Design of a dynamometric module for studying a motoblock share-moldboard plow and its practical testing by using reverse engineering

Автор: Kupryashkin Vladimir F., Ulanov Aleksandr S., Naumkin Nikolay I.

Журнал: Инженерные технологии и системы @vestnik-mrsu

Рубрика: Технологии и средства механизации сельского хозяйства

Статья в выпуске: 3, 2018 года.

Бесплатный доступ

Introduction. Plowing is one of the main operations in the cultivation of crops. It requires significant energy costs and efficient use of soil-cultivating machines, e. g. walking tractor (motoblock) with plow in this case. The analysis of work of the walking tractor shows that the object of the disturbances in plowing is its working body, in this case a plow, which is influenced by normal and shear interaction forces between the plow body and soil (R, R) which can be determined by spatial dynamometric disruption of the body. The aim ofthe study is to develop a dynamometric module and to research share-mouldboard plow of the motoblock using reverse engineering based on 3D scan. Materials and Methods. According to relevant literature and patent sources it is need to design a simple and functional device for the spatial dynamometrical body of share-mouldboard plow. This devise should allow to identify the forces R R and Rz with high accuracy by dynamometrical measurements. We developed the device providing the measurement of all forces R and Rz by dynamometrical measurements. The authors received a certificate for rationalization proposal No. 1173 "Experimental module for dynamometrical measurements of share-mouldboard plow body" (22.01.2018. National Research Mordovia State University). Results. We designed and manufactured a dynamometric module, defined the geometry of this device, and tested the plow of the motoblock in the laboratory with identification of graphical and approximating dependency power of the interaction of the plow with soil. Conclusions. Obtained approximating equations allow us to analyze the nature of the change of interaction forces of share-mouldboard plow body of motoblock with the soil and calculate the limits their variation. In addition, the use of the power of approximating dependences allow us to determine the extent of their influence on the stability of the plow and the traction characteristics of the motoblock.

Еще

3d-сканер, soil, motoblock, plow body, stability of motion, dynamometric module, strain gauge sensor, 3d scanner

Короткий адрес: https://sciup.org/147220589

IDR: 147220589   |   DOI: 10.15507/0236-2910.028.201803.400-415

Статья научная