#hydrospread
HydroSpread, a breakthrough fabrication method, lets scientists build ultrathin soft robots directly on water... Read more
April 22, 2026 at 9:00 AM
HydroSpread, a breakthrough fabrication method, lets scientists build ultrathin soft robots directly on water... Read more
May 23, 2026 at 9:00 AM
HydroSpread, a breakthrough fabrication method, lets scientists build ultrathin soft robots directly on water... Read more
January 25, 2026 at 11:30 PM
HydroSpread, a breakthrough fabrication method, lets scientists build ultrathin soft robots directly on water... Read more
December 14, 2025 at 3:00 PM
HydroSpread, a breakthrough fabrication method, lets scientists build ultrathin soft robots directly on water... Read more
April 13, 2026 at 6:30 AM
HydroSpread, a breakthrough fabrication method, lets scientists build ultrathin soft robots directly on water... Read more
April 12, 2026 at 3:00 PM
HydroSpread, a breakthrough fabrication method, lets scientists build ultrathin soft robots directly on water... Read more
November 5, 2025 at 9:00 AM
HydroSpread, a breakthrough fabrication method, lets scientists build ultrathin soft robots directly on water... Read more
October 25, 2025 at 9:00 PM
At the #UniversityofVirginia professor #Xu unveils #HydroSpread, a fabrication method that creates soft, #buoyant machines directly on water, a breakthrough with applications in medical care, consumer electronics, environmental monitoring, & more.
scitechdaily.com/engineers-cr...
Engineers Create Soft Robots That Can Literally Walk on Water
Scientists have developed HydroSpread, a novel technique for building soft robots on water, with wide-ranging possibilities in robotics, healthcare, and environmental monitoring. Picture a miniature r...
scitechdaily.com
September 30, 2025 at 11:26 AM
Engineers Create Soft Robots That Can Literally Walk on Water Scientists have developed HydroSpread, a novel technique for building soft robots on water, with wide-ranging possibilities in robotics...

#Technology #Engineering #Robotics #University #of #Virginia

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Engineers Create Soft Robots That Can Literally Walk on Water
Scientists have developed HydroSpread, a novel technique for building soft robots on water, with wide-ranging possibilities in robotics, healthcare, and environmental monitoring. Picture a miniature robot, no larger than a leaf, gliding effortlessly across the surface of a pond, much like a water
scitechdaily.com
September 28, 2025 at 4:30 AM
In a breakthrough that could revolutionize the field of soft robotics, researchers at the University of Virginia's School of Engineering and Applied Science have developed a novel method for fabricating tiny, floating devices directly on water.
Revolutionary Technique Allows For Fabrication Of Tiny Floating...
These little robots literally walk on water HydroSpread, a breakthrough fabrication method, le
www.sciencedaily.com
October 7, 2025 at 3:43 AM
These little robots literally walk on water. Via @sciencedaily_official #Robotics 🤖
These little robots literally walk on water
HydroSpread, a breakthrough fabrication method, lets scientists build ultrathin soft robots directly on water. These tiny, insect-inspired machines could transform robotics, healthcare, and…
www.sciencedaily.com
October 6, 2025 at 2:30 PM
Idee voor SF-verhalen? Wetenschappers maakten een robot die op water kan lopen. www.sciencedaily.com/releases/202...
These little robots literally walk on water
HydroSpread, a breakthrough fabrication method, lets scientists build ultrathin soft robots directly on water. These tiny, insect-inspired machines could transform robotics, healthcare, and environmen...
www.sciencedaily.com
October 15, 2025 at 11:19 AM
Just read about HydroSpread—a wild new way to build ultrathin soft robots on water! 😲 Imagine these tiny, bug-like machines changing the game for healthcare and environmental monitoring. Innovation never ceases to amaze!
October 4, 2025 at 5:49 PM
UVa researchers presented HydroSpread, fabricating leaf‑sized soft robots on water, including the paddle‑type HydroFlexor and walking HydroBuckler. Read more: https://getnews.me/soft-robots-that-walk-on-water-new-hydrospread-fabrication-method/ #hydrospread #softrobots
September 28, 2025 at 5:14 PM
Engineers built soft robots directly on water surfaces using a laser to carve polymer films. No more tearing delicate materials off glass. The tiny machines walk across ponds like water striders, powered by heat that makes their legs buckle and push forward.
Engineers Create Soft Robots That Can Literally Walk on Water
Scientists have developed HydroSpread, a novel technique for building soft robots on water, with wide-ranging possibilities in robotics, healthcare, and environmental monitoring. Picture a miniature robot, no larger than a leaf, gliding effortlessly across the surface of a pond, much like a water
f.mtr.cool
October 13, 2025 at 10:28 AM
Feed: "Latest Science News -- ScienceDaily"
Published on Saturday, October 4, 2025
These little robots literally walk on water
HydroSpread, a breakthrough fabrication method, lets scientists build ultrathin soft robots directly on water. These tiny, insect-inspired machines could transform robotics, healthcare, and environmental monitoring.
www.sciencedaily.com
October 5, 2025 at 2:52 PM
Feed: "The Brighter Side of News"
By: Joseph Shavit on Saturday, September 27, 2025
UVA engineers develop a way for robots to walk on water
UVA engineers create HydroSpread, a method to build soft robots directly on water, opening new paths for sensors, wearables, and rescue tools
www.thebrighterside.news
September 27, 2025 at 4:54 PM
🤖🌊 Engineers at the University of Virginia developed a technology that creates ultra-thin robots directly on water surfaces, eliminating the fragile transfer process that previously damaged soft robotics. #science #tech

👉 scitechdaily.com/engineers-c...
Engineers Create Soft Robots That Can Literally Walk on Water
Scientists have developed HydroSpread, a novel technique for building soft robots on water, with wide-ranging possibilities in robotics, healthcare, and environmental monitoring. Picture a miniature robot, no larger than a leaf, gliding effortlessly across the surface of a pond, much like a water
scitechdaily.com
September 30, 2025 at 10:30 AM