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聚苯胺(PAn)作为电流变材料具有响应快、屈服应力大的特点,但因其良好的导电性能导致漏电击穿现象发生,为了进一步增加PAn的悬浮稳定性,引入了粉煤灰漂珠(FAFB),BaTiO3作为经典的电介质材料也引入其中以进一步提高材料的介电性能。采用逐层包覆的思路,利用溶胶-凝胶法在漂珠表面包覆 BaTiO3,获得FAFB@BaTiO3,再利用原位聚合法制备以 FAFB@BaTiO3为核、PAn为壳的结构复合材料即 FAFB@BaTiO3@PAn。利用 FTIR、XRD和 SEM对材料的结构与形貌进行分析,借助四探针技术和 LCR 数字电桥对材料的导电与介电性能进行分析,利用自组装电流变仪进行了电流变特性测试,考察了7d 内的悬浮稳定性能。结果表明:BaTiO3、PAn确实发生了逐层包覆,且电导率、介电常数、介电损耗和剪切应力均符合复合效应规律,介于PAn与FAFB@BaTiO3之间,其中,剪切应力可达675 Pa (电场强度为3.0 kV/mm);漏电现象得到缓解,击穿电压提高了20%;比较悬浮稳定性发现,7 d后 FAFB@BaTiO3@PAn悬浮率仍为82%。

Polyaniline (PAn)was applied as one of electrorheological materials with the characters of short reaction time and high yield stress.However,the electric leakage breakdown phenomenon always occurs due to high electric conductivity of PAn.In order to improve suspension stability of PAn,fly ash floating bead (FAFB)was introduced into this system.BaTiO3 as classic dielectric material was imported into PAn to increase its dielectric property.By using the idea of layer by layer coating,FAFB@BaTiO3 was prepared by sol-gel method by coating BaTiO3 on sur-face of beads.Then,FAFB@BaTiO3@PAn was formed by in situ polymerization method on the basis of FAFB@BaTiO3 as core and PAn as shell,respectively.The structure and morphology of materials were characterized by FTIR,XRD and SEM.The electric conductivity and dielectric property of materials were performed by four-probe technique and LCR Data Bridge,respectively.The electrorheological property test was also measured through home-made electrorheological parameter.The suspension stability within 7 d was also inspected.The results show that BaTiO3 and PAn was coated layer by layer successfully.The electric conductivity,dielectric constant,dielectric loss and shear stress are in line with the composite effect,situated between PAn and FAFB@BaTiO3 ,especially,the shear stress could reach to 675 Pa (electric field strength is 3.0 kV/mm).Leakage phenomenon has been alleviated, and the breakdown volt increases by 20%.Comparing the suspension stability,the suspension ratio of FAFB@BaTiO3@PAn still keeps at 82% after 7 d.

参考文献

[1] Fei Fei Fang;Bo Mi Lee;Hyoung Jin Choi.Electrorheologically Intelligent Polyaniline and Its Composites[J].Macromolecular Research,20102(2):99-112.
[2] Yin JB;Zhao XP;Xia X;Xiang LQ;Qiao YP.Electrorheological fluids based on nano-fibrous polyaniline[J].Polymer: The International Journal for the Science and Technology of Polymers,200820(20):4413-4419.
[3] Yin, J.;Xia, X.;Zhao, X..Conductivity, polarization and electrorheological activity of polyaniline nanotubes during thermo-oxidative treatment[J].Polymer Degradation and Stability,201211(11):2356-2363.
[4] 钮晨光;董旭峰;赵红;齐民;谭锁奎;纪松.苯胺-SrTi(C2O4)2颗粒制备及其电流变性能[J].复合材料学报,2014(1):81-87.
[5] Hwai-Chung Wu;Peijiang Sun.New building materials from fly ash-based lightweight inorganic polymer[J].Construction and Building Materials,20071(1):211-217.
[6] Z.T. Yao;M.S. Xia;P.K. Sarker;T. Chen.A review of the alumina recovery from coal fly ash, with a focus in China[J].Fuel,2014Mar.15(Mar.15):74-85.
[7] Sung BH;Choi US;Jang HG;Park YS.Novel approach to enhance the dispersion stability of ER fluids based on hollow polyaniline sphere particle[J].Colloids and Surfaces, A. Physicochemical and Engineering Aspects,20061/3(1/3):37-42.
[8] 王悦;雷西萍;宋学锋;蔺彦梅.十六烷基三甲基溴化铵改性粉煤灰漂珠/聚苯胺复合材料的制备与表征[J].材料导报,2014(20):41-46.
[9] 王悦;雷西萍;宋学锋;蔺彦梅;王冰鑫.氧化剂浓度对漂珠/聚苯胺复合材料的制备及其性能影响研究[J].硅酸盐通报,2014(12):3090-3096.
[10] 蔺彦梅;雷西萍;宋学锋;王悦.APTES修饰粉煤灰漂珠/聚苯胺的制备及性能[J].硅酸盐通报,2014(10):2683-2688.
[11] 蔺彦梅;雷西萍;宋学锋;王悦;王冰鑫.聚苯胺@粉煤灰漂珠复合材料的导电及介电性能[J].复合材料学报,2015(4):948-954.
[12] Xi-ping Lei;Qi Su;Juan Fan.SYNTHESIS AND PROPERTIES OF ORGANO-FLY ASH/POLYANILINE WITH CORE/SHELL STRUCTURE BASED ON EMULSION POLYMERIZATION[J].高分子科学(英文版),2012(06):808-814.
[13] Lei XP;Gu XF;Zhang LX;Wang YP;Su ZX.Synthesis and properties of novel conducting polyaniline copolymers[J].Journal of Applied Polymer Science,20071(1):140-147.
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