1Inter University Accelerator Centre, New Delhi
*Email: santoshsahu649@gmail.com
IUAC has recently commissioned a superconducting quadrupole doublet magnet cryostat with zero boil off technology using 2 number of GM cryocooler each having refrigeration capacity 1.5 watt @ 4.2 K. Both the magnets are designed to be operated up to 84 Ampere for the required magnetic field gradient. To reduce the heat load to the 2nd stage of the cryocooler 4 number of high temperature superconductor (HTS) leads have been used to power the magnet in the cryostat. Each HTS lead requires two thermal stations cum electrical isolator for its efficient functioning. In the first design Aluminum Nitride (AlN) was used as electrical isolator cum thermal conductor. In the recently conducted cold test of the magnet, we have observed a temperature rise in the 2nd stage joint during current charging (From 4.4 K to 6.7 K). The quantum of temperature rise is not acceptable for the stable operation. To minimize the temperature rise in the 2nd stage an experimental study was conducted to select a design having better thermal conductivity. In the new design the thermal conductivity ratio improved by four times compared to the 1st design and when implemented the base temperature reduced from 4.4 K to 3.4 K. This paper will highlight the effort made to realize a better electrical isolator cum thermal conductor at low temperature & its implementation in the existing cryostat.
LTS, HTS, Superconductor, Quadrupole, Cryostat