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Effective permittivity and permeability of coated metal powders at microwave frequency

机译:涂层金属粉末在微波频率下的有效介电常数和磁导率

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Recent developments of the microwave heating of compacted metal powders bring a demand on calculation of corresponding effective optical parameters. Since the existing models cannot be applied to such powders, in this paper new effective dielectric permittivity and magnetic permeability are introduced by means of the combination of Mie theory and Bruggeman's effective medium. It is demonstrated that both an insulating shell and the skin effect should be taken into account. The shell drastically modifies the effective permittivity, while ignoring the skin effect brings to the permittivity an error as large as 30% at 30 GHz for copper powder with grains of 50 mu m radius. The induced currents are shown to affect the magnetic properties of the powders. The strong skin effect substantially reduces the permeability of magnetic grains, and thus the intrinsic permeability measured in experiments can be much less than the real one. The strong dependence of the effective parameters on the microstructure of powders suggests a variety of possible heating scenarios in experiments.
机译:压实金属粉末的微波加热的最新发展对计算相应的有效光学参数提出了要求。由于现有模型无法应用于此类粉末,因此本文结合Mie理论和Bruggeman有效介质引入了新的有效介电常数和磁导率。已经证明,应同时考虑绝缘外壳和集肤效应。壳层极大地改变了有效介电常数,而忽略了趋肤效应给半径为50微米的铜粉在30 GHz时介电常数带来的误差高达30%。显示感应电流会影响粉末的磁性能。强烈的集肤效应大大降低了磁性颗粒的磁导率,因此在实验中测得的固有磁导率可能远低于真实磁导率。有效参数对粉末微结构的强烈依赖性表明实验中可能存在多种加热情况。

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