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本文概述了有机蒙脱土/橡胶复合材料的制备方法,重点介绍了机械混炼法和插层技术法,并简单展望了有机改性蒙脱土增强橡胶材料今后的研究方向.

参考文献

[1] Rasha M. Mohamed .Radiation induced modification of NBR and SBR montmorillonite nanocomposites[J].Journal of industrial and engineering chemistry,2013(1):80-86.
[2] 许图远,王松,卢咏来,王文才.碳纳米管/橡胶复合材料的研究进展[J].合成橡胶工业,2011(06):489-494.
[3] 孙玉海,傅伟文,刘岚,贾德民,罗远芳.天然橡胶/固相改性蒙脱土纳米复合材料的制备与表征[J].高分子材料科学与工程,2007(05):246-249.
[4] Yang Yu;Zheng Gu;Guojun Song;Peiyao Li;Hanhua Li;Weisheng Liu .Structure and properties of organo-montmorillonite/nitrile butadiene rubber nanocomposites prepared from latex dispersions[J].Applied clay science,2011(4):381-385.
[5] Guojun Song;Zheng Gu;Peiyao Li;Li Wang;Li Gao .The properties of organo-montmorillonite/cis-l,4-polybutadiene rubber nanocomposites and the effect of recovered solvent on the conversion of butadiene polymerization[J].Applied clay science,2012(Sep.):158-161.
[6] Satyendra Mishra;Navinchandra G. Shimpi;Ananda D. Mali .Surface Modification of Montmorillonite (MMT) Using Column Chromatography Technique and Its Application in Silicone Rubber Nanocomposites[J].Macromolecular Research,2012(1):44-50.
[7] Wu, J.;Huang, G.;Wang, X.;He, X.;Lei, H. .Molecular dynamics in chlorinated butyl rubber containing organophilic montmorillonite nanoparticles[J].Journal of Polymer Research,2011(6):2213-2220.
[8] Zhang, R.L.;Liu, L.;Huang, Y.D.;Tang, Y.R.;Zhang, T.C.;Zhan, S.Z. .Prepared hydrogenated nitrile rubber (HNBR)/organo-montmorillonite nanocomposites by the melt intercalation method[J].Journal of Applied Polymer Science,2010(5):2870-2876.
[9] Kaneko, MLQA;Romero, RB;Goncalves, MD;Yoshida, IVP .High molar mass silicone rubber reinforced with montmorillonite clay masterbatches: Morphology and mechanical properties[J].European Polymer Journal,2010(5):881-890.
[10] Rasha M. Mohamed .Radiation induced modification of NBR and SBR montmorillonite nanocomposites[J].Journal of industrial and engineering chemistry,2013(1):80-86.
[11] M.Arroyo;M.A.Lopez-Manchado;B.Herrero .Organo-montmorillonite as substitute of carbon black in natural rubber compounds[J].Polymer: The International Journal for the Science and Technology of Polymers,2003(8):2447-2453.
[12] Jana Hrachova;Peter Komadel;Ivica Janigova;Miroslav Slouf;Ivan Chodak .Properties of rubber filled with montmorillonite with various surface modifications[J].Polymers for advanced technologies,2012(10):1414-1421.
[13] Sandip Rooj;Amit Das;Klaus Werner Stoeckelhuber;Nabaneeta Mukhopadhyay;Arup R. Bhattacharyya;Dieter Jehnichen;Gert Heinrich .Pre-intercalation of long chain fatty acid in the interlayer space of layered silicates and preparation of montmorillonite/natural rubber nanocomposites[J].Applied clay science,2012(Oct.):50-56.
[14] Chao Jia;Li-Qun Zhang;Hao Zhang .Preparation, Microstructure, and Property of Silicon Rubber/Organically Modified Montmorillonite Nanocomposites and Silicon Rubber/OMMT/Fumed Silica Ternary Nanocomposites[J].Polymer Composites,2011(8):1245-1253.
[15] Zheng, J.;Zhang, W.;Li, H.;Li, J. .Influence of intercalated structure on the properties of montmorillonite/high-temperature vulcanized silicone rubber nanocomposites[J].Journal of Polymer Research,2011(6):2359-2365.
[16] Zheng Gu;Li Gao;Guojun Song;Weisheng Liu;Peiyao Li;Chunpeng Shan .Octadecylammonium montmorillonite/natural rubber/cis-1, 4-polybutadiene nanocomposites[J].Applied clay science,2010(1):143-147.
[17] Anna Di Gianni;Giovanna Colucci;Aldo Priola .Exfoliated/Intercalated Rubber/Organo-Montmorillonite Nanocomposites: Preparation and Characterization[J].Macromolecular materials and engineering,2009(10):705-710.
[18] Sun YH;Luo YF;Jia DM .Preparation and properties of natural rubber nanocomposites with solid-state organomodified montmorillonite[J].Journal of Applied Polymer Science,2008(5):2786-2792.
[19] Amit Das;Klaus Werner Stockelhuber;Rene Jurk;Dieter Jehnichen;Gert Heinrich .A general approach to rubber-montmorillonite nanocomposites: Intercalation of stearic acid[J].Applied clay science,2011(1/2):117-125.
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