Characteristic Property of Adsorption Cleaning of Recirculated Air for Heat Chambers for Electric Testing of Electronic Devices

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A scientifically proven energy-saving unit for keeping up of recirculated air rated parameters in specialized "clean" premises has been developed. The novelty of the design solution is covered by RF patent of invention.

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1313-1318

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January 2015

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[1] M. Hayakama, Cleanrooms: ln. with Japan. World, Japan, 1990, p.456.

Google Scholar

[2] N.S. Kobelev, T.V. Alyabjeva, V.N. Kobelev, Teplovlazhnostnoj mode ventilated air gap. . Kursk, 2010. pp.73-77.

Google Scholar

[3] S.G. Emelyanov, V.N. Kobelev, Patent. 2267831 Russian Federation: MPK7 H 01 L 21/66. Heat chamber for testing electronic products / applicant and patentee of Kursk. State. tehn. Univ. №2009114608 / 22; appl. 07. 09. 2010; publ. 25. 04. 2012, Bull. number 7.

Google Scholar

[4] V.A. Babayants, B.K. Zinoviev, V. I . Karaksyan, Calculation of the ambient air in clean rooms [Text] / [et al. ] / Surveys in electronic engineering. Series 7: technology, production and equipment. Vol. 1 (146). M .: CSRI Electronics, 1988, pp.59-63.

Google Scholar

[5] A.P. Merkulov, Vortex effect and its application in engineering / Moscow. Mechanical Engineering, 1969. 369 p.

Google Scholar

[6] V.V. Baturin, Simulation of mechanical and natural ventilation / Proc. scientific. tr. Institute of Occupational Safety All. 1961. №3. pp.18-21.

Google Scholar

[7] V.N. Mel'kumov, K.A. Sklyarov, S.N. Kuznetsov, Non-stationary processes of formation of system of ventilation air flow in rooms / Math. OrelGTU. A series of Building. Transport №3 (537). ,. 2007. S. 36-39.

Google Scholar

[8] A.I. Dolgushev, V.I. Karaksyan, I.A. Murovin, Calculation of the hydraulic regime in cleanroom air conditioning system / Math. universities. Episode 5: Construction and architecture. 1988. pp.74-78.

Google Scholar

[9] A.A. Coul', F.S. Rezefald, Gas Purification / Moscow, Chemical Engineering, 1968. 198 pp.

Google Scholar

[10] E.N. Serpionova, Industrial adsorption of gases and vapors / Moscow.: Vushaya shkola. 1969. 388 p.

Google Scholar

[11] Vatin, N.I., Chechevichkin, V.N., Chechevichkin, A.V., Shilova, Y., Yakunin, L.A. Application of natural zeolites for aquatic and air medium purification (2014) Applied Mechanics and Materials, pp.565-572.

DOI: 10.4028/www.scientific.net/amm.587-589.565

Google Scholar

[12] E.V. Ryabkov, Investigation of some questions the process of deep air drying on synthetic zeolites.: dissertation of PhD. tehn. Sciences E.V. Ryabkov, Moscow, 1982. 117 pp.

Google Scholar

[13] A.I. Sholokhov, A study of some issues of application of silica gels for air drying [Text]: dis. of PhD. tehn. science / A.I. Sholokhov, Moscow, 1981. 135 p.

Google Scholar

[14] V.N. Kobelev, S.S. Fedorov, D.V. Titov, Reducing the energy intensity of the production of compressed air / Vibrating machines and technology: Coll. scientific. works. Kursk, 2005, pp.231-234.

Google Scholar

[15] V.N. Kobelev, S.A. Romanchenko, Improving the efficiency of blast hole drilling rigs thermodynamic / Actual problems of mining nedrovedeniya: the materials area, scientific-practical conference. / Mosc. gov. Open University Press. Moscow, 2009, pp.135-141.

Google Scholar

[16] N.S. Kobelev, The methodology for calculating the automated trap in ventilation systems of external building structures / Industrial and civil construction №1. 2009, pp.26-31.

Google Scholar

[17] V.N. Bogoslovskiy, O.J. Kokorin, L.V. Petrov, Air conditioning and refrigeration systems / Moscow, Stroyizdat, 1985, p.367.

