碳基材料的极低频磁屏蔽效应研究

S. Oh, Dong-Su Kang, Sang Min Lee, U. Baek, J. Roh
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引用次数: 1

摘要

为了研究碳基材料在极低频率(60 Hz)下的磁屏蔽效果,将两种类型的炭黑(Super-P和Denka black)和天然石墨(HC-198)以10 wt.%的比例混合到有机粘合剂中,制成涂层溶液,并在半径为88 mm的铝盘上涂上不同厚度的粉末涂层。研制了一种测量极低频屏蔽效应的装置。把变压器和电阻器连接起来,就形成了一个闭合电路。施加电压固定为65 V,测得磁场范围为4.95~5.10 mG。随涂层厚度的增加,磁场呈减小趋势。当平均为455 μm的样品包覆天然石墨时,磁场下降幅度最大,为38.3%。本研究证实了碳基材料可以在极低频率下实现磁屏蔽,并且可以通过改变涂层厚度来增强磁屏蔽效果。
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Study on the Magnetic Shield Effect of Carbon-based Materials at Extremely Low Frequency
To examine the magnetic shielding effect for carbon-based materials at extremely low frequencies (60 Hz), two types of carbon black (Super-P and Denka Black) and a natural graphite (HC-198) were mixed into organic binder at 10 wt.% to produce a coating solution, and a powder coating with varying thickness was applied on an aluminum disk measuring 88 mm in radius. A device was developed to measure the sheielding effect at extremely low frequencies. A closed circuit was achieved by connecting a transformer and a resistor. The applied voltage was fixed at 65 V, and the magnetic field was measured to being the range of 4.95~5.10 mG. Depending on the thickness of the coating layer, the magnetic field showed a decreasing trend. The maximum decrease in the magnetic field of 38.3% was measured when natural graphite was coated with specimens averaging 455 μm. This study confirmed that carbonbased materials enable magnetic shielding at extremely low frequencies, and that the magnetic shielding effect can be enhanced by varying the coating thickness.
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