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Effective combination of magnetic and conductive layers of magnetically shielded room [for biomagnetic measurements]

机译:磁屏蔽室的磁层和导电层的有效结合[用于生物磁测量]

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摘要

This paper describes the optimal design of magnetically shielded room used for measurements of extremely weak magnetic fields such as biomagnetic measurements, in which the higher shielding factor is required in the frequency range from 0.01 Hz to several ten Hz at a low cost. The 3D magnetic field analysis is carried out by using the finite element method taking account of eddy currents to estimate an effective combination of magnetic and conductive layers for the design of wall and door. It is confirmed that as regards the wall design, an Al layer itself can increase the shielding effect by a sandwiched PC-Al-PC (PC: permalloy, Al: aluminum) combination even at frequencies at which only Al layer has no shielding effect. When the wall is composed of four layers [PC(inner)-PC(middle)-Al-PC(outer)], the door composed by the Al and outer PC layers is supposed to be optimal from the standpoints of shielding effect and cost. Its shielding fatter is comparable to that of the door composed of Al, inner and middle PCs.
机译:本文介绍了用于极弱磁场测量(例如生物磁测量)的磁屏蔽室的最佳设计,其中在0.01 Hz至几十Hz的频率范围内以低成本要求更高的屏蔽系数。 3D磁场分析是通过使用有限元方法进行的,其中考虑了涡流,以估算用于墙和门设计的磁性和导电层的有效组合。已经证实,关于壁的设计,即使在仅铝层没有屏蔽效果的频率下,铝层本身也可以通过夹心的PC-Al-PC(PC:坡莫合金,Al:铝)组合来提高屏蔽效果。当墙由四层[PC(内)-PC(中)-Al-PC(外)]组成时,从屏蔽效果和成本的角度来看,由铝和外PC层组成的门被认为是最佳的。它的屏蔽油脂可与由Al,内部和中间PC组成的门的油脂相比。

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