Advances in linear motors and hybrid actuators are pushing motion systems toward higher precision, speed and efficiency. A ...
Precision, scalability and speed are key factors in medical and lab automation that are pushing actuator design forward and ...
Tech Xplore on MSN
Paper-thin magnetic muscles bring origami robots to life for medical use
A new 3D printing technique can create paper-thin "magnetic muscles," which can be applied to origami structures to make them ...
Chinese scientists have developed a 'ghostlike' jellyfish robot for discreet underwater monitoring, mimicking real marine life.
News Medical on MSN
Soft magnetic muscles power innovative origami robots for biomedical use
A new 3-D printing technique can create paper-thin "magnetic muscles," which can be applied to origami structures to make them move.
US and Chinese trade negotiators say they’ve reached a framework agreement that, if approved by both governments this week, ...
Researchers from Tomsk Polytechnic University, together with their colleagues from Czech universities, have proposed a new ...
SMAC’s new LPL80 line of electric linear moving coil actuators were designed for filling machines and come in the standard 80mm size. The actuators use a dc linear servo... The LPL 30 actuators from ...
Paul McCabe] wrote in to let us know about his $25 robot. This small wheeled robot is based on an ESP32 and made using ...
How linear, rotary, reciprocating and oscillating motion are evolving as customization grows and new capabilities emerge.
Interesting Engineering on MSN
Magnetic ‘muscles’ turn origami into crawling robots that move and heal from within
NC State engineers 3D-print paper-thin magnetic muscles that turn origami robots into moving drug-delivery machines.
Boeing's structural fatigue testing process involves using massive rigs and hydraulic actuators to simulate thousands of ...
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