利用材料挤压工艺对连续碳纤维增强聚合物复合材料进行增材制造。机械性能、工艺参数、断裂分析、挑战和未来展望。综述

IF 23.2 2区 材料科学 Q1 MATERIALS SCIENCE, COMPOSITES Advanced Composites and Hybrid Materials Pub Date : 2024-10-24 DOI:10.1007/s42114-024-01035-w
Nabeel Maqsood, Marius Rimašauskas, Morteza Ghobakhloo, Genrik Mordas, Kateřina Skotnicová
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引用次数: 0

摘要

快速成型制造(AM)是一种先进的可持续制造工艺,可利用各种材料制造功能部件。与传统制造技术相比,熔融沉积建模(FDM)是使用最广泛的材料挤压(ME)增材制造工艺,可利用连续纤维增强聚合物复合材料制造出机械性能更好、几何形状更复杂的复合材料。本研究深入探讨了连续碳纤维(CCF)增强热塑性复合材料的进步和最新发展,重点关注通过 ME 方法加工和制造这些材料。研究深入探讨了在制造过程之前对 CCF 进行预浸渍这一关键步骤,评估了其对提高复合材料机械性能的影响。此外,研究还探讨了不同的印刷工艺参数如何影响所生产复合材料的整体机械性能。报告还介绍了结合连续纤维的创新蜂窝结构的开发情况,以及对这些材料断裂力学的分析。此外,本综述还探讨了限制这些先进材料更广泛应用的当前技术挑战,并提出了潜在的未来研发方向。本综述旨在阐明 CCF 增强热塑性复合材料在改变制造工艺方面的巨大潜力,并激励人们进一步探索这一前景广阔的领域。
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Additive manufacturing of continuous carbon fiber reinforced polymer composites using materials extrusion process. Mechanical properties, process parameters, fracture analysis, challenges, and future prospect. A review

Additive manufacturing (AM) is an advanced and sustainable manufacturing process to make functional parts from various materials. Fused deposition modeling (FDM) is the most widely used material extrusion (ME) additive manufacturing process to create composites using continuous fiber reinforced polymers composite with improved mechanical properties and complex geometrical shapes compared to traditional manufacturing techniques. This study provides a thorough examination of the advancements and state-of-the-art developments in continuous carbon fiber (CCF) reinforced thermoplastic composite materials, focusing on their processing and fabrication through the ME method. The research delves into the critical step of pre-impregnating CCF before the manufacturing process, assessing its impact on enhancing the mechanical properties of the composites. Furthermore, the study explores how varying printing process parameters can influence the overall mechanical performance of the produced composites. The development of innovative cellular structures incorporating continuous fiber, alongside an analysis of fracture mechanics within these materials, is also presented. Additionally, this review addresses the current technological challenges that limit the broader application of these advanced materials and proposes potential future directions for research and development. This comprehensive overview aims to illuminate the significant potential of CCF reinforced thermoplastic composites in transforming manufacturing processes and to inspire further exploration in this promising field.

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来源期刊
CiteScore
26.00
自引率
21.40%
发文量
185
期刊介绍: Advanced Composites and Hybrid Materials is a leading international journal that promotes interdisciplinary collaboration among materials scientists, engineers, chemists, biologists, and physicists working on composites, including nanocomposites. Our aim is to facilitate rapid scientific communication in this field. The journal publishes high-quality research on various aspects of composite materials, including materials design, surface and interface science/engineering, manufacturing, structure control, property design, device fabrication, and other applications. We also welcome simulation and modeling studies that are relevant to composites. Additionally, papers focusing on the relationship between fillers and the matrix are of particular interest. Our scope includes polymer, metal, and ceramic matrices, with a special emphasis on reviews and meta-analyses related to materials selection. We cover a wide range of topics, including transport properties, strategies for controlling interfaces and composition distribution, bottom-up assembly of nanocomposites, highly porous and high-density composites, electronic structure design, materials synergisms, and thermoelectric materials. Advanced Composites and Hybrid Materials follows a rigorous single-blind peer-review process to ensure the quality and integrity of the published work.
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