Title :
Self-compensation of the residual field gradient in double-shell open-ended cylindrical axial magnetic shields
Author :
Paperno, E. ; Sasada, I. ; Naka, H.
Author_Institution :
Dept. of Appl. Sci. for Electron. & Mater., Kyushu Univ., Fukuoka, Japan
fDate :
9/1/1999 12:00:00 AM
Abstract :
An important and not-obvious demonstration made in this work is that replacing a closed double-shell axial cylindrical shield with a similar but open-ended shield can lead to an increasing in not only the axial shielding factor, but in the residual uniformity as well. It is shown that a self-compensation of the residual field gradient and a significant improvement of the total residual field uniformity are potentially possible by combining two open-ended cylindrical shells having different length-to-diameter ratios and providing opposite signs and appropriate magnitudes of the residual field gradients. A numerical example confirms the applicability of the method. It is shown that an ~6-fold reduction of the residual field gradient along the axial direction and an ~2-fold reduction of that along the radial direction over a relatively wide area inside a double-shell cylindrical axial shield are possible if its ends are open
Keywords :
magnetic shielding; axial shielding factor; double-shell open-ended cylindrical axial magnetic shield; length-to-diameter ratio; magnetic field uniformity; residual field gradient; self-compensation; Attenuation; Fabrication; Geometry; Helium; Magnetic materials; Magnetic shielding; Permeability;
Journal_Title :
Magnetics, IEEE Transactions on