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Magnetic and Microwave-absorption Properties of Graphite-coated (Fe, Ni) Nanocapsules

Zhigao Xie

材料科学技术(英)

The structure, magnetic and microwave-absorption properties of graphite-coated (Fe, Ni) alloy nanocapsules, synthesized by the arc-discharge method, have been studied. High-resolution transmission electron microscopy shows that the nanocapsules have a core/shell structure with (Fe, Ni) alloy as the core and graphite as the shell. All (Fe, Ni) alloy nanocapsules/paraffin composites show good microwave-absorption properties. The optimal reflection loss (RL) was found for (Fe70Ni30)/C nanocapsules/paraffin composites, being -47:84 dB at 14.6 GHz for an absorber thickness of 1.99 mm, while the RL  values exceeding -10 dB were found in the 12.4-17.4 GHz range, which almost covers the Ku band (12.4-18 GHz). For (Fe70Ni30)/C nanocapsules/paraffin
composites, RL values can exceed -10 dB in the 11.4-18 GHz range with an absorber thickness of 1.91 mm, which cover the whole Ku band.

关键词: Magnetic

Effects of Magnetic Field Strength on Micostructure and Textre Evolution in Cold-Rolled Interstitial-Free Steel by Magnetic Field Annealing

Y. Wu , C.S. He , X. Zhao , null , null

金属学报(英文版)

Effects of magnetic field strength on the evolution of recrystallization microstructure and recrystallization texture in cold-rolled interstitial-free steel were investigated after annealing at 660°C in a magnetic field up to 12T. Magnetic annealing was found to retard the recrystallization and induce the recrystallized grains elongated along the magnetic field direction. An interesting phenomenon is that the magnetic field shows the strongest effect at 1T.

关键词: Magnetic annealing , annealing , Recrystallization , Tex

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