Article


Cover

№4 2019

Title

Increase of efficiency of actuators of spacecraft thermal control system in outer space

Authors

1N.V. Lukonin, 1E.N. Golovenkin, 1G.V. Dmitriev, 2I.Ya. Shestakov

Organizations

1JSC Academician M. F. Reshetnev Information Satellite Systems
Zheleznogorsk, Krasnoyarsk region, Russian Federation
2Reshetnev Siberian State University of Science and Technology
Krasnoyarsk, Russian Federation

Abstract

The article deals with the methods of transfer of thermal energy of electric heaters to the nodes and devices of non-pressurized spacecraft, which are part of the spacecraft in the target orbits in the conditions of regular use. The basic technical characteristics of perspective electric heaters for operating conditions are developed, the model of regular position of electric heaters allowing to define ways of increase of efficiency and efficiency of electric heaters is developed. The main results of the development of flexible film electric heaters various design using materials produced by the domestic industry and manufactured using a new method based on the method of photolithography and etching the resistive layer, allowing to implement new functionality and improve efficiency of electric heaters, the experiments confirming the calculations in conditions simulating operational influences on electric heaters. The using of flexible film electric heaters increased efficiency in the existing and future spacecraft can improve the efficiency of the thermal control system as a whole, improves manufacturability.

Keywords

electric heater, spacecraft, thermal control system, efficiency, photolithography

References

[1] Lukonin N. V., Shestakov I. Ya. Sposob izgotovleniya gibko-ploskih elektronagrevatelej kosmicheskih letatel'nyh apparatov [Method for the manufacture of flexible-flat electric heaters for spacecraft] // Reshetnev readings: materials of the XIX International scientific-practical conference. Krasnoyarsk, 2015. (In Russian)

[2] Lukonin N. V., Shestakov I. Ya., Golovenkin E. N., Mikhnev M. M., Morozov P. S. Razrabotka elektronagrevatelej povyshennoj effektivnosti kosmicheskih apparatov negermetichnogo ispolneniya [Development of electric heaters of increased efficiency of unpressurized spacecraft] // Naukoemkie tekhnologii, no. 12, 2017, pp. 38-47. (In Russian)

[3] Lukonin N. V., Polyakova G. V., Shusherina G. P., Snytko D. V. Sposob izgotovleniya gibko-ploskogo elektronagrevatelya [A method of manufacturing a flexible-flat electric heater]. Patent RU 2602799, 2016, bulletin no. 32. (In Russian)

[4] Favorsky O. N., Kadaner Ya. S. Voprosy teploobmena v kosmose [Issues of heat transfer in space]. Moscow, Higher School, 1967, 240 p. (In Russian)

[5] Altgauzen A. P., Gutman M. B., Malyshev S. A. Nizkotemperaturnyj elektronagrev [Low-temperature electric heating]. Moscow, Energy, 1978, 207 p. (In Russian)

[6] Lukonin N. V., Dmitriev G. V., Morozov P. S., Shestakov I. Ya. Sposob izgotovleniya elektronagrevatelej povyshennoj effektivnosti kosmicheskih apparatov negermetichnogo konstruktivnogo ispolneniya [Method for the manufacture of electric heaters of increased efficiency for unpressurized spacecraft] // Reshetnev readings: materials of the XXI International scientific-practical conference. Krasnoyarsk, 2017. (In Russian)

[7] Lukonin N. V., Shestakov I. Ya., Golovenkin E. N., Mikhnev M. M., Maksimov I. A., Pankina S. N. Development of electric heaters with increased efficiency ofunpressurized designed space vehicles // MIST Aerospace 2018. IOP Conf. Series: Materials Science and Engineering, 2018, vol. 450, 022007. doi:10.1088/1757-899X/450/2/022007

[8] Lukonin N. V., Shestakov I. Ya., Sheverdov V. F., Morozov P. S., Lavrinenko A. I. Sposob izgotovleniya gibkoploskogo elektronagrevatelya [Method for manufacturing a flexible-flat electric heater]. Application RU 2018140353, 2018. (In Russian)

[9] Lukonin N. V., Tolmachev S. A., Suntsov B. B., Morozov E. A., Runova G. N., Chernokov D. O., Gnitiev V. P. Sposob poverhnostnogo montazha elektroradioizdelij radioelektronnoj apparatury [Method for surface mounting of electronic equipment of electronic equipment]. Patent RU 2698306, 2019, bulletin no. 24. (In Russian)

[10] Fedotov A. Ya., Paul G. Fotolitografiya i optika [Photolithography and optics]. Moscow, Soviet Radio, 1974, 392 p. (In Russian)

[11] Lykov A. V. Teoriya teploprovodnosti [Theory of thermal conductivity]. Moscow, Higher School, 1967, 599 p. (In Russian)



For citing this article

Lukonin N.V., Golovenkin E.N., Dmitriev G.V., Shestakov I.Ya. Increase of efficiency of actuators of spacecraft thermal control system in outer space // Spacecrafts & Technologies, 2019, vol. 3, no. 4, pp. 209-215. doi: 10.26732/2618-7957-2019-4-209-215


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