Magnetic Putty as a Reconfigurable, Recyclable, and Accessible Soft Robotic Material

Author:

Li Meng12ORCID,Pal Aniket13ORCID,Byun Junghwan1,Gardi Gaurav1,Sitti Metin145ORCID

Affiliation:

1. Department of Physical Intelligence Max Planck Institute for Intelligent Systems 70569 Stuttgart Germany

2. Department of Civil and Environmental Engineering Massachusetts Institute of Technology Cambridge MA 02139 USA

3. Institute of Applied Mechanics University of Stuttgart 70569 Stuttgart Germany

4. Institute for Biomedical Engineering ETH Zürich Zürich 8092 Switzerland

5. School of Medicine and College of Engineering Koç University Istanbul 34450 Turkey

Abstract

AbstractMagnetically hard materials are widely used to build soft magnetic robots, providing large magnetic force/torque and macrodomain programmability. However, their high magnetic coercivity often presents practical challenges when attempting to reconfigure magnetization patterns, requiring a large magnetic field or heating. In this study, magnetic putty is introduced as a magnetically hard and soft material with large remanence and low coercivity. It is shown that the magnetization of magnetic putty can be easily reoriented with maximum magnitude using an external field that is only one‐tenth of its coercivity. Additionally, magnetic putty is a malleable, autonomous self‐healing material that can be recycled and repurposed. The authors anticipate magnetic putty could provide a versatile and accessible tool for various magnetic robotics applications for fast prototyping and explorations for research and educational purposes.

Publisher

Wiley

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

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