Google Scholar

[18] V.S. Yezhov, B.C. Yezhov, T.V. Alyabiev, Aerodynamics ventilated air purification devices on the fine moisture for electronic products / Scient. Vestn. Voronezh State. Arch-build. Univ. Series Building and Architecture, № 1. 2009, pp.15-21.

Google Scholar

[19] V.N. Kobelev, D.V. Avdyakov, A.V. Medvedev, Increased operational reliability of constructions with a significant area of glazing / Safety Building Fund of Russia. Problems and solutions: materials Intern. acad. readings. Kursk, 2005, pp.15-18.

Google Scholar

[20] N.S. Kobelev, V.M. Butorin, T.V. Alyabiev, Information protection of automated control testing of electronic products in the climatic chamber. Information-diagnostic and control systems: Col. Materials Intern. scientific-tehn. conf. Kursk, 2009, pp.192-196.

Google Scholar

[21] S.G. Emelyanov, Patent №2390686 Russian Federation: MPK7 F 16 T 1/22. The steam trap / applicant and patentee, Kursk State. tehn. Univ. № 2008144598/06; appl. 11. 11. 2008; publ. 27. 05. 2010, Bull. №15.

Google Scholar

[22] N.S. Kobelev, V.M. Butorin, T.W. Alyabiev, Patent №82648 Russian Federation: MPK7 In 60 T 17/06. Apparatus for removing condensate from the main tank locomotive / applicant and patentee, Kursk State. tehn. Univ. № 2008136508/22; appl. 10. 09. 2008; publ. 10. 05. 2009, Bull. Number 13.

Google Scholar

[23] S.G. Emelyanov, Patent 87, 831 Russian Federation: MPK7 H OIL 21/66. Heat chamber for testing of electronic products / applicant and patentee Kursk State. tehn. Univ. №2009114608 / 22; appl. 17. 04. 2009; publ. 20. 10. 2009, Bull. Number 29.

Google Scholar

[24] V.N. Kobelev, S.S. Fedorov, D.V. Titov, Automation as one of the ways of energy saving for heating points / Safety Building Fund of Russia. Problems and Solutions: Proceedings of the international. acad. readings. Kursk, 2005, pp.119-123.

Google Scholar

[25] N.S. Kobelev, Patent 2263848 Russian Federation: MPK7 F 24 D 3/02. A device for controlling the temperature of the room air / applicant and patentee Kursk State. tehn. Univ. №99122128 / 06; appl. 22. 03. 2004; publ. 10. 11. 2006, Bull. №31.

Google Scholar

[26] N.S. Kobelev, Patent 2267831 Russian Federation: MPK1 H OIL 21/66. Heat chamber for testing of electronic products / applicant and patentee, Kursk State. tehn. Univ. №2004108257 / 28; appl. 22. 03. 2004; publ. 10. 01. 2006, Bull. №1.

Google Scholar

[27] N.S. Kobelev, Patent 2422437 Russian Federation: MPK7 F 28 F 25/06, F 28 C 1/00. Cooling towers / applicant and patentee South West. gos. Univ. № 2008152986/06; appl. 31. 12. 2008; publ. 10. 02. 2011, Bull. №4.

Google Scholar

[28] M.J. Poz, A.M. Kudryavtsev, M. Davydov, The contact plate teploobmenniki for disposal systems / Water Supply and Sanitary Engineering. 1987. №8. pp.10-12.

Google Scholar

[29] E.K. Kalinin, G.A. Dreiser, A.K. Kozlov, Investigation of heat transfer enhancement in the longitudinal beams washed tubes with different relative pitches / Ingen. -phys. journal. №2. 1972, pp.242-247.

Google Scholar

[30] N.S. Kobelev, Patent 62033 Russian Federation: MPK7 In 01 D 53/18, B 01 D 46/26. Apparatus for gas treatment / applicant and patentee Kursk State. tehn. Univ. № 2006140395/22; appl. 15. 11. 2006; publ. 27. 03. 2007, Bull. №9.

Google Scholar

[31] S.S. Kutateladze, Wall turbulence / Science, Sib. Dep-tion, 1973, p.227.

Google Scholar

[32] D. Kern, A. Kraus, Development of the heat exchange surface / Energy, 1977, p.464.

Google Scholar