Additive manufacturing of polymer composite millimeter‐wave components: Recent progress, novel applications, and challenges

Author:

Ma Quanjin1ORCID,Dong Ke1ORCID,Li Feirui1,Jia Qinyin2ORCID,Tian Jing3ORCID,Yu Ming2ORCID,Xiong Yi1ORCID

Affiliation:

1. School of System Design and Intelligent Manufacturing Southern University of Science and Technology Shenzhen China

2. Department of Electronic and Electrical Engineering Southern University of Science and Technology Shenzhen China

3. School of Electronic Science and Engineering University of Electronic Science and Technology of China Chengdu China

Abstract

AbstractWith the advent of 5G/6G for radar and space communication systems, various millimeter‐wave (MMW) components are rapidly innovated for multi‐functional, higher integrated and miniaturized solutions across diverse industries and applications. Polymer composites‐based additive manufacturing (AM), an advanced manufacturing technique, can manufacture MMW components with high fabrication resolution, intricate structural design, adjustable dielectric properties, and functionally gradient distribution characteristics. This paper outlines the state‐of‐the‐art polymer composite MMW components, their design, and manufacturing techniques. An integrated “material‐structure‐manufacturing‐performance” design conceptual framework of polymer composite MMW components is discussed in terms of material design, structure design, and process design. Moreover, multi‐functional polymer composite MMW structures focus on electromagnetic wave absorption and electromagnetic interference (EMI) shielding functions. Moreover, novel applications of MMW polymer composite components enabled by AM on radar/sensing, communication, enclosure, and miscellaneous applications are discussed. Furthermore, future perspectives and current challenges are identified to provide new insights into multi‐functional 3D‐printed MMW products, exploring new possibilities for next‐generation advanced MMW technology.Highlights The 3D‐printed MMW components and additive manufacturing are reviewed. The integrated “material‐structure‐manufacturing‐performance” concept is introduced. 3D‐printed MMW components are discussed on radar, enclosure, and miscellaneous applications. Future perspectives and challenges of 3D‐printed MMW components are addressed.

Funder

National Natural Science Foundation of China

Guangdong Provincial Introduction of Innovative Research and Development Team

Publisher

Wiley

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