06. Investigation in dynamics of sowing machine-tractor assembly unit

https://doi.org/10.31073/agrovisnyk201905-06
Antoschenkov R. V.
Pages: 45-52.

Full article: 
Abstract
The purpose. To study efficiency of use of sowing machine-tractor assembly unit using theoretical and experimental dynamic and power indexes. Methods. Classical mechanics, mathematical simulation, solution of systems of nonlinear differential equations. Experimental researches were lead with application of physical simulation and tests. Results. Three-mass dynamic model of plane-parallel movement of multiple-elements machine-tractor sowing unit in structure of tractor of classical arrangement HTZ-16131 and soil-cultivating unit APP-6 was made. Dynamic model had one degree of freedom. The event was considered of movement of assembly unit at which the angle of rotation of steered wheels was set according to sinusoidal (harmonic) law. Angles of rotation, speeds of movement and forces acting on elements of the assembly unit were calculated. The measuring system of dynamics and energetic of mobile machines was developed for holding experimental researches. The system is designed for determination of kinematic, dynamic, capacity and power characteristics of mobile machines and their elements at road, field and benchmark testing. An innovative component of measuring system is the method of determination of slippage of wheels or driving sprockets. It consists in determination of speed of twirl of the wheel by means of gyroscope and accelerometer. Results of experimental researches which have confirmed adequacy of mathematical model of dynamics of the assembly unit are gained. Conclusions. Angles of rotation of elements of the assembly unit looked like sinus-wave oscillations. It was established that seeder had low average speed of movement and the greatest range of vacillating. During experimental researches of the assembly unit it was established that it works in satisfactory conditions.


Key words: machine-tractor assembly unit, dynamics, theoretical studies, measuring system, experiment.



References
  1. Kjurchev V. M. (2014). Povorotkist MTA na osnovi orno-prosapnogo traktora. Mehanizacija ta elektryfikacija silskogo gospodarstva: Mizhvidomchyj tematychnyj naukovyj zbirnyk. NNC «IMESG». Glevaha. Vyp. 99. T. 2. S. 177–185. [in Ukrainian].
  2. Lebedjev A. T., Kalinin Je. I. (2010). Dynamichna model gruntoobrobnyh mashynno-traktornyh agregativ z pasyvnymy robochymy organamy u skladi energetychnogo zasobu zi zdvojenymy shynamy. Systemy obrobky informacii. № 2(83). S. 109–115. [in Ukrainian].
  3. Jaroshenko P. M. (2008). Matematychna model kombinovanogo posivnogo agregatu. Visnyk Sumskogo nacionalnogo agrarnogo universytetu. Sumy. Vyp. 3 (19). S. 62–66. [in Ukrainian].
  4. Antoshhenkov R. (2013). Teoretycheskye yssledovanyja dynamycheskoj modely kolesnogo traktora klassa 30kN. MOTROL. Commission of motorization and energetics in agriculture: Polish Academy of sciences. Lublin-Rzeslow. Vol. 15. № 7. P. 171–176. [in Ukrainian].
  5. Nadykto V. T. (2003). Osnovy agregatirovanija modulnyh jenergeticheskih sredstv: monografija. Melitopol: KP «MMD». 240 s. [in Russian].
  6. V. Adamchuk, I. Petrychenko, M. Korenko, H. Beloev, B. Borisov. (2015). Study plane-parallel motion movement combined seeding unit. III International scientific and technical congress agricultural machinery. Proceedings. Varna. Vol. 1. PP. 7–11.
  7. Pavljuk A. S., Poddubnyj V. I., Valekzhanin A. I. (2008). Modelirovanie dvizhenija sharnirno-soedinennoj kolesnoj mashiny v Matlab-Simulink. Vestnik Altajskogo gosudarstvennogo agrarnogo universiteta. № 8(46). S. 66–71. [in Russian].
  8. Antoshhenkov R. V. (2017). Dynamika ta energetyka ruhu bagatoelementnyh mashynno-traktornyh agregativ: monografija. Kharkiv: HNTUSG. 244 s. [in Ukrainian].
  9. Antonjuk E. Ja., Matyjasevych V. M. (2002). K teoryy dvyzhenyja sochlenennogo mnogozvennogo avtopoezda. Prykl. mehanyka. T. 38. № 7. S. 138–144. [in Russian].
  10. Andreev Ju. M. (2007). Chislenno-analiticheskoe reshenie obratnoj zadachi dinamiki diskretnyh sistem. Vostochno-evropejskij zhurnal peredovyh tehnologij. № 2/4 (26). S. 10–13. [in Russian].
  11. Antoshhenkov R. V., Antoshhenkov V. M.; (2014). Pat. 92889 Ukraina, MPK V60K 31/00, G05D 3/00. Vymirjuvalna systema dynamichnyh ta tjagovo-energetychnyh pokaznykiv funkcionuvannja mobilnyh mashyn / zajavnyk Antoshhenkov R. V., Antoshhenkov V. M. — № u 2014 03215; zajav. 31.03.14; nadruk. 10.09.14, Bjul. № 17.