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Multifunctional Magnetic Muscles for Soft Robotics

Engineering and Technology

Multifunctional Magnetic Muscles for Soft Robotics

M. Seong, K. Sun, et al.

Discover an innovative artificial magnetic muscle that outperforms biological muscles in both mechanical properties and actuation capabilities. This cutting-edge research by Minho Seong, Kahyun Sun, Somi Kim, Hyukjoo Kwon, Sang-Woo Lee, Sarath Chandra Veerla, Dong Kwan Kang, Jaeil Kim, Stalin Kondaveeti, Salah M. Tawfik, Hyung Wook Park, and Hoon Eui Jeong showcases a unique composite material allowing for remarkable control and versatility in robotic applications.... show more
Abstract
Despite recent advancements, artificial muscles have not yet been able to strike the right balance between exceptional mechanical properties and dexterous actuation abilities that are found in biological systems. Here, we present an artificial magnetic muscle that exhibits multiple remarkable mechanical properties and demonstrates comprehensive actuating performance, surpassing those of biological muscles. This artificial muscle utilizes a composite configuration, integrating a phase-change polymer and ferromagnetic particles, enabling active control over mechanical properties and complex actuating motions through remote laser heating and magnetic field manipulation. Consequently, the magnetic composite muscle can dynamically adjust its stiffness as needed, achieving a switching ratio exceeding 2.7 × 10^3. This remarkable adaptability facilitates substantial load-bearing capacity, with specific load capacities of up to 1000 and 3690 for tensile and compressive stresses, respectively. Moreover, it demonstrates reversible extension, contraction, bending, and twisting, with stretchability exceeding 800%. We leverage these distinctive attributes to showcase the versatility of this composite muscle as a soft continuum robotic manipulator. It adeptly executes various programmable responses and performs complex tasks while minimizing mechanical vibrations. Furthermore, we demonstrate that this composite muscle excels across multiple mechanical and actuation aspects compared to existing actuators.
Publisher
Nature Communications
Published On
Sep 10, 2024
Authors
Minho Seong, Kahyun Sun, Somi Kim, Hyukjoo Kwon, Sang-Woo Lee, Sarath Chandra Veerla, Dong Kwan Kang, Jaeil Kim, Stalin Kondaveeti, Salah M. Tawfik, Hyung Wook Park, Hoon Eui Jeong
Tags
artificial muscle
magnetic actuation
soft robotics
phase-change polymer
ferromagnetic particles
stiffness adjustment
composite materials
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