Amaechi Chiemela Victor, Adefuye Emmanuel Folarin, Kgosiemang Irish Mpho, Huang Bo, Amaechi Ebube Charles
School of Engineering, Lancaster University, Bailrigg, Lancaster LA1 4YR, UK.
Standards Organisation of Nigeria (SON), 52 Lome Crescent, Wuse Zone 7, Abuja 900287, Federal Capital Territory, Nigeria.
Materials (Basel). 2022 Aug 2;15(15):5323. doi: 10.3390/ma15155323.
Over the past 15 years, interest in additive manufacturing (AM) on lattice structures has significantly increased in producing 3D/4D objects. The purpose of this study is to gain a thorough grasp of the research pattern and the condition of the field's research today as well as identify obstacles towards future research. To accomplish the purpose, this work undertakes a scientometric analysis of the international research conducted on additive manufacturing for lattice structure materials published from 2002 to 2022. A total of 1290 journal articles from the Web of Science (WoS) database and 1766 journal articles from the Scopus database were found using a search system. This paper applied scientometric science, which is based on bibliometric analysis. The data were subjected to a scientometric study, which looked at the number of publications, authorship, regions by countries, keyword co-occurrence, literature coupling, and scientometric mapping. VOSviewer was used to establish research patterns, visualize maps, and identify transcendental issues. Thus, the quantitative determination of the primary research framework, papers, and themes of this research field was possible. In order to shed light on current developments in additive manufacturing for lattice structures, an extensive systematic study is provided. The scientometric analysis revealed a strong bias towards researching AM on lattice structures but little concentration on technologies that emerge from it. It also outlined its unmet research needs, which can benefit both the industry and academia. This review makes a prediction for the future, with contributions by educating researchers, manufacturers, and other experts on the current state of AM for lattice structures.
在过去15年里,人们对用于制造3D/4D物体的晶格结构增材制造(AM)的兴趣显著增加。本研究的目的是全面了解该领域目前的研究模式和研究状况,并找出未来研究的障碍。为实现这一目的,本工作对2002年至2022年发表的关于晶格结构材料增材制造的国际研究进行了科学计量分析。使用搜索系统在Web of Science(WoS)数据库中找到了1290篇期刊文章,在Scopus数据库中找到了1766篇期刊文章。本文应用了基于文献计量分析的科学计量学。对数据进行了科学计量学研究,考察了出版物数量、作者身份、国家地区、关键词共现、文献耦合和科学计量映射。使用VOSviewer建立研究模式、可视化地图并识别超越性问题。因此,可以对该研究领域的主要研究框架、论文和主题进行定量确定。为了阐明晶格结构增材制造的当前发展情况,提供了广泛的系统研究。科学计量分析表明,对晶格结构增材制造的研究存在强烈偏向,但对由此产生的技术关注较少。它还概述了尚未满足的研究需求,这对工业界和学术界都有益。本综述对未来进行了预测,通过向研究人员、制造商和其他专家介绍晶格结构增材制造的当前状态做出了贡献。