4.7 Review

Scientometric Analysis and Systematic Review of Multi-Material Additive Manufacturing of Polymers

Journal

POLYMERS
Volume 13, Issue 12, Pages -

Publisher

MDPI
DOI: 10.3390/polym13121957

Keywords

additive manufacturing; multi-material; polymers; review; scientometric analysis

Funding

  1. Natural Sciences and Engineering Research Council of Canada (NSERC) [NSERC ALLRP561048-20, NSERC RGPIN-2017-04516, CRDPJ 537378-18]
  2. Minister of Economic Development, Trade and Tourism

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This study provides a comprehensive overview of the current research status and future challenges in multi-material additive manufacturing of polymers through scientometric analysis and systematic review. The research identifies key research trends and highlights the importance of developing technologies in this field, offering valuable insights for practitioners and researchers to guide future research directions.
Multi-material additive manufacturing of polymers has experienced a remarkable increase in interest over the last 20 years. This technology can rapidly design and directly fabricate three-dimensional (3D) parts with multiple materials without complicating manufacturing processes. This research aims to obtain a comprehensive and in-depth understanding of the current state of research and reveal challenges and opportunities for future research in the area. To achieve the goal, this study conducts a scientometric analysis and a systematic review of the global research published from 2000 to 2021 on multi-material additive manufacturing of polymers. In the scientometric analysis, a total of 2512 journal papers from the Scopus database were analyzed by evaluating the number of publications, literature coupling, keyword co-occurrence, authorship, and countries/regions activities. By doing so, the main research frame, articles, and topics of this research field were quantitatively determined. Subsequently, an in-depth systematic review is proposed to provide insight into recent advances in multi-material additive manufacturing of polymers in the aspect of technologies and applications, respectively. From the scientometric analysis, a heavy bias was found towards studying materials in this field but also a lack of focus on developing technologies. The future trend is proposed by the systematic review and is discussed in the directions of interfacial bonding strength, printing efficiency, and microscale/nanoscale multi-material 3D printing. This study contributes by providing knowledge for practitioners and researchers to understand the state of the art of multi-material additive manufacturing of polymers and expose its research needs, which can serve both academia and industry.

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