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用于熔融沉积成型/熔丝制造3D打印制造工艺的先进复合材料:填充丝材的案例

Advanced Composite Materials Utilized in FDM/FFF 3D Printing Manufacturing Processes: The Case of Filled Filaments.

作者信息

Kantaros Antreas, Soulis Evangelos, Petrescu Florian Ion Tiberiu, Ganetsos Theodore

机构信息

Department of Industrial Design and Production Engineering, University of West Attica, 12244 Athens, Greece.

Theory of Mechanisms and Robots Department, Faculty of Industrial Engineering and Robotics, Bucharest Polytechnic University, 060042 Bucharest, Romania.

出版信息

Materials (Basel). 2023 Sep 14;16(18):6210. doi: 10.3390/ma16186210.

Abstract

The emergence of additive manufacturing technologies has brought about a significant transformation in several industries. Among these technologies, Fused Deposition Modeling/Fused Filament Fabrication (FDM/FFF) 3D printing has gained prominence as a rapid prototyping and small-scale production technique. The potential of FDM/FFF for applications that require improved mechanical, thermal, and electrical properties has been restricted due to the limited range of materials that are suitable for this process. This study explores the integration of various reinforcements, including carbon fibers, glass fibers, and nanoparticles, into the polymer matrix of FDM/FFF filaments. The utilization of advanced materials for reinforcing the filaments has led to the enhancement in mechanical strength, stiffness, and toughness of the 3D-printed parts in comparison to their pure polymer counterparts. Furthermore, the incorporation of fillers facilitates improved thermal conductivity, electrical conductivity, and flame retardancy, thereby broadening the scope of potential applications for FDM/FFF 3D-printed components. Additionally, the article underscores the difficulties linked with the utilization of filled filaments in FDM/FFF 3D printing, including but not limited to filament extrusion stability, nozzle clogging, and interfacial adhesion between the reinforcement and matrix. Ultimately, a variety of pragmatic implementations are showcased, wherein filled filaments have exhibited noteworthy benefits in comparison to standard FDM/FFF raw materials. The aforementioned applications encompass a wide range of industries, such as aerospace, automotive, medical, electronics, and tooling. The article explores the possibility of future progress and the incorporation of innovative reinforcement materials. It presents a plan for the ongoing growth and application of advanced composite materials in FDM/FFF 3D printing.

摘要

增材制造技术的出现给多个行业带来了重大变革。在这些技术中,熔融沉积建模/熔融长丝制造(FDM/FFF)3D打印作为一种快速成型和小规模生产技术已崭露头角。由于适用于该工艺的材料范围有限,FDM/FFF在需要改善机械、热和电性能的应用方面的潜力受到了限制。本研究探讨了将包括碳纤维、玻璃纤维和纳米颗粒在内的各种增强材料融入FDM/FFF长丝的聚合物基体中。与纯聚合物对应物相比,使用先进材料增强长丝可提高3D打印部件的机械强度、刚度和韧性。此外,添加填料有助于提高热导率、电导率和阻燃性,从而拓宽了FDM/FFF 3D打印部件的潜在应用范围。此外,本文强调了在FDM/FFF 3D打印中使用填充长丝所涉及的困难,包括但不限于长丝挤出稳定性、喷嘴堵塞以及增强材料与基体之间的界面附着力。最终,展示了各种实际应用案例,其中填充长丝与标准FDM/FFF原材料相比展现出了显著优势。上述应用涵盖了广泛的行业,如航空航天、汽车、医疗、电子和工具制造。本文探讨了未来取得进展以及纳入创新增强材料的可能性。它提出了先进复合材料在FDM/FFF 3D打印中持续发展和应用的计划。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1906/10532629/001e9aa9ed07/materials-16-06210-g001.jpg

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