High-temperature superconducting current lead with section capable of being pulled out and using externally supplied liquid nitrogen to cool
A current lead, high temperature superconducting technology, used in the field of power feeding and cooling
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Embodiment approach 1
[0035] Implementation mode one: if figure 1 , 5 As shown in and 6, the present invention adopts liquid nitrogen to cool the high-temperature superconducting current lead wire of the extractable section, which includes a high-temperature superconducting section and a normal conducting section whose ends are connected by the main joint 1 of the superconducting section, and the above-mentioned high-temperature superconducting section There is a backup joint 2 at the lower end, and the above-mentioned high-temperature superconducting current lead also includes a backup current lead, which can pass through the high-temperature superconducting section and connect with the backup joint 2 in case the high-temperature superconducting stack is damaged;
[0036] When the lower end of the above-mentioned normal conduction section is connected with the upper end of the high-temperature superconducting section, liquid nitrogen is passed into the constant conduction section, and the above-me...
Embodiment approach 2
[0048] Implementation mode two: if Figure 9 and 10 As shown, when the above-mentioned backup current lead is inserted into the high-temperature superconducting section and clamped on the backup joint 2, helium gas or liquid helium is introduced into the lower end of the backup current lead, and a power connector 4 is provided at the upper end of the backup current lead. A cooling channel 6 is provided in the backup current lead, and a helium gas collector 7 communicating with the cooling channel 6 is arranged on the upper part of the backup current lead, and the helium gas passing through the cooling channel 6 is discharged from the helium gas collector 7 .
[0049] In case of quench damage to the high temperature superconducting section, the normal conducting section is pulled out, and the backup current lead is passed through the main joint 1 of the superconducting section and snapped onto the backup joint 2 to ensure that the superconducting magnet can still be excited.
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