Breaking 17:15 US-China Robot Race Intensifies as Washington Tightens Restrictions on Advanced Robotics 16:49 Bryan Johnson questions his extreme quest for longevity 15:15 Elon Musk comments on Ceuta migration surge, sparking debate over immigration policies 14:51 OpenAI cuts AI model prices as global competition intensifies 13:25 U.S. Weekly Jobless Claims Rise Slightly as Labor Market Remains Resilient 13:10 Zoox Receives Regulatory Approval to Expand Its Autonomous Robotaxi Fleet 12:46 US safety regulator investigates 1.2 million Tesla vehicles over suspension concerns 12:30 Amazon rally lifts Nasdaq futures despite Apple sell-off on supply concerns 12:15 Chevron posts strongest quarterly profit in six years as energy markets face major disruption 12:12 Pentagon Signs Landmark Contract to Expand Patriot Missile Production 11:22 U.S. Considers $100,000 Fee for International Graduates Seeking Post-Study Work 10:50 Trump Says Witkoff and Kushner Will Visit Kyiv Soon to Advance Ukraine Peace Efforts 10:32 Elon Musk Plans Major Political Spending Ahead of U.S. Midterm Elections 10:18 White House criticizes Spain’s migration policies amid Ceuta border crisis 10:16 Apple shares fall as supply constraints raise concerns over growth and iPhone demand 09:09 Meta expands AI features to Threads direct messages 08:15 Proposed Gaza disarmament plan raises hopes for a new phase of governance 08:00 AI-powered recommendations increase user engagement on Instagram 17:30 Ford prepares for possible Chinese auto competition in the United States

MIT engineers silent artificial muscle fibers for robots

Friday 10 April 2026 - 08:20
By: Dakir Madiha
MIT engineers silent artificial muscle fibers for robots

Researchers at MIT Media Lab and Italy's Politecnico di Bari developed a new class of artificial muscle fibers that operate silently without motors, external pumps or bulky hydraulic gear. The advance could reshape robot movement and portable assistive device design.

The technology, called electrofluidic fiber muscles, appeared in a Science Robotics paper this week. Led by MIT Media Lab doctoral student Ozgun Kilic Afsar and Politecnico di Bari professor Vito Cacucciolo, the work merges miniaturized McKibben actuators, soft fluidic muscles, with millimetric electrohydrodynamic (EHD) pumps. These pumps generate pressure in sealed fluid compartments without moving parts.

EHD pumps at this scale inject charges into dielectric fluid to create ions that pull liquid along. Each weighs grams and measures toothpick-thin. One pump sits between two McKibben actuators in antagonist setup, one contracting as the other relaxes to mimic human biceps and triceps action.

"We chose this setup not just for biomimicry but to store fluid within the muscle itself," Afsar said in an MIT release. Closed-loop fiber circuits eliminate external reservoirs, a key lab-to-real-world barrier for fluidic soft robots.

Fibers bundle into configurations like biological muscle tissue for compact integration into robots or exoskeletons, distributed across structures rather than joint-focused. Tests showed a woven biceps-triceps pair driving a 3D-printed robotic arm and a lever arm launching objects in 100 milliseconds.

Herbert Shea, a professor at Switzerland's EPFL not involved, called it "a major step for fiber-format soft actuators." He noted the pump's lack of moving parts makes them quiet, ideal for prosthetics and assistive garments.

Applications range from exoskeletons for heavy lifting to dexterity aids. "Wherever fluidic actuators operate or engineers want internal over external pumps, these principles suit broad fluid-driven robotic systems," Cacucciolo said. Funding came from the European Research Council and MIT Media Lab's multi-partner consortium.


  • Fajr
  • Sunrise
  • Dhuhr
  • Asr
  • Maghrib
  • Isha

Read more

This website, walaw.press, uses cookies to provide you with a good browsing experience and to continuously improve our services. By continuing to browse this site, you agree to the use of these cookies.