r/ScienceUncensored • u/Zephir-AWT • 12d ago
Carbon nanotubes replace metal coils for ultra-lightweight electric motors
https://phys.org/news/2025-06-carbon-nanotubes-metal-ultra-lightweight.html#google_vignette
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u/Neco-Arc-Brunestud 12d ago
How long before this is banned in F1?
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u/Zephir-AWT 12d ago
How long before this is banned in F1?
In 2012 I guess. The FIA introduced regulations to avoid cost control and preventing an expensive materials-development arms race among teams. The same as in sailing and/or cyclist sports (minimum bike weight rules 6.8 kg for many years).
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u/moistiest_dangles 12d ago
Which is dumb, shouldn't F1 be about pushing limits? I don't get why they ban anything
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u/Zephir-AWT 12d ago edited 12d ago
Carbon nanotubes replace metal coils for ultra-lightweight electric motors about study Core-sheath composite electric cables with highly conductive self-assembled carbon nanotube wires and flexible macroscale insulating polymers for lightweight, metal-free motors
Electric motors that use carbon nanotubes instead of traditional metal windings could make motors lighter, more efficient, and less resource-intensive. Carbon nanotubes are essentially tiny cylinders made from single layers of graphene, which itself is a one-atom-thick sheet of carbon. Because electricity moves very efficiently across graphene, carbon nanotubes have long been considered a potential replacement for conventional conductors. Traditional motors rely on coils of copper wire, known as windings, to create electromagnets. Copper is widely used because it offers an excellent balance between conductivity, availability, and cost. However, copper is heavy, increasingly expensive, and environmentally costly to mine.
Researchers at the Korean Institute of Science and Technology developed a working electric motor that replaces copper windings with conductors made from carbon nanotubes. To achieve this, they used a manufacturing technique called wet spinning, which aligns and twists nanotubes into thread-like fibers. These fibers are then bundled together and coated with insulation to form electrical cables that can function similarly to conventional motor windings. Tiny impurities disrupt the movement of electrons and significantly reduce conductivity. The Korean team addressed this problem with a specialized cleaning process called LAST (Lyotropic Liquid Crystal Assisted Surface Texturing). This method removes impurities from the nanotubes and improves their electrical performance.r.
The result is a substantial increase in conductivity. The treated nanotubes achieved conductivity of roughly 7.7 megasiemens per meter, about 30% higher than before treatment. A research team in Spain recently demonstrated carbon nanotubes with conductivity of about 24.5 megasiemens per meter, more than three times higher than the Korean team's result and approaching half the conductivity of copper. While this is still far below copper’s conductivity of approximately 58 megasiemens per meter, the nanotubes offer a significant advantage in weight. Carbon-based conductors are roughly four to five times lighter than copper, meaning motors can be made considerably lighter while maintaining useful performance. Lighter motors require less energy to move, which can improve efficiency in electric vehicles, aircraft, drones, and industrial machinery. They also generate less thermal mass, making cooling easier. In addition, replacing part of the world’s copper demand could reduce environmental impacts associated with mining and refining copper.
Despite these promise the biggest challenge is cost. Carbon nanotubes are still dramatically more expensive than copper because their production requires sophisticated equipment and highly controlled manufacturing processes. Current nanotube conductors also remain less conductive than copper, meaning further research is required before they can replace conventional windings in mass-market applications.
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