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A research team from Switzerland’s École Polytechnique Fédérale de Lausanne (EPFL) Microbiorobotic Systems Laboratory (MICROBS) has developed a “sound-powered engine” that uses the resonant frequency of a specially shaped 3D-printed cavity to “energize” the air inside it and use it for thrust. The researchers then 3D-printed two small drones that were propelled by sound.
Sound waves at specific frequencies made the air molecules in these objects oscillate much more strongly and are then pushed out a specially designed nozzle as a concentrated jet.
“Instead of pushing devices around with sound waves, we have created acoustic resonators that are tuned to harness sound at specific frequencies to generate directional thrust and controlled motion,” MICROBS head Selman Sakar told the publication. “Our work shows the feasibility of transforming a simple, cleverly designed mechanical piece into robot matter.”
The team has created three practical applications of the “engine.” One is a boat that used three resonators — one placed at the rear of the boat and tuned to 540 Hz for propulsion and two on either side for navigation — while the other two are microfliers or tiny flying machines powered by ultrasonic frequencies.
The first microflier has three cavities, all facing downward, allowing it to lift off the ground like a rocket. The second flier has three blades connected at a central point, like the rotor of a helicopter, with the base of each blade equipped with a resonator pointing backward. When the resonators are hit with the exact frequency that drive them, they deliver thrust that allowed the rotate at over 12,000 rpm and cause the entire thing to hover. Note that ultrasonic frequencies are inaudible to humans, meaning these devices can hover practically noiselessly.
Wireless OTA charging with lasers could keep drones airborne indefinitely
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Reference reading
- https://www.tomshardware.com/3d-printing/SPONSORED_LINK_URL
- https://www.tomshardware.com/3d-printing/3d-printed-sound-powered-jet-engines-propel-micro-drones-fliers-are-completely-silent-researchers-use-ultrasonic-frequencies-to-drive-12-000-rpm-silent-hovering-fliers#main
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