08. Mathematical model of oscillating motion of spiral of cleanser of potato from admixtures

https://doi.org/10.31073/agrovisnyk201909-08
Adamchuk V. V., Bulgakov V. M., Golovach I. V., Ruzhylo Z. V.
Pages: 52-58.

Abstract
The purpose. To study oscillating process of working spirals of cleanser of potato from admixtures for intensification and improvement of quality of the process. Methods. Theoretical researches are carried out with the use of basic methods of simulation, higher mathematics, theoretical mechanics and strength of materials. In particular, methods of research of oscillations of elastic and strained Bernulli-Eiler rods are used. Krylov’s special functions, and also methods of creation of programs and numerical modeling by means of PC are applied. Results. New construction of cleanser of heap from admixtures which is applied at digging up of potato from soil is developed and consists of console installed clearing spiral springs. At simultaneous rotational and oscillating movements springs qualitatively clear and carry tubers. Simultaneously spirals self-clean themselves. Theoretical researches of oscillating motion of cleanser made it possible to determine optimum constructive and kinematic parameters. New differential partial equation of oscillations of console cleaning spiral was made. Analytical solution of that equation had allowed to gain the law of oscillating process of cleaning spiral in view of its length for any instant and to evaluate its deformation. Conclusions. At modeling on the PC it has been established that at angular velocity of twirl of spiral equal to 30 rad.   s–1, density of material of spiral equal to 7700 kg   m–3, coefficient of elasticity equal to E = 2   1011 Pa, radius of a bar of cleaning spiral equal to 8,5 mm, and uniformly distributed load, equal to 1000 N   m–1, the full sag of a spiral on its length varies within the limits from 0 up to 0,25 m. That ensures quality of cleaning and transportation of tubers of potato.


Key words: tuber of potato, digging up, soil admixtures, console spiral, oscillations, differential equation, numerical calculations on the PC.



