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Microwave absorption properties of carbon nanotubes dispersed in alumina ceramic

机译:分散在氧化铝陶瓷中的碳纳米管的微波吸收特性

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Ceramic nanocomposites of alumina and carbon nanotubes (CNTs) are experimentally studied for use as microwave absorbers in particle accelerators. The weight percentage of multi-walled CNTs in SPS sintered nanocomposite samples is varied from 0.5 to 10% and the complex permittivity is measured. The RF absorption is strong and relatively flat in the frequency band 1-40 GHz for a CNT weight percentage in the range 1-2.5%, which is just above the percolation threshold. The permittivity is observed to increase dramatically with increasing CNT weight percentage above the percolation threshold as observed elsewhere, and in accordance with theoretical treatments. The electromagnetic properties of the nanocomposites are little changed in going from 294 K to 77 K. The DC conductivity of the alumina-CNT nanocomposite is also sufficient to drain static charge in particle accelerator beamline environments, even at cryogenic temperatures. Fabrication of the nanocomposites using an industrial RF sintering process compatible with large sizes shows that the microwave absorption properties of small samples are similar to those of the SPS sintered samples.
机译:实验研究了氧化铝和碳纳米管(CNT)的陶瓷纳米复合材料,用作粒子加速器中的微波吸收剂。 SPS烧结纳米复合材料样品中多壁CNT的重量百分比在0.5%至10%之间变化,并测量了复介电常数。对于1-2.5%范围内的CNT重量百分比(刚好高于渗透阈值),RF吸收很强,并且在1-40 GHz频带中相对平坦。如在其他地方所观察到的,并且根据理论处理,观察到介电常数随着CNT重量百分比增加而超过渗滤阈值而急剧增加。纳米复合材料的电磁特性从294 K变为77 K几乎没有变化。氧化铝-CNT纳米复合材料的直流电导率也足以排出粒子加速器束线环境中的静电荷,即使在低温下也是如此。使用与大尺寸相容的工业RF烧结工艺制备纳米复合材料表明,小样品的微波吸收特性与SPS烧结样品的相似。

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