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Preparation and Characterization of M-Type Barium Ferrite Fibers via Aqueous Sol-Gel Process 被引量:1

Preparation and Characterization of M-Type Barium Ferrite Fibers via Aqueous Sol-Gel Process
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摘要 BaFe12O19 fibers was prepared via an aqueous sol-gel process using Fe(OH)(HCOO)2 synthesized in laboratory and Ba(CH3COO)2 as the original materials and citrate as the chelate. The rheological behaviour of spinnable sol was characterized on rheometer, and the development of gel fibers to barium ferrite fibers was studied by IR, TG and XRD. Morphology observation of the fibers was given on SEM, and the diameter of the obtained fibers was between 5 and 10 μm corresponding to different additives. The additives affected the surface tension of the precursor sol which had close relation to the microstructure of fibers. Sucrose and hydroxyethylic cellulose could improve the surface tension while diethanolamine and hexadecylamine reduce that of the precursor sol. And using diethanolamine or hexadecylamine as an additive, well-structured BaFe12O19 fibers could be obtained. BaFe12O19 fibers was prepared via an aqueous sol-gel process using Fe(OH)(HCOO)2 synthesized in laboratory and Ba(CH3COO)2 as the original materials and citrate as the chelate. The rheological behaviour of spinnable sol was characterized on rheometer, and the development of gel fibers to barium ferrite fibers was studied by IR, TG and XRD. Morphology observation of the fibers was given on SEM, and the diameter of the obtained fibers was between 5 and 10 um corresponding to different additives. The additives affected the surface tension of the precursor sol which had close relation to the microstructure of fibers. Sucrose and hydroxyethylic cellulose could improve the surface tension while diethanolamine and hexadecylamine reduce that of the decylamine as an additive, well-structured BaFe12O19 precursor sol. And using diethanolamine or hexafibers could be obtained.
出处 《Transactions of Tianjin University》 EI CAS 2007年第2期117-120,共4页 天津大学学报(英文版)
基金 Supported by National Natural Science Foundation of China(No.50506020) Natural Science Foundation of Tianjin(No.043605211) Young Teacher Foundation of Tianjin University(No.5110103)
关键词 M型钡铁氧体纤维 水分散体系 溶胶-凝胶法 合成 特性 barium ferrite fiber additive microstructure sol-gel synthesis
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