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"A Magnetically and Thermally Controlled Liquid Metal Variable Stiffnes" by Mingkui Zhang, Xuanhan Chen et al. - Vimarsana News

"A Magnetically and Thermally Controlled Liquid Metal Variable Stiffnes" by Mingkui Zhang, Xuanhan Chen et al.

Smart materials that can actively tune their stiffness are of great interest to many fields, including the construction industry, medical devices, industrial machines, and soft robotics. However, developing a material that can offer a large range of stiffness change and rapid tuning remains a challenge. Herein, a liquid metal variable stiffness material (LMVSM) that can actively and rapidly tune its stiffness by applying an external magnetic field or by changing the temperature is developed. The LMVSM is composed of three layers: a gallium–iron magnetorheological fluid (Ga–Fe MRF) layer fo...

Source: uow.edu.au
"4D-printed pneumatic soft actuators modeling, fabrication, and control" by Charbel Tawk and Gursel Alici - Vimarsana News

"4D-printed pneumatic soft actuators modeling, fabrication, and control" by Charbel Tawk and Gursel Alici

Soft actuators are one of the primary and critical components of a soft robot. Soft robots demand dexterous, fast, and reversible soft actuators that must be able to contract, extend, bend, and/or twist with favorable performance while delivering sufficient output forces. Pneumatic soft actuators are one of the most used types of soft actuators for soft robotic systems since they can be designed with internal deformable hollow chambers that dictate a desired output motion and can be directly fabricated using various additive manufacturing techniques. Pneumatic soft actuators based on a volumet...

Source: uow.edu.au
MIT-Made Tiny Drones Weigh Less Than a Gram, Use Artificial Muscles To Propel Them - Vimarsana News

MIT-Made Tiny Drones Weigh Less Than a Gram, Use Artificial Muscles To Propel Them

Sometimes, good things come in small packages. Extremely tiny packages such as a microrobot that can pollinate fields of crops, help rescue people, and so on. Researchers at MIT (Massachusetts Institute of Technology) are already working on that and they’re making significant progress.