Santos Caroliny M, Santos Thiago F, Rao H Jeevan, Silva F Higor V A, Mavinkere Rangappa Sanjay, Boonyasopon Pawinee, Siengchin Suchart, Souza D F S, Nascimento J H O
Postgraduate Program in Chemical Engineering, Technology Center, Federal University of Rio Grande do Norte, Av. Prof. Sen. Salgado Filho, 3000, Natal, Rio Grande do Norte, 59072-970, Brazil.
Department of Mathematics, School of Sciences and Humanities, Nazarbayev University, Astana, 010000, Kazakhstan.
Heliyon. 2024 Sep 21;10(19):e38264. doi: 10.1016/j.heliyon.2024.e38264. eCollection 2024 Oct 15.
Over the past 10 years, materials science and engineering have shown increasing interest in incorporating lignocellulosic fibers into polymer and hybrid composites (LCF-CPH). This bibliometric analysis, covering the period 2012 to 2022, examines the current state of research on the application of these fibers in composites, with the aim of identifying significant contributions, new trends, and possible future directions. The analysis included a comprehensive database search using specific criteria, which revealed a significant increase in research activity on a variety of lignocellulosic fibers, such as flax, jute, hemp and sisal. This growth is particularly evident in the packaging, automotive, aerospace and construction industries. Hybrid composites based on these fibers have gained prominence due to their enhanced properties, which include improvements in mechanical, thermal and environmental characteristics. The findings of this research have significant implications for governments, corporations, and academic institutions. Researchers gain a deeper understanding of emerging trends, industry gains valuable insights into the advantages of adopting lignocellulosic fibers, and policymakers gain essential information to support the development of sustainable composites. In the field of advanced composites and sustainable materials, this work lays a solid foundation for future research and industrial applications.
在过去十年中,材料科学与工程领域对将木质纤维素纤维纳入聚合物和混合复合材料(LCF-CPH)表现出越来越浓厚的兴趣。这项文献计量分析涵盖了2012年至2022年期间,考察了这些纤维在复合材料中应用的研究现状,旨在确定重大贡献、新趋势以及未来可能的发展方向。该分析通过使用特定标准进行全面的数据库搜索,结果显示对各种木质纤维素纤维(如亚麻、黄麻、大麻和剑麻)的研究活动显著增加。这种增长在包装、汽车、航空航天和建筑行业尤为明显。基于这些纤维的混合复合材料因其性能增强而备受关注,这些性能包括机械、热学和环境特性的改善。这项研究的结果对政府、企业和学术机构具有重要意义。研究人员能更深入地了解新兴趋势,行业能获得关于采用木质纤维素纤维优势的宝贵见解,政策制定者能获得支持可持续复合材料发展的重要信息。在先进复合材料和可持续材料领域,这项工作为未来的研究和工业应用奠定了坚实基础。