Robotics

Steerable soft robots could enhance medical applications

Borrowing from methods used to produce optical fibers, researchers from EPFL and Imperial College have created fiber-based soft robots with advanced motion control that integrate other functionalities, such as electric and ...

Robotics

Autonomous crawling soft 'ringbots' can navigate narrow gaps

Researchers at North Carolina State University have created a ring-shaped soft robot capable of crawling across surfaces when exposed to elevated temperatures or infrared light. The researchers have demonstrated that these ...

Engineering

Artificial soft surface autonomously mimics shapes of nature

Engineers at Duke University have developed a scalable soft surface that can continuously reshape itself to mimic objects in nature. Relying on electromagnetic actuation, mechanical modeling and machine learning to form new ...

Hardware

Hydrogels pave the way for the future of soft robotics

Researchers in Carnegie Mellon University's College of Engineering have created an open-source, commercially available fiber extruder to benefit future research with hydrogels and soft robotics.

Robotics

A soft, fatigue-free and self-healing artificial ionic skin

In recent years, roboticists and material scientists worldwide have been trying to create artificial systems that resemble human body parts and reproduce their functions. These include artificial skins, protective layers ...

Engineering

Scaling up the production of liquid metal circuits

Carnegie Mellon mechanical engineering researchers have developed a new scalable and reproducible manufacturing technique that could accelerate the mainstream adoption and commercialization of soft and stretchable electronics.

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