Saleh Alghamdi Saad, John Sabu, Roy Choudhury Namita, Dutta Naba K
School of Engineering, Chemical and Environmental Engineering, RMIT University, Melbourne 3000, Australia.
School of Engineering, Manufacturing, Materials and Mechatronics, RMIT University, Bundoora 3083, Australia.
Polymers (Basel). 2021 Feb 28;13(5):753. doi: 10.3390/polym13050753.
The use of additive manufacturing (AM) has moved well beyond prototyping and has been established as a highly versatile manufacturing method with demonstrated potential to completely transform traditional manufacturing in the future. In this paper, a comprehensive review and critical analyses of the recent advances and achievements in the field of different AM processes for polymers, their composites and nanocomposites, elastomers and multi materials, shape memory polymers and thermo-responsive materials are presented. Moreover, their applications in different fields such as bio-medical, electronics, textiles, and aerospace industries are also discussed. We conclude the article with an account of further research needs and future perspectives of AM process with polymeric materials.
增材制造(AM)的应用已远远超出了原型制作范畴,并已成为一种高度通用的制造方法,展现出在未来彻底变革传统制造业的潜力。本文对聚合物、其复合材料和纳米复合材料、弹性体及多材料、形状记忆聚合物和热响应材料等不同增材制造工艺领域的最新进展和成果进行了全面综述与批判性分析。此外,还讨论了它们在生物医学、电子、纺织和航空航天等不同领域的应用。我们在文章结尾阐述了增材制造工艺与聚合物材料的进一步研究需求及未来展望。