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Enhanced microwave absorption of flake-oriented Sendust sheets by tape-casting

机译:通过流延增强片状Sendust片的微波吸收

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Electromagnetic absorbers, consisting of the magnetic particles suspended in a nonmagnetic matrix, have been widely used in the telecommunication industry to suppress electromagnetic interference (EMI). The magnetic material absorbers are required to have high permeability in the vicinity of resonance frequency due to the increasing working frequency of next generation telecommunication devices. Among a variety of potential magnetic absorbers, metallic magnetic particles have been widely studied due to their large saturation magnetization, high permeability and high Snoek's limit. Of particular interest is the shape anisotropy of magnetic particles that may give rise to higher products of permeability and resonance frequency, beyond that of the Snoek's limit. However, because of the brittleness of flaky particles, it is difficult to retain flaky particles completely aligned along the plane of the sample by using rolling process. In this work, we aim to prepare oriented Sendust flakes in sheet form by tape-casting. The oriented Sendust sheets have potential to demonstrate superior microwave absorption performance at high frequencies (1~4GHz).
机译:由悬浮在非磁性基体中的磁性颗粒组成的电磁吸收器已在电信行业中广泛用于抑制电磁干扰(EMI)。由于下一代电信设备的工作频率增加,要求磁性材料吸收体在谐振频率附近具有高磁导率。在各种潜在的磁吸收器中,金属磁性颗粒由于其大的饱和磁化强度,高磁导率和较高的Snoek极限而被广泛研究。特别令人感兴趣的是磁性颗粒的形状各向异性,它可能会导致磁导率和共振频率的更高乘积,超过Snoek极限。但是,由于鳞片状粒子的脆性,因此难以通过滚压法将鳞片状粒子沿样品的平面完全取向地保持。在这项工作中,我们的目标是通过流延制备片状定向的仙斯特片。定向的Sendust片材具有在高频(1〜4GHz)上展现出卓越的微波吸收性能的潜力。

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