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首页> 外文期刊>IEEE Transactions on Dielectrics and Electrical Insulation >High frequency properties of high voltage barium titanate-ferrite multiferroic metamaterial composites
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High frequency properties of high voltage barium titanate-ferrite multiferroic metamaterial composites

机译:高压钛酸钡-铁氧体多铁超材料复合材料的高频性能

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摘要

Permittivity and permeability parameters of dielectric composites made of ferrite particles coated in a barium titanate (BaTiO3) layer were analyzed and compared against composites of ferrite powders without a dielectric layer. A hydrothermal synthesis process combined barium hydroxide (Ba(OH)2) and titanium dioxide (TiO2) to form the coating of barium titanate around a ferrite core. These barium titanate ferrite composites particles are then combined with a unique binder to form a metamaterial. Discs of the metamaterial are characterized with an Agilent coaxial airline and dielectric measurement software to determine the permittivity and permeability responses within a frequency range of 200 MHz to 4 GHz. By comparing these results to previous work on ferrite composites, the merit of insulating the magnetic particles with a dielectric layer is examined.
机译:分析了由钛酸钡(BaTiO3)涂层的铁氧体颗粒制成的介电复合材料的介电常数和磁导率参数,并将其与没有介电层的铁氧体粉末复合材料进行了比较。水热合成工艺将氢氧化钡(Ba(OH)2)和二氧化钛(TiO2)结合在一起,在铁氧体磁心周围形成钛酸钡涂层。然后将这些钛酸钡铁氧体复合物颗粒与独特的粘合剂结合,形成超材料。超材料圆盘通过安捷伦同轴航空和介电测量软件进行表征,以确定200 MHz至4 GHz频率范围内的介电常数和磁导率响应。通过将这些结果与先前在铁氧体复合材料上的工作进行比较,研究了将磁性颗粒与介电层绝缘的优点。

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