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Erschienen in: Polymer Science, Series D 3/2020

01.07.2020

Polymer Composite Materials Based on Ultra-High-Molecular-Weight Polyethylene Filled with Organomodified Zeolite

verfasst von: A. M. Spiridonov, M. D. Sokolova, A. A. Okhlopkova

Erschienen in: Polymer Science, Series D | Ausgabe 3/2020

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Abstract

In this work, the processing technology of enhancement of the interfacial interaction between ultrahigh molecular weight polyethylene and natural zeolite is considered, which consists in preparation of a stable monomolecular organolayer of a surfactant on the zeolite surface by adsorption of cetyl trimethyl ammonium bromide.

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Literatur
1.
Zurück zum Zitat P. Bracco, A. Bellare, A. Bistolfi, and S. Affatato, “Ultrahigh molecular weight polyethylene: Influence of the chemical, physical and mechanical properties on the wear behavior. A review,” Materials 10, 791 (2017).CrossRef P. Bracco, A. Bellare, A. Bistolfi, and S. Affatato, “Ultrahigh molecular weight polyethylene: Influence of the chemical, physical and mechanical properties on the wear behavior. A review,” Materials 10, 791 (2017).CrossRef
2.
Zurück zum Zitat D. Krajisnik, A. Dakovic, M. Milojevic, A. Malenovic, M. Kragovic, D. B. Bogdanovic, V. Dondur, and J. Milic, “Properties of diclofenac sodium sorption onto natural zeolite modified with cetylpyridinium chloride,” Colloids Surf., B 83, 165–172 (2011).CrossRef D. Krajisnik, A. Dakovic, M. Milojevic, A. Malenovic, M. Kragovic, D. B. Bogdanovic, V. Dondur, and J. Milic, “Properties of diclofenac sodium sorption onto natural zeolite modified with cetylpyridinium chloride,” Colloids Surf., B 83, 165–172 (2011).CrossRef
3.
Zurück zum Zitat B. C. Erdogan and S. Ulku, “Removal of bacteria by clinoptilolite rich mineral and its surfactant modified forms,” J. Porous Mater. 20 (5), 1143–1151 (2013).CrossRef B. C. Erdogan and S. Ulku, “Removal of bacteria by clinoptilolite rich mineral and its surfactant modified forms,” J. Porous Mater. 20 (5), 1143–1151 (2013).CrossRef
4.
Zurück zum Zitat A. M. Spiridonov, A. L. Fedorov, M. D. Sokolova, A. A. Okhlopkova, T. A. Okhlopkova, and R. V. Borisova, “IR-spectroscopic studies of aluminum-silicon-oxygen skeleton of aclinoptilolite and its hydrogen forms,” Fizikokhim. Poverkhn. Zashch. Mater. 52 (4), 442–448 (2016). A. M. Spiridonov, A. L. Fedorov, M. D. Sokolova, A. A. Okhlopkova, T. A. Okhlopkova, and R. V. Borisova, “IR-spectroscopic studies of aluminum-silicon-oxygen skeleton of aclinoptilolite and its hydrogen forms,” Fizikokhim. Poverkhn. Zashch. Mater. 52 (4), 442–448 (2016).
5.
Zurück zum Zitat A. V. Ushakov, I. V. Karpov, L. U. Fedorov, and A. A. Lepeshev, “Mechanical and tribological properties of complex-modified material based on ultra high molecular weight polyethylene and CuO,” J. Frict. Wear 35, 7–11 (2014).CrossRef A. V. Ushakov, I. V. Karpov, L. U. Fedorov, and A. A. Lepeshev, “Mechanical and tribological properties of complex-modified material based on ultra high molecular weight polyethylene and CuO,” J. Frict. Wear 35, 7–11 (2014).CrossRef
6.
Zurück zum Zitat A. G. Argunova and A. A. Okhlopkova, “Effect of nanostructured aluminum and magnesium oxides on the patterns of formation of PCM structure based on PTFE,” Vestn. Sev.-Vost. Fed. Univ. im. M.K. Ammosova 7 (4), pp. 47–52. A. G. Argunova and A. A. Okhlopkova, “Effect of nanostructured aluminum and magnesium oxides on the patterns of formation of PCM structure based on PTFE,” Vestn. Sev.-Vost. Fed. Univ. im. M.K. Ammosova 7 (4), pp. 47–52.
7.
Zurück zum Zitat A. A. Okhlopkova, T. S. Struchkova, and A. P. Vasil’ev, “Investigation of the effect of alumina on the structure and properties of PTFE,” Fundam. Issled., No. 12, 2557–2562 (2014). A. A. Okhlopkova, T. S. Struchkova, and A. P. Vasil’ev, “Investigation of the effect of alumina on the structure and properties of PTFE,” Fundam. Issled., No. 12, 2557–2562 (2014).
8.
Zurück zum Zitat Yu. S. Lipatov, Physicochemical Basics of Polymer Fillings (Khimiya, Moscow, 1991). Yu. S. Lipatov, Physicochemical Basics of Polymer Fillings (Khimiya, Moscow, 1991).
9.
Zurück zum Zitat H. Zhang, L. Wang, Y. Gao, and A. Zhou, “Research progress of nanomodified ultra-high molecular weight polyethylene composites,” Mater. Rev. 30 (3), 33–39 (2016). H. Zhang, L. Wang, Y. Gao, and A. Zhou, “Research progress of nanomodified ultra-high molecular weight polyethylene composites,” Mater. Rev. 30 (3), 33–39 (2016).
10.
Zurück zum Zitat Y. Wang, Z. Yin, H. Li, G. Gao, and X. Zhang, “Friction and wear characteristics of ultrahigh molecular weight polyethylene (UHMWPE) composites containing glass fibers and carbon fibers under dry and water-lubricated conditions,” Wear 380–381, 42–51 (2017). Y. Wang, Z. Yin, H. Li, G. Gao, and X. Zhang, “Friction and wear characteristics of ultrahigh molecular weight polyethylene (UHMWPE) composites containing glass fibers and carbon fibers under dry and water-lubricated conditions,” Wear 380381, 42–51 (2017).
Metadaten
Titel
Polymer Composite Materials Based on Ultra-High-Molecular-Weight Polyethylene Filled with Organomodified Zeolite
verfasst von
A. M. Spiridonov
M. D. Sokolova
A. A. Okhlopkova
Publikationsdatum
01.07.2020
Verlag
Pleiades Publishing
Erschienen in
Polymer Science, Series D / Ausgabe 3/2020
Print ISSN: 1995-4212
Elektronische ISSN: 1995-4220
DOI
https://doi.org/10.1134/S1995421220030181

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