Wei Liqiu, Che Ruxin, Jiang Yijun, Yu Bing
College of Environmental and Chemical Engineering, Dalian Jiaotong University, Dalian 116028, China.
College of Environmental and Chemical Engineering, Dalian Jiaotong University, Dalian 116028, China.
J Environ Sci (China). 2013 Dec;25 Suppl 1:S27-31. doi: 10.1016/S1001-0742(14)60620-3.
Microwave absorbing material plays a great role in electromagnetic pollution controlling, electromagnetic interference shielding and stealth technology, etc. The core-nanoshell composite materials doped with La were prepared by a solid-state reaction method, which is applied to the electromagnetic wave absorption. The core is magnetic fly-ash hollow cenosphere, and the shell is the nanosized ferrite doped with La. The thermal decomposition process of the sample was investigated by thermogravimetry and differential thermal analysis. The morphology and components of the composite materials were investigated by the X-ray diffraction analysis, the microstructure was observed by scanning electron microscope and transmission electron microscope. The results of vibrating sample magnetometer analysis indicated that the exchange-coupling interaction happens between ferrite of magnetic fly-ash hollow cenosphere and nanosized ferrite coating, which caused outstanding magnetic properties. The microwave absorbing property of the sample was measured by reflectivity far field radar cross section of radar microwave absorbing material with vector network analyzer. The results indicated that the exchange-coupling interaction enhanced magnetic loss of composite materials. Therefore, in the frequency of 5 GHz, the reflection coefficient can achieve -24 dB. It is better than single material and is consistent with requirements of the microwave absorbing material at the low-frequency absorption.
微波吸收材料在电磁污染控制、电磁干扰屏蔽和隐身技术等方面发挥着重要作用。采用固相反应法制备了掺杂La的核壳复合材料,并将其应用于电磁波吸收。核为磁性粉煤灰空心微珠,壳为掺杂La的纳米铁氧体。通过热重分析和差示热分析研究了样品的热分解过程。通过X射线衍射分析研究了复合材料的形貌和成分,用扫描电子显微镜和透射电子显微镜观察了微观结构。振动样品磁强计分析结果表明,磁性粉煤灰空心微珠的铁氧体与纳米铁氧体涂层之间发生了交换耦合相互作用,从而产生了优异的磁性能。用矢量网络分析仪通过雷达微波吸收材料的反射率远场雷达截面测量了样品的微波吸收性能。结果表明,交换耦合相互作用增强了复合材料的磁损耗。因此,在5GHz频率下,反射系数可达-24dB。它优于单一材料,符合微波吸收材料低频吸收的要求。