Rajendran Sundarakannan, Palani Geetha, Kanakaraj Arunprasath, Shanmugam Vigneshwaran, Veerasimman Arumugaprabu, Gądek Szymon, Korniejenko Kinga, Marimuthu Uthayakumar
Institute of Agricultural Engineering, Saveetha School of Engineering, Saveetha Institute of Medical and Technical Sciences, Chennai 602105, India.
Department of Mechanical Engineering, PSN College of Engineering and Technology, Tirunelveli 627152, India.
Polymers (Basel). 2023 Jun 2;15(11):2564. doi: 10.3390/polym15112564.
This review examines the mechanical performance of metal- and polymer-based composites fabricated using additive manufacturing (AM) techniques. Composite materials have significantly influenced various industries due to their exceptional reliability and effectiveness. As technology advances, new types of composite reinforcements, such as novel chemical-based and bio-based, and new fabrication techniques are utilized to develop high-performance composite materials. AM, a widely popular concept poised to shape the development of Industry 4.0, is also being utilized in the production of composite materials. Comparing AM-based manufacturing processes to traditional methods reveals significant variations in the performance of the resulting composites. The primary objective of this review is to offer a comprehensive understanding of metal- and polymer-based composites and their applications in diverse fields. Further on this review delves into the intricate details of metal- and polymer-based composites, shedding light on their mechanical performance and exploring the various industries and sectors where they find utility.
本综述考察了采用增材制造(AM)技术制造的金属基和聚合物基复合材料的力学性能。复合材料因其卓越的可靠性和有效性,对各个行业产生了重大影响。随着技术的进步,新型的复合增强材料,如新型化学基和生物基增强材料,以及新的制造技术被用于开发高性能复合材料。增材制造作为一个广泛流行且有望塑造工业4.0发展的概念,也被应用于复合材料的生产中。将基于增材制造的制造工艺与传统方法进行比较,结果表明所得复合材料的性能存在显著差异。本综述的主要目的是全面介绍金属基和聚合物基复合材料及其在不同领域的应用。在此基础上,本综述深入探讨了金属基和聚合物基复合材料的复杂细节,阐明其力学性能,并探索它们在其中具有实用性的各个行业和领域。