3D Printing of Magnetic Soft Materials for Functional Structures and Devices

S Shouyi Yu (Shenzhen Key Laboratory for Additive Manufacturing of High‐Performance Materials Department of Mechanical and Energy Engineering Southern University of Science and Technology Shenzhen China) Y Yingbo Yan M Mei Chen X Xingjian Huang (Shenzhen Key Laboratory for Additive Manufacturing of High‐Performance Materials Department of Mechanical and Energy Engineering Southern University of Science and Technology Shenzhen China) L Liuchao Jin (Shenzhen Key Laboratory for Additive Manufacturing of High‐Performance Materials Department of Mechanical and Energy Engineering Southern University of Science and Technology Shenzhen China) R Rong Wang K Kun Zhou (Key Laboratory of Animal Virology, Ministry of Agricultural and Rural Affairs of China and Zhejiang Provincial Engineering Research Center of Animal Biological Products, Department of Veterinary Medicine, Zhejiang University College of Animal Sciences) Q Qi Ge

Abstract

ABSTRACT Magnetic soft materials (MSMs) have garnered widespread attention due to their advantages in wireless control, rapid response, and programmable anisotropy. Magnetically programmed MSM structures and devices have found extensive applications in fields such as miniature robots, biomedical engineering, and flexible electronics. However, their further development faces significant challenges in manufacturing, especially the need to create complex three‐dimensional (3D) structures with full degrees of freedom (DoFs) magnetic programming. Traditional manufacturing approaches and 3D printing followed by post‐magnetic programming face multistep workflows, limited programming freedom, and restricted filler selection. Magnetic field‐assisted 3D printing (MF3DP) addresses these limitations by coupling fabrication with in situ magnetic programming, enabling the direct manufacturing of MSM structures with programmable magnetic fillers orientations. In this paper, we first introduce magnetic materials, matrix materials, and their composites, focusing on their fundamental properties and response mechanisms. Then, we review traditional manufacturing approaches and 3D printing, followed by post‐magnetic programming. Next, we systematically review MF3DP technologies, providing a comprehensive discussion of magnetic field sources, field integration strategies, magnetic programming mechanisms, programming capabilities, and overall manufacturing performance. Finally, we discuss the current challenges and prospects of 3D printing of MSMs.

Article Details

Volume / Issue Vol. 38, Issue 44
Published August 01, 2026
ISSN 0935-9648
Publisher Unknown Publisher

Journal Info

Advanced Materials

Unknown Publisher

ISSN: 0935-9648 Physical Sciences

Authors (8)

S

Shouyi Yu

Shenzhen Key Laboratory for Additive Manufacturing of High‐Performance Materials Department of Mechanical and Energy Engineering Southern University of Science and Technology Shenzhen China

Y

Yingbo Yan

M

Mei Chen

X

Xingjian Huang

Shenzhen Key Laboratory for Additive Manufacturing of High‐Performance Materials Department of Mechanical and Energy Engineering Southern University of Science and Technology Shenzhen China

L

Liuchao Jin

Shenzhen Key Laboratory for Additive Manufacturing of High‐Performance Materials Department of Mechanical and Energy Engineering Southern University of Science and Technology Shenzhen China

R

Rong Wang

K

Kun Zhou

Key Laboratory of Animal Virology, Ministry of Agricultural and Rural Affairs of China and Zhejiang Provincial Engineering Research Center of Animal Biological Products, Department of Veterinary Medicine, Zhejiang University College of Animal Sciences

Q

Qi Ge