Magnetic Soft Materials and Robots

Мягкие магнитные материалы и роботы
Xuanhe Zhao, Yoonho Kim
2022-02-01

biomedical applicationsmagnetic actuationmagnetic soft materialsmagnetic soft robotstether-free actuation
In conventional classification, soft robots feature mechanical compliance as the main distinguishing factor from traditional robots made of rigid materials. Recent advances in functional soft materials have facilitated the emergence of a new class of soft robots capable of tether-free actuation in response to external stimuli such as heat, light, solvent, or electric or magnetic field. Among the various types of stimuli-responsive materials, magnetic soft materials have shown remarkable progress in their design and fabrication, leading to the development of magnetic soft robots with unique advantages and potential for many important applications. However, the field of magnetic soft robots is still in its infancy and requires further advancements in terms of design principles, fabrication methods, control mechanisms, and sensing modalities. Successful future development of magnetic soft robots would require a comprehensive understanding of the fundamental principle of magnetic actuation, as well as the physical properties and behavior of magnetic soft materials. In this review, we discuss recent progress in the design and fabrication, modeling and simulation, and actuation and control of magnetic soft materials and robots. We then give a set of design guidelines for optimal actuation performance of magnetic soft materials. Lastly, we summarize potential biomedical applications of magnetic soft robots and provide our perspectives on next-generation magnetic soft robots.
1
Effective development depends on understanding magnetic actuation fundamentals and the physical behavior of magnetic soft materials.
2
Recent advances in material design and fabrication have produced magnetic soft robots with unique capabilities and promising application potential.
3
Stimuli-responsive magnetic soft materials enable tether-free soft-robot actuation using externally applied magnetic fields.
4
The field remains immature, requiring advances in design principles, fabrication, control mechanisms, and sensing modalities.
5
The review synthesizes progress in modeling, fabrication, actuation, and control, and provides design guidelines and perspectives for biomedical and next-generation applications.

magnetic soft materials and magnetic soft robots

their design, fabrication, modeling, simulation, magnetic actuation and control, physical properties and behavior, and biomedical application potential

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2022-02-01
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Xuanhe Zhao
Yoonho Kim
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