Investigation of the thermal characteristics of a heating element based on aluminum with nanoporous alumina
https://doi.org/10.17073/1609-3577-2019-4-241-245
Abstract
About the Authors
E. N. MuratovaRussian Federation
Ekaterina N. Muratova: Cand. Sci. (Eng.), Researcher
V. A. Moshnikov
Russian Federation
Vyacheslav A. Moshnikov: Dr. Sci. (Phys.-Math.), Professor, Department of Micro- and Nanoelectronics
K. V. Chernyakova
Belarus
Katsiaryna V. Chernyakova: Cand. Sci. (Phys.-Math.), Associate Professor, Leading Researcher
I. A. Vrublevsky
Belarus
Igor A. Vrublevsky: Cand. Sci. (Eng.), Associate Professor, Head of the Laboratory
References
1. Dinh H. T., Lushpa N. V., Chernyakova K. V., Vrublevsky I. A. Study of distribution of thermal fluxes in a plate of aluminum with nanoporous aluminum oxide by means of thermal imaging measurements. Doklady BGUIR, 2019, no. 1, pp. 45—50. (In Russ.)
2. Simin A., Holodnyak D., Vendik I. Multilayer integrated circuits of ultrahigh frequencies based on ceramics with a low firing temperature. Komponenty i tekhnologii = Components and technologies, 2005, no. 5, pp. 190—196. (In Russ.)
3. Muratova E. N., Moshnikov V. A., Luchinin V. V., Bobkov A. A., Vrublevsky I. A., Chernyakova K. V., Terukov E. I. Thermal-conductive boards based on aluminum with an Al2O3 nanostructured layer for products of power electronics. Tech. Phys., 2018, vol. 63, pp. 1626—1628. DOI: 10.1134/S1063784218110191
4. Muratova E. N., Vrublevsky I. A., Chernyakova E. V. et al. Materialy XIV Mezhdunarodnoi konferentsii “Fizika dielektrikov” (Dielektriki-2017) = Materials of the XIV International Conference “Physics of Dielectrics” (Dielectrics-2017). St. Petersburg: Izd-vo RGPU im. A. I. Gertsena, 2017, p. 136. (In Russ.)
5. Andreev S., Chemyakova K., Tzaneva B., Videkov V., Vrublevsky I. Investigation of the efficiency of the heat dissipation for the heat-conducting circuit boards made of aluminum with the nanoporous alumina layer. 40th International Spring Seminar on Electronics Technology (ISSE). Sofia (Bulgaria): IEEE, 2017, pp. 1—6. DOI: 10.1109/ISSE.2017.8000899
6. Chernyakova E., Vrublevsky I., Videkov V., Tuchkovsky A. Application of nanostructured anodic aluminum oxide in the manufacture of heat-loaded boards for power modules. Scientific Proceedings of STUME, 2016, vol. XXV, no. 12, pp. 257—263. (In Russ.)
7. Vrublevsky I., Chernyakova E. Videkov V., Tuchkovsky A. Comparative analysis of the operation of a flat heating element based on anodized aluminum. Scientific Proceedings of STUME, 2015, vol. XXIII, no. 9, pp. 422—428. (In Russ.)
8. Vrublevsky I., Chernyakova K., Videkov V., Tuchkovsky A. Improvement of the thermal characteristics of the electric heater in the architecture with aluminum, nanoporous alumina and resistive component of carbon fiber. Nanoscience & Nanotechnology, 2016, no. 1, pp. 1—2. URL: https://libeldoc.bsuir.by/handle/123456789/10898
9. Vorozhtsova M., Drbohlavova Ja., Hubalek Ja. Chemical Microsensors with Ordered Nanostructures. In: Microsensors. Ed. by I. Minin. IntechOpen, 2011. DOI: 10.5772/18066
10. Ersching K., Dorico E., da Silva R. C., Zoldan V. C., Isoppo E. A., Viegas A. D. C., Pasa A. A. Surface and interface characterization of nanoporous alumina templates produced in oxalic acid and submitted to etching procedures. Mater. Chem. and Phys., 2012. vol. 137, no. 1, pp. 140—146. DOI: 10.1016/j.matchemphys.2012.08.058
11. Muratova E. N. Artificially and naturally ordered micro- and nanosized capillary membranes based on anodic aluminum oxide: Dis. Cand. Sci. (Eng.). St. Petersburg: Saint Petersburg Electrotechnical University “LETI”, 2014, 118 p. (In Russ.). URL: https://etu.ru/assets/files/nauka/dissertacii/2014/Dissertaciya-Muratovoj-EN.pdf
12. Eftekhari A. Nanostructured Materials in Electrochemistry. Weinheim (Germany): Wiley-VCH Verlag GmbH & Co. KGaA, 2008, 489 p.
