Scientific equipment for the space experiment «Pipe» on the RS of the ISS
Heading:
1Kostornov, AG, 2Frolov, GA, 1Shapoval, AA, 1Moroz, AL, 3Shapoval, IV, 4Elanskii, Yu.A, 4Tikhii, VG, 5Gusarova, IA, 6Surdu, MN, 7Lameko, AL 1Frantsevich Institute for Problems of Materials Science , National Academy of Sciences of Ukraine, Kyiv, Ukraine 2I.N. Frantsevich Institute for Material Science Problems, NAS of Ukraine, Kyiv, Ukraine 3Frantsevich Institute for Problems of Materials Science , National Academy of Sciences of Ukraine, Kyiv, Ukraine 4Yangel Yuzhnoye State Design Office, Dnipropetrovsk, Ukraine 5Yangel Yuzhnoye State Design Office, Dnipro, Ukraine 6State Scientific and Industrial Enterprize "Spetsavtomatika" 7State Enterprise "Ukrmetrteststandart", Kiev, Ukraine |
Kosm. nauka tehnol. 2009, 15 ;(3):05-10 |
https://doi.org/10.15407/knit2009.03.005 |
Publication Language: Russian |
Abstract: The state of the preparation of the scientific equipment for realization of the space experiment «Pipe» is considered. Our results of investigation of heat pipes with new composition structures providing the possibility to work against the gravity are given. The complete set of the scientific equipment for the space experiment «Pipe» is presented.
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Keywords: composition structures, heat pipes, space experiment |
References:
1. Voronin V. G., Revyakin A. V., Sasin V. Ya., and Tarasov V. S. Low-temperature heat pipes for flying apparatuses, 200 p. (Mashinostroenie, Moscow, 1976) [in Russian].
2. Kostornov A. G. Permeable Metal Fiber Materials, 128 p. (Tekhnika, Kiev, 1983) [in Russian].
3. Kostornov A. G. Materials Science of Dispersed and Porous Metals and Alloys, Vol. 2, 550 p. (Naukova Dumka, Kiev, 2002) (Vols. 1-2; Vol. 2) [in Russian].
4. Kostornov A. G., Gulya V. M., Elanskiy Yu. A., et al. Specific Features of Performing Space Experiment "Trubka" (The Pipe) in Pressurized Compartment and on External Surface of Russian Segment of the International Space Station. Problemy upravlenija i informatiki, No. 1, 114– 120 (2008) [in Russian].
https://doi.org/10.1615/JAutomatInfScien.v40.i1.60
https://doi.org/10.1615/JAutomatInfScien.v40.i1.60
5. Kostornov A. G., Surdu M. N., Frolov G. A., et al. Space Experiment "Trubka": Automatic Control and System of Temperature Measurement. Problemy upravlenija i informatiki, No. 3, 127–132 (2008) [in Russian].
https://doi.org/10.1615/JAutomatInfScien.v40.i5.50
https://doi.org/10.1615/JAutomatInfScien.v40.i5.50
6. Skorokhod V. V., Kostornov A. G., Frolov G. O. Preparation of space experiments "Material-Friction" and "Pipe" for the study of antifriction materials and heat pipes onboard the ISS RS. Space Research in Ukraine, 2002 —2004, 71–76 (NKAU, Kyiv, 2004) [in Russian]. See also
7. Spielrein E. E. (Ed.) Heat Pipes, 420 p. (Mir, Moscow, 1972) [in Russian].
8. Favorsky O. N., Kadaner Ya. S. Questions of heat transfer in space: textbook for students, 2nd enl. ed., 280 p. (Vyssh. shk., Moscow, 1972) [in Russian].
9. Chi S. W. Heat Pipe: Theory and Practice, Transl. from Eng., 208 p. (Mashinostroenie, Moscow, 1981) [in Russian].
10. Goncharov K. A., Barantsevich V. L., Orlov A. A. Experience of development of heat pipes applied in Russian spacecrafts. In: Heat Pipes, Heat Pumps, Refrigerators: V Minsk International Seminar, Minsk, Belarus, September 8-11, 2003. (Minsk, 2003).