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Shield Duct to Prevent Magnetic Field Leakage Through Openings in Double-Layered Magnetically Shielded Rooms

机译:屏蔽层可防止双层屏蔽室中的开口处的磁场泄漏

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摘要

This paper describes an optimal length and combination of short shield ducts to prevent the leakage of magnetic flux through the openings of a double-layered magnetically shielded room (MSR) used for electron-beam lithography systems and biomagnetic measurements. A number of openings as large as 500 $times$ 500 mm must be provided in the walls, ceiling, and floor of such MSRs for air conditioning and cables. First, the magnetic field leakage from the openings, using a small model of an MSR, was measured with short shield ducts of various lengths in order to confirm the validity of the analysis and practical realization. Next, the distributions of the magnetic fields inside the small model were evaluated using 3-D magnetic field analysis and the finite element method. The method of analysis was verified by comparing computed results with those measured. We show the optimal length of shield duct attached around the openings as follows: The optimal combination of short shield ducts is an outer layer duct which is the same length as the width of the opening with an inner layer duct which is half the length of the opening. These lengths of duct accord with the optimal lengths when the outer and inner layer ducts are employed as a single duct. The leakage flux of the optimal single duct through the opening can be decreased to a half by the optimal combination of shield ducts. This also corresponds to the fact that the length of the inner layer duct should not protrude from the outer layer in order to avoid collecting surplus fluxes outside the magnetically shielded room.
机译:本文介绍了最佳长度和短屏蔽导管的组合,以防止磁通量通过用于电子束光刻系统和生物磁测量的双层磁屏蔽室(MSR)的开口泄漏。在此类MSR的墙壁,天花板和地板上必须提供多达500 x 500毫米的开口,用于空调和电缆。首先,使用MSR的小模型,使用各种长度的短屏蔽导管测量从开口泄漏的磁场,以确认分析的有效性和实际实现。接下来,使用3-D磁场分析和有限元方法评估小模型内部的磁场分布。通过将计算结果与测量结果进行比较,验证了分析方法的有效性。我们显示了围绕开口连接的屏蔽导管的最佳长度,如下所示:短屏蔽导管的最佳组合是外层导管,其长度与开口的宽度相同,而内层导管的长度为开口长度的一半。开幕。当将外层和内层管道用作单个管道时,这些管道长度与最佳长度一致。最佳的单个管道通过开口的泄漏通量可以通过屏蔽管道的最佳组合减少到一半。这也对应于以下事实:内层管道的长度不应从外层突出,以避免将多余的通量收集在磁屏蔽室内。

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