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2篇 您的检索式:作者名="C.F.Fang"
    题名 作者 年代 出处 被引量
1Spray granulation of Fe and C nanoparticles and their impedance match for microwave absorption显示文摘The microwave absorbents of Fe and C nanoparticles as magnetic loss and dielectric loss material respectively were composited with the polyvinyl alcohol(PVA) as binder by spray granulation method. The electromagnetic parameters of Fe and C composite particles were analyzed by vector network. The complex permittivity and magnetic permeability of Fe and C composite particles matched well with increasing C nanoparticle content, and then the microwave loss property was improved. A minimum reflection loss(RL) of -42.7 d B at 3.68 GHz for a composite with 4.6 mm in thickness can be obtained when the content ratio of the C nanoparticles, the modified Fe nanoparticles and the PVA is 21:49:30(Sample 3).H.Huang Y.Gao C.F.Fang A.M.Wu X.L.Dong B.S.Kim J.H.Byun G.F.Zhang D.Y.Zhou 2018Journal of Materials Science & Technology2018,34,3:2
2GO/MgO/Mg interface mediated strengthening and electromagnetic interference shielding in AZ31 composite显示文摘More requirements of electromagnetic interference(EMI) shielding performance are put forward for lightweight structural materials due to the development of aerospace and 5G communications. Herein, graphene oxide(GO) decorated with SnO_(2) coating is introduced as reinforcement into AZ31 Mg alloy. During the smelting process, the MgO layer is in situ gernerated at interface between GO and the molten Mg alloy matrix by consuming SnO_(2). In the solid state, such kind of interface structure can improve the GO-Mg interface bonding intensity,also significantly generate stacking faults. The AZ31 composite reinfoced by trace modified GO(0.1 wt%) exhibits high ultimate strength and almost the same elongation with AZ31 alloy. Compared with AZ31 alloy, the yield strength and ultimate tensile strength of composite are increased by 33.5% and 23.7%, respectively. Meanwhile, the multi-level electromagnetic reflection from the multi-layer structure of GO and the interface polarization caused by the MgO mid-layer can significantly improve EMI shielding performance. The appropriate interface design strategy achieves the effect of “two birds with one stone”.Z.Y.Xu C.F.Fang C.J.Li R.Wang X.P.Zhang J.Tan Y.M.Wang 2023Journal of Magnesium and Alloys2023,11,10:0
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