Pourquoi c'est important pour les matériaux
A turbine is mostly steel and concrete by weight, but the parts that make it competitive — the permanent-magnet generator and the copper in the nacelle and the export cable — are where the critical materials sit.
De quoi c'est composé
Tous les matériaux →| Matériau | Ce qu'il fait ici | Importance |
|---|---|---|
| Copper critique | Generator windings, nacelle wiring and export cable | Définition de |
| Dysprosium critique | Heat resistance in those magnets | Définition de |
| Iron & Steel | Tower, nacelle frame and foundation | Définition de |
| Neodymium critique | Direct-drive permanent-magnet generators | Définition de |
| Boron critique | The B in NdFeB magnet alloy | Important |
| Praseodymium critique | Magnet alloy | Important |
| Terbium critique | Heat resistance in the hottest designs | Important |
| Zinc critique | Galvanised protection in a marine environment | Important |
| Aluminium critique | Nacelle components and cabling | Présent |

Copper
The reddish metal that carries electricity better than anything except silver, and which humans have been smelting…

Dysprosium
A heavy rare earth added in small amounts to magnets so they keep working when they get hot.

Iron & Steel
Iron with a little carbon in it, and the most-produced manufactured material on the planet.

Neodymium
The rare earth at the heart of the strongest magnet ever made — the kind in headphones, hard drives, wind turbines…

Boron
An element that makes glass resist thermal shock, fibreglass strong, and — with iron and neodymium — the strongest…

Praseodymium
Neodymium's near-twin, so alike that magnet makers usually do not bother separating the two and sell them together as…
