TECH SPACE
An elastic fiber filled with electrodes set to revolutionize smart clothes
by Staff Writers
Lausanne, Switzerland (SPX) May 29, 2018

The fibers can withstand deformation of close to 500 percent before recovering their initial shape.

It's a whole new way of thinking about sensors. The tiny fibers developed at EPFL are made of elastomer and can incorporate materials like electrodes and nanocomposite polymers. The fibers can detect even the slightest pressure and strain and can withstand deformation of close to 500% before recovering their initial shape. All that makes them perfect for applications in smart clothing and prostheses, and for creating artificial nerves for robots.

The fibers were developed at EPFL's Laboratory of Photonic Materials and Fiber Devices (FIMAP), headed by Fabien Sorin at the School of Engineering. The scientists came up with a fast and easy method for embedding different kinds of microstructures in super-elastic fibers.

For instance, by adding electrodes at strategic locations, they turned the fibers into ultra-sensitive sensors. What's more, their method can be used to produce hundreds of meters of fiber in a short amount of time. Their research has just been published in Advanced Materials.

Heat, then stretch
To make their fibers, the scientists used a thermal drawing process, which is the standard process for optical-fiber manufacturing. They started by creating a macroscopic preform with the various fiber components arranged in a carefully designed 3D pattern.

They then heated the preform and stretched it out, like melted plastic, to make fibers of a few hundreds microns in diameter. And while this process stretched out the pattern of components lengthwise, it also contracted it crosswise, meaning the components' relative positions stayed the same. The end result was a set of fibers with an extremely complicated microarchitecture and advanced properties.

Until now, thermal drawing could be used to make only rigid fibers. But Sorin and his team used it to make elastic fibers. With the help of a new criterion for selecting materials, they were able to identify some thermoplastic elastomers that have a high viscosity when heated. After the fibers are drawn, they can be stretched and deformed but they always return to their original shape.

Rigid materials like nanocomposite polymers, metals and thermoplastics can be introduced into the fibers, as well as liquid metals that can be easily deformed. "For instance, we can add three strings of electrodes at the top of the fibers and one at the bottom. Different electrodes will come into contact depending on how the pressure is applied to the fibers. This will cause the electrodes to transmit a signal, which can then be read to determine exactly what type of stress the fiber is exposed to - such as compression or shear stress, for example," says Sorin.

Artificial nerves for robots
Working in association with Professor Dr. Oliver Brock (Robotics and Biology Laboratory, Technical University of Berlin), the scientists integrated their fibers into robotic fingers as artificial nerves. Whenever the fingers touch something, electrodes in the fibers transmit information about the robot's tactile interaction with its environment.

"The research team also tested adding their fibers to large-mesh clothing to detect compression and stretching. "Our technology could be used to develop a touch keyboard that's integrated directly into clothing, for instance" says Sorin.

The researchers see many other potential applications. Especially since the thermal drawing process can be easily tweaked for large-scale production. This is a real plus for the manufacturing sector. The textile sector has already expressed interest in the new technology, and patents have been filed.

"Super-elastic Multi-material Electronic and Photonic Fibers and Devices via Thermal Drawing,"
Related Links
Ecole Polytechnique Federale de Lausanne
Space Technology News - Applications and Research

TECH SPACE
Advanced materials: processing glass like a polymer
Karlsruhe, Germany (SPX) May 24, 2018
Pure quartz glass is highly transparent and resistant to thermal, physical, and chemical impacts. These are optimum prerequisites for use in optics, data technology or medical engineering. For efficient, high-quality machining, however, adequate processes are lacking. Scientists of Karlsruhe Institute of Technology (KIT) have developed a forming technology to structure quartz glass like a polymer. This innovation is reported in the journal Advanced Materials. "It has always been a big challenge to ... read more

Comment using your Disqus, Facebook, Google or Twitter login.

Share this article via these popular social media networks
del.icio.usdel.icio.us DiggDigg RedditReddit GoogleGoogle

TECH SPACE
Saudi Arabia says new Yemen missile intercepted

Raytheon contracted for ballistic radar systems for Romania

Saudi Arabia says new Yemen missile intercepted

Lockheed to provide ballistic tracking radar to U.S., foreign countries

TECH SPACE
EU, NATO urge Russia to 'accept responsibility' for MH17

Missile that downed MH17 plane came from Russian military: investigators

US blacklists Iranians for allegedly providing missile tech to Yemen's Huthis

Missile that downed MH17 plane came from Russian military: investigators

TECH SPACE
Lockheed Martin Stalker XE Upgraded with New VTOL Launch and Landing Capability

Autonomous glider can fly like an albatross, cruise like a sailboat

General Atomics to retrofit MQ-9 Reaper drones

MIT researchers develop virtual-reality testing ground for drones

TECH SPACE
Lockheed Martin's 5th AEHF comsat completes launch environment test

IAP Worldwide Services tapped for satellite systems

Hughes to prototype Multi-Modem Adaptor for Wideband SATCOM use

Navy awards contract to ViaSat for aircraft communication systems

TECH SPACE
BAE Systems tapped for HERCULES recovery vehicles

Marine Corps contracts for enhanced combat helmets

General Dynamics to provide display optoelectronics for U.S. Army

ContiTech to provide Saudi Arabia, Kuwait with Abrams tank parts

TECH SPACE
BAE welcomes Australian economic plan for defense industry

US to update Saudi artillery for $1.31 billion

74% of French people against weapons sales to Saudi: poll

Mattis wins big with budget victory

TECH SPACE
French, British air chiefs say Western dominance slipping

NATO, Russia to hold first talks since Skripal attack

NATO to focus on deterrence, 'managing' Russia ties at summit

Colombia to become first Latin American NATO 'global partner'

TECH SPACE
NIST puts the optical microscope under the microscope to achieve atomic accuracy

Valves for tiny particles

Atomic-scale manufacturing now a reality

Porous materials make it possible to have nanotechnology under control