13. Aleksandrova O. A., Alekseev P. A., Kononova I. E., Maksimov A. I., Maraeva E. V., Moshnikov V. A., Muratova E. N., Nalimova S. S., Permyakov N.V., Spivak Yu. M., Titkov A. N. Diagnostika materialov metodami skaniruyushchei zondovoi mikroskopii [Diagnostics of materials by scanning probe microscopy]. Ed. by Prof. V. A. Moshnikov. St. Petersburg: Izd-vo SPbGETU “LETI”, 2012, 172 p. (In Russ.)
14. Muratova E. N., Matyushkin L. B., Moshnikov V. A., Chernyakova K. V., Vrublevsky I. A. Thermal radiation shielding by nanoporous membranes based on anodic alumina. J. Phys.: Conf. Series, 2017, vol. 872, no. 1, p. 012020. DOI: 10.1088/1742-6596/872/1/012020
15. Vrublevsky I. A., Dick S. K., Tereh A. S., Smirnov A. V., Chernyakova K. V. Structure of the porous aluminium oxide films formed in the solutions of organic acids. PFMT, 2012, no. 3, pp. 101—105. (In Russ.)
16. Patent 122385 (RF). Elektrokhimicheskaya yacheika dlya polucheniya poristykh anodnykh oksidov metallov i poluprovodnikov [An electrochemical cell for the production of porous anodic metal and semiconductor oxides]. P. G. Travkin, E. N. Sokolova, Yu. M. Spivak, V. A.Moshnikov, 2012. (In Russ.)
17. Muratova E. N., Spivak Yu. M., Moshnikov V. A. Poristye struktury na osnove oksidov alyuminiya dlya solnechnoi energetiki i antiotrazhatel’nykh pokrytii [Porous structures based on aluminum oxides for solar energy and antireflection coatings]. In: Nanostructured oxide materials in modern micro-, nano- and optoelectronics. Ed. by V. A. Moshnikov, O. A. Alexandrova. St. Petersburg: Izd-vo SPbGETU “LETI”, 2017, pp. 32—62. (In Russ.)
18. Muratova E. N., Spivak Y. M., Moshnikov V. A., Shimanova V. V., Petrov D. V., Shemukhin A. A. Influence of technological parameters of nanoporous Al2O3 layers preparation on their structural characteristics. Glass Physics and Chemistry, 2013, vol. 39, no. 3, pp. 320—328. DOI: 10.1134/S1087659613030140
19. Yanagishita T., Kato A., Masuda H. Preparation of ideally ordered through-hole anodic porous alumina membranes by two-layer anodization. Jpn. J. Appl. Phys., 2017, vol. 56, no. 3, p. 035202. DOI: 10.7567/JJAP.56.035202
20. Chen C.-K., Chen S.-H. Multi-electrolyte-step anodic aluminum oxide method for the fabrication of self-organized nanochannel arrays. Nanoscale Res. Lett., 2012, vol. 7, art. no. 122. DOI: 10.1186/1556-276X-7-122
21. Aleksandrova O. A., Aleshin A. N., Belorus A. O., Bobkov A. A., Guz’ A. V., Kal’nin A. A., Kononova I. E., Levitsky V. S., Mazing D. S., Maraeva E.V., Matyushkin L.B., Moskvin P. P., Moshnikov V. A., Muratova E. N., Nalimova S. S., Ponomareva A. A., Pronin I. A., Spivak Yu. M. Novye nanomaterialy. Sintez. Diagnostika. Modelirovanie [New nanomaterials. Synthesis. Diagnostics. Modeling]. St. Petersburg: Izd-vo SPbGETU “LETI”, 2015, 248 p. (In Russ.)
22. Afanasyev A. V., Ilin V. A., Moshnikov V. A., Sokolova Ye. N., Spivak Yu. M. Synthesis of nano- and microporous structures by electrochemical methods. Biotechnosphere, 2011, no. 1–2, pp. 39—45. (In Russ.)
23. Vrublevsky I. A., Chernyakova K. V., Gorbachev D. V., Muratova E. N., Moshnikov V. A. Thermal and electrical characteristics of flat heaters made of aluminum with nanoporous anodic aluminum oxide and a resistive element made of carbon filament. Sb. materialov 28-i Mezhdunarodnoi Krymskoi konferentsii “SVCh-tekhnika i telekommunikatsionnye tekhnologii” = Proceedings of 28th International Crimean Conference “Microwave Engineering and Telecommunication Technologies”. Moscow: KNTTs im. Popova, 2018, pp. 1013—1016. (In Russ.)
Review
For citations:
Muratova E.N., Moshnikov V.A., Chernyakova K.V., Vrublevsky I.A. Investigation of the thermal characteristics of a heating element based on aluminum with nanoporous alumina. Izvestiya Vysshikh Uchebnykh Zavedenii. Materialy Elektronnoi Tekhniki = Materials of Electronics Engineering. 2019;22(4):241-245. (In Russ.) https://doi.org/10.17073/1609-3577-2019-4-241-245