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THE EFFECT OF ALUMINUM-DOPED ZINC OXIDE ON THE PROPERTIES OF AN ELASTOMERIC COMPOSITION BASED ON NITRILE RUBBER

Abstract

In this work, the effect of aluminum-doped zinc oxide (ZnO:Al) on the vulcanization characteristics and the electrophysical and physico-mechanical properties of an elastomeric composition based on nitrile rubber was investigated. It has been established that the use of ZnO:Al as a filler in nitrile rubber makes it possible to reduce the specific volume electrical resistance of the rubber and reproduce the structure of the conductive structure inside the polymer matrix. A decrease in the value of this indicator was observed with the introduction of 5 wt. %. ZnO:Al (1,2 at. %).

About the Authors

Anton Olegovich Volkov
MIREA – Russian Technological University
Russian Federation


Julia Anatolyevna Naumova
MIREA – Russian Technological University
Russian Federation


A. O. Kozlova
MIREA – Russian Technological University
Russian Federation


K. D. Konovalova
MIREA – Russian Technological University
Russian Federation


Lyudmila Alexandrovna Kovaleva
MIREA – Russian Technological University
Russian Federation


Andrey Viktorovich Dorokhov
MIREA – Russian Technological University
Russian Federation


References

1. Gul V.E. and Shenfil L.V. Electrically Conductive Polymer Compositions. Moscow: Khimiya, 1984. 240 p.

2. Zhang P. On the electrical conductivity and photocatalytic activity of aluminum-doped zinc oxide // Powder Technol. Elsevier, 2014. V. 253. P. 360–367.

3. Zhang P. Aluminum-doped zinc oxide powders: Synthesis, properties and application // J. Mater. Sci. Mater. Electron. 2014. V. 25, N 2. P. 678–692.

4. Abdulkhadi Kh.D.A. Electromagnetic Screens Based on Aluminum, Its Oxides, and Carbon Fibers. Technologies, Designs, and Properties. Minsk: Bestprint, 2021. 118 p.


Review

For citations:


Volkov A.O., Naumova J.A., Kozlova A.O., Konovalova K.D., Kovaleva L.A., Dorokhov A.V. THE EFFECT OF ALUMINUM-DOPED ZINC OXIDE ON THE PROPERTIES OF AN ELASTOMERIC COMPOSITION BASED ON NITRILE RUBBER. Proceedings of the Kabardino-Balkarian State University. 2022;12(5):49-53. (In Russ.)

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ISSN 2221-7789 (Print)