References
  1. Petrov, G.D. (2004). Kartofeleuborochnye mashiny [Potato harvesting machines]. Moskva: Mashinostroenie. [In Russ.].
  2. Batyaev, F.I. (1967). Avtomaticheskaya separatsiya primesey ot klubney (k mekhanizatsii uborki kartofelya) [Automatic separation of impurities from tubers (to the mechanization of harvesting potatoes)]. Potatoes and vegetables, 6, 16–17. [In Russian].
  3. Batyaev, F.I., Karev, Ye.B., Petrov, G.D. (1972). Sostoyanie i perspektivy razvitiya rabochikh organov dlya otdeleniya klubney kartofelya ot primesey pri kombaynovoy uborke [The state and development prospects of the working bodies for separating potato tubers from impurities during combine harvesting]. Moskva. [In Russian].
  4. Vereshchagin, N.I., Pshechenkov, K.A. (1965). Rabochie organy dlya vozdelyvaniya, uborki i sortirovaniya kartofelya [Working bodies for cultivating, harvesting and sorting potatoes]. Moskva: Mashinostroenie. [In Russian].
  5. Yegoshin, A.V., Kropotov, Ye.I. (1991). K voprosu otdeleniya klubney kartofelya ot primesey i gniley. Issledovanie mashin i rabochikh organov dlya vozdelyvaniya i uborki kartofelya, ovoshchnykh i zernovykh kultur [On the issue of separating potato tubers from impurities and rot. The study of machines and working bodies for the cultivation and harvesting of potatoes, vegetables and grain crops]. In Sat. scientific works Nizhny Novgorod Agricultural Institute. (pp. 55–57). N.-Novgorod. [In Russian].
  6. Kolchin, N.N., Furletov, V.M., Arsenev, D.A. (1986). Sostoyanie i perspektivy razvitiya otdeliteley primesey dlya posleuborochnoy obrabotki kartofelya i ovoshchey [Status and development prospects of impurity separators for post-harvest processing of potatoes and vegetables]. Moskva: VISKhOM. [In Russian].
  7. Karwowski, T. (1982).Teoria i konstrukcia maszyn rolniczych. Vol. 3. Warszawa: PWRiL. (In Polish).
  8. Bulhakov, V.M., Zykov, P.Iu. et al. Ochysnyk vorokhu korenebulboplodiv vid domishok [Purifier of Root Bulb Pile Impurities of Ukraine] No. 43907, A 01 D 33/08. Publ. 01/15/2002 Bul. № 1. [in Ukr.].
  9. Bulgakov, V., Ivanovs, S., Adamchuk, V., Ihnatiev, Y. (2017). Investigation of the influence of the parameters of the experimental spiral potato heap separator on the quality of work. Agronomy Research, 1(15), 44–54.
  10. Bulgakov, V., Smolinskiy, S., Frančák, J., Jech, J. (2001). Optimalizovanie konstrukcie rozdruzovaca zemiakov. GRONECH NITRA 2001. Polnohospodarska technika na zaciatku 21 storocia. In Zbornik z medzinarodnej vedeckej konferencie. Slovenska polnohospodarska univerzita v Nitre. (pp. 73–79). Nitra, Slovenska republika. doi:org/10.15584/eti.2017.3.13 [in Slov.].
  11. Mitrofanov V.S. (1940). Fiziko-mekhanicheskie svoystva kartofelya. In Teoriya, konstruktsiya i proizvodstvo selskokhozyaystvennykh mashin (Vol. 5, pp. 629–634). Moskva-Leningrad: Mashgiz. [In Russian].
  12. Vasilenko, P.M. (1996). Vvedenie v zemledelcheskuyu mehaniku [Introduction to agricultural mechanics]. Kiev: Selhozobrazovanie. [In Russ.].
  13. Favorin, M.V. (1997). Momenty inercii tel [Moments of inertia of bodies]. Reference. Moskva: Mashinostroenie. [In Russ.].
  14. Bulgakov, V., Smolinsky, S., Plizga, K. (2002). Theoretical Research on Parameters of Working Bodies in the Spiral Separator of Potato Lots at Working Loading. Polish Academy of Sciences Branch in Lublin. Commission of Motorization and Energetics in Agriculture. Vol. 2. (pp. 31–34). Lublin, Poland. (In Polish).
  15. Svetlitskiy, V.A. (1967). Mekhanika sterzhney [The mechanics of the rods]. In 2 Vol., Vol. 2. Dinamika [Dynamics]. Moskva: Nauka. [In Russian].
  16. Chelomey, V.N. (1989). Izbrannye Trudy [Selected Works]. Moskva: Mashinostroenie. [In Russian].
  17. Zaika, P.M. (1992). Izbrannye zadachi zemledelcheskoy mekhaniki [Selected Agricultural Tasksmechanical mechanics]. Kiev: USKhA. [In Russian].
  18. Timoshenko, S.P. (1959). Kolebaniya v inzhenernom dele [Fluctuations in Engineering Business]. Moskva: Fizmatgiz. [In Russian].
  19. Chelomey, V.N. (Ed.). (1981). Vibratsii v tekhnike [Vibration in technology]. A reference. In 2 Vols, Vol. 1. Moskva: Mashinostroenie. [In Russian].
  20. Dolgov, N.M. (1996). Elementy dinamiki sistem na podvizhnykh deformiruemykh osnovaniyakh [Elements of system dynamics on movable deformable bases]. Kiev: Tekhnika. [In Russian].
  21. Dolgov, N.M. (1988). Vysshaya matematika [Higher mathematics]. Kiev: Vishcha shkola. [In Russian].
  22. Ananev, I.V., Timofeev, P.G. (1965). Kolebaniya uprugikh sistem v aviatsionnykh konstruktsiyakh i ikh dempfirovanie [Vibrations elastic systems in aircraft structures and their damping]. Moskva: Mashinostroenie. [In Russian].