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ABBASPOUR-GILANDEH, Y. − HASANKHANI-GHAVAM, F. − SHAHGOLI, G. – SHRABIAN, V. R. − ABBASPOUR-GILANDEH, M. 2018. Investigation of the effect of soil moisture content, contact surface material and soil texture on soil friction and soil adhesion coefficients. In Acta Technologica Agriculturae, vol. 21, no. 2, pp. 44−50.Search in Google Scholar

ARAYA, K. − KAWANISHI, K. 1985. Soil failure by introducing air under pressure. In Transactions of the ASAE, vol. 27, no. 5, pp. 1292–1298.Search in Google Scholar

BELOUSOV, S. V. − TRUBILIN, E. I. 2013. The development of a reversible plough design for heavy soil treatment. In Science of Kuban, no. 1, pp. 31–37. (In Russian: Razrabotka konstruktsii lemeshnogo plugadly a obrabotkity azholikh pochv)Search in Google Scholar

BULGAKOV, V. − PASCUZZI, S.−ADAMCHUK, V. − IVANOVS, S. – PYLYPAKA, S. 2019. A theoretical study of the limit path of the movement of a layer of soil along the plough mouldboard. In Soil & Tillage Research, vol. 195, pp. 1−11.Search in Google Scholar

GODWIN, R. J. 2007. A review of the effect of implement geometry on soil failure and implement forces. In Soil & Tillage Research, vol. 97, no. 2, pp. 331–340.Search in Google Scholar

KIRYUKHIN, V. G. − CHIRKOV, G. N. − MILTSEV, A. I. 1974. Test results of plow with plastic moldboards. In Tractors and Agricultural Machines, vol. 12, pp. 19–20. (In Russian: Rezultaty i spytaniy pluzhnykh korpusov s plastmassovymi otvalami)Search in Google Scholar

LOVEYKIN, V. − DYACHENKO, L. 2012. Methods of experimental investigation into parameters of vibroploughs with hydraulic vibrators. In Vestnik KHNADU, vol. 57, pp. 161–165. (In Ukrainian: Metodika eksperementalnogo doslidzhennia parametria vibropluga z gidravlichnimi vibratorami)Search in Google Scholar

LUKASHOK, M. A. − KORNEV, D. V. 2009. Method of friction decrease on plow’s bottom. In Almanac of Modern Research and Education, vol. 25, no.6, pp. 113–115. (In Russian: Metodsnizheniya treniya, voznika y ushegona korpusr pluga)10.1038/modpathol.2008.214Search in Google Scholar

NADYKTO, V. – KOTOV, O. 2015. UA 97828, G 01 N/00. Method for Determining Soil Density. Ukraine.Search in Google Scholar

NIYAMAPA, T. − SALOKHE, V.M. 2000. Force and pressure distribution under vibratory tillage tool. In Journal of Terramechanics, vol. 37, no. 3, pp. 139–150.Search in Google Scholar

NKAKINI, S. O. – AKOR, A. J. 2012. Modeling tractive force requirements of wheel tractors for disc ploughing in sandy loam soil. In International Journal of Engineering and Technology, vol. 2, no. 10, pp. 1707−1716.Search in Google Scholar

OWEN, R. R. – CYCLER, J. E. – TRIBBLE, R. T. 1959. Patent no. 2,913,060. Moldboard Plow with Plastic Resin Covering.Search in Google Scholar

PANOV, A. 2015. Statistical evaluation of quality of rotary tiller performance. In VESTNIK of Federal State Educational Institution of Higher Professional Education “Moscow State Agroengineering University named after V.P. Goryachkin”, vol. 66, no. 2, pp. 14–27.Search in Google Scholar

PAVLYUK, A. S. – SOTNIKOV, D. V. 2014. Decreasing methods of agricultural machines draft resistance. In Polzunov Vestnik, vol. 1, no. 4, pp. 7–13 (In Russian: Metody snizheniyaty a govogosoprotivleniy a pchvo obrabatyvayuchikh mashin)Search in Google Scholar

POLÁKOVÁ, N. – DOSTÁL, P. 2019. Titanium and stainless steel MIG LSC welding. In Acta Technologica Agriculturae, vol. 22, no. 2, pp. 56–59.Search in Google Scholar

ROMANUK, N. N. – AGEYCHIK, V. A. – NUKESHEV, S. O. – KONDRATENYA, V. N. 2016. Original construction of mounted vibrating plow. In Actual Problems of Formation of Personnel Potential for the Innovation Development of AIC. Minsk: BSATU, pp. 353–357. Available at http://rep.bsatu.by/handle/doc/1090Search in Google Scholar

SHMULEVICH, I. – ASAF, Z. − RUBINSTEIN, D. 2007. Interaction between soil and a wide cutting blade using the discrete element method. In Soil & Tillage Research, vol. 97, no. 1, pp. 37–50.Search in Google Scholar

UTKIN, L. A. 1986. Electro-hydraulic effect and its application in industry. Leningrad: Mashinostroenie, 253 pp. (In Russian: Elektrogidravlicheskiieffekt I ego primenenie v promishlennosti).Search in Google Scholar

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