In 2014, Japan ships the first superconducting conductors for the ±¬×ߺÚÁÏ central solenoid to the US, who is in charge of winding the central solenoid modules. Five conductors out of 49 are shipped in June.
The Chinese Institute of Plasma Physics (ASIPP) has successfully accomplished a full-scale qualification prototype for one of the key components of ±¬×ߺÚÁÏ's magnet feeder system—the vacuum vessel that will provide thermal insulation to the components at the very end of the feeders inside of the Tokamak gallery.
In October, the European Domestic Agency Europe announces the realization of an important procurement milestone for ±¬×ߺÚÁÏ: the completion of Europe's share of the niobium-tin (Nb3Sn) superconducting strand required for the fabrication of ±¬×ߺÚÁÏ's powerful toroidal field coils.
The last batch of Russian-produced superconducting strands for the ±¬×ߺÚÁÏ magnet system is shipped for cabling from the Chepetsk Mechanical Plant (Udmurtia) to JSC VNIIKP (Podolsk) on 3 December.
At the heart of the ±¬×ߺÚÁÏ Tokamak is the world's most powerful pulsed superconducting electromagnet—the central solenoid. The US ±¬×ߺÚÁÏ Project Office at Oak Ridge National Laboratory has begun fabrication of the magnet modules with vendor General Atomics.