打印策略对5种PLA复合材料力学性能的影响。本研究结果主要通过对不同打印方向上不同长丝组合的实验测试解决了材料兼容性问题。实验数据分析表明,打印策略的选择与力学性能之间存在相关性,主要是所选长丝的拉伸强度。研究结果表明了打印方向对3D打印样品力学性能的影响:与宽度和高度方向制作的零件相比,长度方向挤出的零件表现出更高的拉伸强度值。与样品相比,CarbonPLA材料在长度方向打印时的拉伸强度高出10倍。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3598/10346612/5458f5e9469e/polymers-15-02757-g001.jpg

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