Control of interphase interaction and adsorption processes in epoxide oligomer-based adhesive compositions
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  • 作者:N. V. Kostromina (1)
    V. S. Osipchik (1)
    Yu. V. Olikhova (1)
    T. P. Kravchenko (1)
    D. M. Bui (1)

    1. Mendeleev Russian University of Chemical Technology
    ; Miusskaya pl. 9 ; Moscow ; 125047 ; Russia
  • 关键词:epoxide oligomer ; adsorption interaction ; surfactants ; ionic surfactants ; nonionic surfactants ; OLEOX ; STEAROX ; catamine ; sodium decyl succinate
  • 刊名:Polymer Science Series D
  • 出版年:2015
  • 出版时间:January 2015
  • 年:2015
  • 卷:8
  • 期:1
  • 页码:54-58
  • 全文大小:276 KB
  • 参考文献:1. N. V. Kostromina, V. S. Osipchik, V. M. Aristov, et al., Plast. Massy, No. 12, 16鈥?8 (2011).
    2. N. V. Kostromina, F. K. Tkhuan, and V. S. Osipchik, Usp. Khimii Khim. Tekhnol.: Sb. Nauch. Tr. RKhTU im. D. I. Mendeleeva 25(3), 96鈥?01 (2011).
    3. V. I. Baranova, E. E. Babik, and N. M. Kozhevnikova, / A Practical Course in Colloidal Chemistry (Vyssh. shkola, Moscow, 1983) [in Russian].
    4. N. I. Baurova, 鈥淎pplication of simulation modeling for analysis of residual stresses in polymeric materials,鈥?Entsikl. Inzh.-Khim., No. 11, 21鈥?4 (2010).
    5. A. I. Yagupov, A. R. Beketov, M. V. Baranov, and O. V. Stoyanov, 鈥淭he applicability of current models to assess the thermal-physical characteristics of silicone varnish filled with fine aluminum nitride,鈥?Vse Mater. Entsikl. Sprav., No. 1, 28鈥?3 (2014).
    6. M. G. Gabidullin, R. Z. Rakhimov, I. R. Badertdinov, et al., 鈥淐ement composites reinforced with steel fiber,鈥?Vse Mater. Entsikl. Sprav., No. 3, 11鈥?8 (2014).
  • 刊物类别:Chemistry and Materials Science
  • 刊物主题:Chemistry
    Russian Library of Science
    Polymer Sciences
  • 出版者:MAIK Nauka/Interperiodica distributed exclusively by Springer Science+Business Media LLC.
  • ISSN:1995-4220
文摘
Some results of studying the effect of surfactants on the interphase interaction processes at the epoxide oligomer-substrate phase interface are presented. The possibility of controlling the residual stresses and adhesion strength of epoxide adhesive materials via the introduction of polymer nonionic surfactants into their composition is shown.

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