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通过氧氯化锆与过氧化氢的反应得到氧化锆溶胶,与 SiO2溶胶混合后,制备了不同 SiO2含量的氧化锆纤维,采用SEM、XRD、DTA、FT-IR、29 Si NMR、TEM等对纤维相组成和微观结构进行了系统研究。结果表明,少量SiO2可以显著提高四方相ZrO2的稳定性,抑制单斜相的形成,避免纤维“皮芯结构”的形成。此外 SiO2可以有效抑制晶粒长大,从而达到细晶的作用,获得无表面缺陷、致密、柔性的ZrO2纤维。

Zirconia fibers containing different amount of silica are prepared using zirconium oxychloride,hydro-gen peroxide and silica sol as the raw materials and by sol-gel method.SEM,XRD,DTA,FT-IR,29 Si NMR and TEM are used to characterize the zirconia-silica fibers.It has been found that silica can significantly stabilize the tetragonal ZrO2 phase,inhibiting its phase transformation to the monoclinic phase.As the consequence,the formation of sheath-core structure in the zirconia-silica fibers has been prevented.Silica can also effectively in-hibit the grain growth,resulting in crack-free,transparent,dense and flexible ceramic fibers.

参考文献

[1] Li JJ;Jiao XL;Chen DR.Preparation of zirconia fibers via a simple aqueous sol-gel method[J].Journal of Dispersion Science and Technology,20074(4):531-535.
[2] Hangrong Chen;Xin Michael Wang;Jianlin Shia.A novel structural mesoporous alumina/yttrium doped zirconia nanocrystaliine composite derived by solvothermal approach[J].Journal of Materials Research,20051(1):42-47.
[3] 宋云华;陈祥歌;陈建铭.均相共沉淀法制备纳米氧化锆复合粉体[J].功能材料,2011(z1):26-29.
[4] Francisco del Monte;Willa Larsen;John D. Mackenzie.Stabilization of tetragonal ZrO{sub}2 in ZrO{sub}2-SiO{sub}2 binary oxides[J].Journal of the American Ceramic Society,20003(3):628-634.
[5] J.Y. Li;Y. Tan;F.M. Xu;Y. Sun;X.Q. Cao;Y.F. Zhang.Hollow fibers of yttria-stabilized zirconia (8YSZ) prepared by calcination of electrospun composite fibers[J].Materials Letters,200815(15):2396-2399.
[6] He-Yi Liu;Xian-Qin Hou;Xin-Qiang Wang;Yan-Ling Wang;Dong Xu;Chen Wang;Wei Du;Meng-Kai Lu;Duo-Rong Yuan.Fabrication of High-Strength Continuous Zirconia Fibers and Their Formation Mechanism Study[J].Journal of the American Ceramic Society,200412(12):2237-2241.
[7] Subramaniyan Vasanthavel;Ponnusamy Nandha Kumar;Sanjeevi Kannan.Quantitative Analysis on the Influence of SiO_2 Content on the Phase Behavior of ZrO_2[J].Journal of the American Ceramic Society,20142(2):635-642.
[8] Yuan-yuan Ma;Pei-nan Jia;Xiao-ceng Li;Na Liu;Ya-lu Ma.Synthesis of the ZrO_2-SiO_2 microspheres as a mesoporous candidate material[J].Journal of porous materials,20126(6):1047-1052.
[9] Yin Zhang;Li Pan;Chunguang Gao.Preparation of ZrO2-SiO2 mixed oxide by combination of sol-gel and alcohol-aqueous heating method and its application in tetrahydrofuran polymerization[J].Journal of Sol-Gel Science and Technology,20101(1):27-32.
[10] Sirarat Kongwudthiti;Piyasan Praserthdam;Waraporn Tanakulrungsank.The influence of Si-O-Zr bonds on the crystal-growth inhibition of zirconia prepared by the glycothermal method[J].Journal of Materials Processing Technology,20031/3(1/3):186-189.
[11] Francisco del Monte;Willa Larsen;John D. Mackenzie.Chemical interactions promoting the ZrO{sub}2 tetragonal stabilization in ZrO{sub}2-SiO{sub}2 binary oxides[J].Journal of the American Ceramic Society,20006(6):1506-1512.
[12] He-Yi Liu;Yan Chen;Gui-Shuang Liu.Preparation of High-Quality Zirconia Fibers by Super-High Rotational Centrifugal Spinning of Inorganic Sol[J].Materials and Manufacturing Processes,20131/3(1/3):133-138.
[13] S. Tsunekawa;S. Ito;Y. Kawazoe;J.-T. Wang.Critical Size of the Phase Transition From Cubic to Tetragonal in Pure Zirconia Nanoparticles[J].Nano letters,20037(7):871-875.
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