The principle of identity of conditions for zonal tests of grain harvesters
https://doi.org/10.26898/0370-8799-2020-3-9
Abstract
About the Author
G. E. ChepurinRussian Federation
Professor, Corresponding Member of the Russian Academy of Sciences, Doctor of Science in Engineering, Head of Research Division
PO Box 463, SFSCA RAS, Krasnoobsk, Novosibirsk Region, 630501
References
1. Zhalnin E.V. Raschet osnovnykh parametrov zernouborochnykh kombainov [Calculation of the main parameters of combine harvesters]. M.: VIM Publ., 2001, 106 p. (In Russian).
2. Zhalnin E.V., Baranov A.A., Suleimanov M. Srednestaticheskaya propusknaya sposobnost’ zernouborochnykh kombainov [Average throughput of grain harvester]. Traktory i sel’skokhozyaistvennye mashiny [Tractors and Agricultural Machinery], 1997, no. 8, pp. 25–27. (In Russian).
3. Zan’ko N.D. Metodika otsenki propusknoi sposobnosti molotilki i opredeleniya klassa zernouborochnogo kombaina [Methods of assessing thresher throughput and determination of combine harvester class]. Traktory i sel’skokhozyaistvennye mashiny [Tractors and Agricultural Machinery], 1999, no. 6, pp. 26–28. (In Russian).
4. Zan’ko N.D., Osipov N.M. Otsenka propusknoi sposobnosti molotilki s sistemoi intensivnoi separatsii zerna [Assessing thresher throughput with the system of intensive grain separation]. Traktory i sel’skokhozyaistvennye mashiny [Tractors and Agricultural Machinery], 1996, no. 10, pp. 13–15. (In Russian).
5. Penkin S.M. Otsenka propusknoi sposobnosti zernouborochnykh kombainov po izvestnym parametram [Assessment of grain harvesters’ throughput by the known parameters]. Traktory i sel’skokhozyaistvennye mashiny [Tractors and Agricultural Machinery], 2003, no. 1, pp. 24–26. (In Russian).
6. Pronin V.M., Prokopenko V.A. Tekhnikoekonomicheskaya otsenka effektivnosti sel’skokhozyaistvennykh mashin i tekhnologii po kriteriyu chasovykh ekspluatatsionnykh zatrat [Feasibility study of the effectiveness of agricultural machinery and technology by the criterion of hourly operating costs]. M.: Stolichnaya tipografiya Publ., 2008. (In Russian).
7. Tabashnikov A.T., Fedorenko V.F., Buklagin D.S. Sistema kriteriev kachestva, nadezhnosti, ekonomicheskoi effektivnosti sel’skokhozyaistvennoi tekhniki [The system of criteria for quality, reliability, economic efficiency of agricultural machinery]. M.: Rosinformagrotekh Publ., 2010, 188 p. (In Russian).
8. Chepurin G.E., Ivanov N.M., Kuznetsov A.V. Uborka i posleuborochnaya obrabotka zernovykh kul’tur v ekstremal’nykh usloviyakh Sibiri [Harvesting and post-harvest processing of grain crops in extreme conditions of Siberia]. M.: Rosinformagrotekh Publ., 2011, 175 p. (In Russian).
9. Zhalnin E.V., Tsench Yu.S., P’yanov V.S. Metodika analiza tekhnicheskogo urovnya zernouborochnykh kombainov po funktsional’nym i konstruktivnym parametram [Methods of analysis of the technical level of grain harvesters by their functional and constructive parameters]. Sel’skokhozyaistvennye mashiny i tekhnologii [Agricultural Machinery and Technologies], 2018, vol. 12, no. 2, pp. 4–8. (In Russian).
10. Burak P.I., Pronin V.M., Prokopenko V.A. Sravnitel’nye ispytaniya sel’skokhozyaistvennoi tekhniki [Comparative tests of agricultural machinery]. M.: Rosinformagrotekh Publ., 2013, 416 p. (In Russian).
11. Chepurin G.E., Tsegel’nik A.P. Metodika opredeleniya sebestoimosti zerna pri obmolote zernovykh s uchetom potrebnosti v kombainakh i kombainerakh [Methods of identifying grain production cost when threshing grain crops in view of the need in combine harvesters and combine operators]. Sibirskii vestnik sel’skokhozyaistvennoi nauki [Siberian Herald of Agricultural Science], 2019, vol. 49, no. 2, pp. 85–92. (In Russian).
12. Chepurin G.E., Ivanov N.M. Teoreticheskie osnovy razrabotki tekhnologicheskogo pasporta zernouborochnogo kombaina [Theoretical framework for developing a technological passport of grain harvester]. Sibirskii vestnik sel’skokhozyaistvennoi nauki [Siberian Herald of Agricultural Science], no. 2, 2016, pp. 96–104. (In Russian).
13. Chepurin G.E., Ivanov N.M. Obosnovanie razrabotki tekhnologicheskogo pasporta zernouborochnykh kombainov [Substantiation of developing a technological passport for a combine harvester]. Sel’skokhozyaistvennye mashiny i tekhnologii [Agricultural Machinery and Technologies], 2016, no. 4, pp. 25–31. (In Russian).
14. Chepurin G.E. Zernouborochnomu kombainu tekhnologicheskii pasport –polyu – operatsionnuyu kartu [Technological passport – for a grain harvester, an operation process chart for a field]. Dostizheniya nauki i tekhniki APK [Achievements of Science and Technology of AIC], 2017, vol. 31, no. 4, pp. 76–79. (In Russian).
15. Chepurin G.E., Tsegel’nik A.P. Struktura i soderzhanie tekhnologicheskogo pasporta i operatsionnykh kart zernouborochnykh kombainov [The structure and content of the technological passport and operation process charts of grain harvesters]. Sibirskii vestnik sel’skokhozyaistvennoi nauki [Siberian Herald of Agricultural Science]. 2018, vol. 48, no. 3, pp. 50–57. (In Russian).
Review
For citations:
Chepurin G.E. The principle of identity of conditions for zonal tests of grain harvesters. Siberian Herald of Agricultural Science. 2020;50(3):83-93. (In Russ.) https://doi.org/10.26898/0370-8799-2020-3-9