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石墨烯(GNP)增强3D打印纳米复合材料:先进的结构视角。

Graphene (GNP) reinforced 3D printing nanocomposites: An advanced structural perspective.

作者信息

Iqbal Akm Asif, Harcen Clement Stefano, Haque Mainul

机构信息

Department of Mechanical, Materials and Manufacturing Engineering, Faculty of Science and Engineering, University of Nottingham Ningbo China, 199, Taikang East Road, Yinzhou, Ningbo, 315100, China.

Department of Mathematical Sciences, University of Nottingham Ningbo China, 199 Taikang East Road, Yinzhou, Ningbo 315100, China.

出版信息

Heliyon. 2024 Mar 27;10(7):e28771. doi: 10.1016/j.heliyon.2024.e28771. eCollection 2024 Apr 15.

Abstract

The influence of macro-micro structural design on the mechanical response of structural nanocomposites is substantial. The advancement of additive manufacturing especially three-dimensional (3-D) printing technology offers a promising avenue for the efficient and precise fabrication of multi-functional low-weight and high-strength nanocomposites. In contemporary discourse, there is a notable emphasis on carbon-based nanomaterials as nanofillers for structural composites due to their substantial specific surface area and exceptional load-bearing ability in mechanical structures. Notably, graphene, a distinctive two-dimensional (2-D) nanomaterial, exhibits very large elastic modulus and ultimate strength as well as remarkable plasticity. The utilization of graphene nanoparticles (GNPs) in the field of 3-D printing enables the production of intricate three-dimensional structures of varying sizes and configurations. This is achieved through the macro-assembly process, which facilitates the creation of a well-organized distribution of graphene and the establishment of a comprehensive physical network through precise micro-regulation. This paper presents an overview of multiscale structural composites that are strengthened by the incorporation of graphene and prepared by 3-D printing. The composites discussed in this study encompass graphene-polymer composites, graphene-ceramic composites, and graphene-metal composites. Furthermore, an analysis of the present obstacles and potential future advancements in this rapidly expanding domain is anticipated.

摘要

宏观-微观结构设计对结构纳米复合材料力学响应的影响很大。增材制造的进步,特别是三维(3-D)打印技术,为高效精确制造多功能低重量高强度纳米复合材料提供了一条有前景的途径。在当代论述中,由于碳基纳米材料具有较大的比表面积和在机械结构中出色的承载能力,因此作为结构复合材料的纳米填料受到了显著关注。值得注意的是,石墨烯作为一种独特的二维(2-D)纳米材料,具有非常大的弹性模量和极限强度以及显著的可塑性。在3-D打印领域利用石墨烯纳米颗粒(GNPs)能够生产出各种尺寸和构型的复杂三维结构。这是通过宏观组装过程实现的,该过程通过精确的微观调控促进了石墨烯的有序分布并建立了全面的物理网络。本文概述了通过3-D打印制备的、通过掺入石墨烯增强的多尺度结构复合材料。本研究中讨论的复合材料包括石墨烯-聚合物复合材料、石墨烯-陶瓷复合材料和石墨烯-金属复合材料。此外,预计对这个快速发展领域当前的障碍和未来潜在进展进行分析。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4dd8/10990871/d52ceab5e72c/gr1.jpg

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