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热处理提高热稳定性后二氧化硅包覆羰基铁粉的静磁和电磁性能研究

A Study on the Static Magnetic and Electromagnetic Properties of Silica-Coated Carbonyl Iron Powder after Heat Treatment for Improving Thermal Stability.

作者信息

Yan Xu, Mu Xinyuan, Zhang Qinsheng, Ma Zhanwei, Song Chengli, Hu Bin

机构信息

State Key Laboratory for Oxo Synthesis and Selective Oxidation, Lanzhou Institute of Chemical Physics, Chinese Academy of Sciences, Lanzhou 730000, China.

出版信息

Materials (Basel). 2022 Mar 28;15(7):2499. doi: 10.3390/ma15072499.

Abstract

In order to study the thermal stability of coated carbonyl iron powder (CIP) and its influence on magnetic properties, carbonyl iron powder was coated with a silica layer and then annealed in an air atmosphere at elevated temperatures. Transmission electron microscopy (TEM) analysis and Fourier transform infrared spectroscopy confirmed the existence of a silicon dioxide layer with a thickness of approximately 80~100 nm. Compared with uncoated CIP, the silicon-coated CIP still maintained a higher absorption performance after annealing, and the calculated impedance matching value Z only slightly decreased. It is worth noting that when the annealing temperature reached 300 °C, coercivity () increased, and the real and imaginary parts of the permeability decreased, which means that the silicon dioxide layer began to lose its effectiveness. On the contrary, the significant decrease in microwave absorption ability and impedance matching value Z of uncoated CIP after annealing were mainly because the newly formed oxide on the interface became the active polarization center, leading to an abnormal increase in permittivity. In terms of the incremental mass ratio after annealing, 2% was a tipping point for permeability reduction.

摘要

为了研究包覆羰基铁粉(CIP)的热稳定性及其对磁性能的影响,对羰基铁粉进行二氧化硅层包覆,然后在高温空气气氛中退火。透射电子显微镜(TEM)分析和傅里叶变换红外光谱证实存在厚度约为80~100 nm的二氧化硅层。与未包覆的CIP相比,包覆硅的CIP在退火后仍保持较高的吸收性能,计算得到的阻抗匹配值Z仅略有下降。值得注意的是,当退火温度达到300℃时,矫顽力()增加,磁导率的实部和虚部下降,这意味着二氧化硅层开始失效。相反,未包覆的CIP退火后微波吸收能力和阻抗匹配值Z显著下降,主要是因为界面上新形成的氧化物成为活性极化中心,导致介电常数异常增加。就退火后的增量质量比而言,2%是磁导率降低的一个转折点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9d31/8999542/b9b8d40c28c9/materials-15-02499-g001.jpg

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