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Influence of iron substitution by selected rare-earth ions on the properties of NiZn ferrite fillers and PVC magneto-polymer composites

机译:选定稀土离子对Nizn铁氧体填料和PVC磁 - 聚合物复合材料性能的影响

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摘要

Nickel-zinc ferrites are very important soft magnetic materials from the point of view of diverse technical applications (such as, e.g., various electronic devices and components) for their high magnetic permeability and permittivity, low core loss, high resistivity, high Curie temperature as well as mechanical strength and chemical stability. Due to their good absorbing properties, they can be used as microwave absorbing and shielding materials with the aim of decreasing the environmental pollution caused by non-ionizing microwave radiation. The ferrite material incorporated into the polymer matrix creates qualitatively new magneto-polymer composite material taking benefits from both components. The properties typical for polymers (elasticity, mouldability, etc.) are combined with good high-frequency magnetic parameters, thus allowing to utilize these materials, e.g., in high-frequency applications where especially flexibility of composite materials plays a key role. Small amounts of selected rare-earth (RE) ions, in particular Y3+, La3+, Eu3+ and Gd3+ have been embedded into the nickel-zinc ferrite that has been used as the magnetic filler in magnetic polymer composites with polyvinylchloride (PVC) acting as the polymeric matrix. The effect of various types of rare-earth ions on the structural as well as quasi-static and dynamic (electro)magnetic properties of the ferrite fillers as well as ferrite/PVC composites, in particular the frequency dispersion of the complex permeability, has been studied.
机译:镍锌铁氧体是从视图的不同技术应用(诸如,例如,各种电子设备和部件),用于它们的高磁导率和介电常数,低铁损,高电阻率,高的居里温度为点非常重要的软磁材料以及机械强度和化学稳定性。由于其良好的吸收性能,它们可被用作微波吸收和随由非电离微波辐射对环境的污染的目的屏蔽材料。结合到聚合物基体中的铁素体材料创建从两种组分质的新磁 - 聚合物复合材料承担的好处。典型的聚合物(弹性,可模塑性等)的性质相结合,与良好的高频磁性的参数,从而允许利用这些材料,例如,在复合材料的特别灵活性起着关键作用的高频率的应用。少量选定的稀土类(RE)的离子,特别是Y3 +,镧,铕和钆已嵌入到镍 - 锌铁氧体已经用作磁性聚合物复合材料与聚氯乙烯(PVC)的磁性填料的充当聚合物基质。各种类型的稀土离子的对结构以及准静态和动态(电)铁氧体填料的磁特性以及铁素体/ PVC复合材料,特别是复磁导率的频率分散,得到了效果研究。

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