Affiliation:
1. Federal Scientific Agroengineering Center VIM
Abstract
The paper explores the design characteristics of tillage tools during the period 1900-1950. (Research purpose) The primary objective of the paper is to undertake a retrospective analysis of the design characteristics of tillage tools used on blackened soils in the first half of the 20th century. (Materials and methods) The paper analyzes the stages involved in the creation and improvement of horse-drawn and tractor plows. The findings reveal the following categories of plows: suspended, front, frame, shuttle (balance), and reversible. (Results and discussion) The designs of horse-drawn and early tractor plows are examined. The paper highlights the benefit of balanced and reversible tools such as plowing without the formation of ridges and furrows, attributed to the alternating operation of right-handing and left-handing bodies. It is revealed that the development of wide-cut arable units occurred due to the modernization of frame sections and the possibility of their restructuring into three- and four-hull versions. It is determined that the October Revolution Plant and the All-Union Scientific Research Institute of Mechanization and Electrification of Agriculture (VIME), the predecessor to the Federal National Research Center VIM, were the pioneers behind the creation of the initial five-furrow plow in 1936, boasting a working width of 35 centimeters. (Conclusions) With the advent of wide-cut arable units, there was a reduction in labor intensity and energy consumption during the soil cultivation process. Plows equipped with screw moldboards were commonly employed for more effective incorporation of plant residues.
Publisher
FSBI All Russian Research Institute for Mechanization in Agriculture (VIM)
Reference10 articles.
1. Tsench Yu.S., Maslov G.G., Trubilin E.G. K istorii razvitiya sel’skokhozyaystvennoy tekhniki [To the history of agricultural machinery development]. Vestnik Bashkirskogo gosudarstvennogo agrarnogo universiteta. 2018. N 3 (47). 117-123 (In Russian). DOI: 10.31563/1684-7628-2018-47-3-117-123. EDN: XZFHML.
2. Tsench Yu.S. The main stages of agriculture mechanization in Russia. Agricultural Mechanization in Asia, Africa and Latin America. 2020. Vol. 51. N3. 69-73 (In English). EDN: KAYQWX.
3. Lobachevskiy Ya.P., Liskin I.V., Sidorov S.A., et al. Razrabotka i tekhnologiya izgotovleniya pochvoobrabatyvayushchikh rabochikh organov [Working out and production technique of soil cultivating working tools]. Sel’skokhozyaystvennye mashiny i tekhnologii. 2016. N4. 3-8 (In Russian). EDN: WLZXPD.
4. Lobachevskiy Ya.P., Tsench Yu.S. Printsipy formirovaniya sistem mashin i tekhnologiy dlya kompleksnoy mekhanizatsii i avtomatizatsii tekhnologicheskikh protsessov v rastenievodstve [Principles of forming machine and technology systems for integrated mechanization and automation of technological processes in crop production]. Sel’skokhozyaystvennye mashiny i tekhnologii. 2022. Vol. 16. N4. 4-1 (In Russian). DOI: 10.22314/2073-7599-2022-16-4-4-12. EDN: IDJFYV
5. Liskin I.V., Lobachevskiy Ya.P., Mironov D.A., et al. Rezul’taty laboratornykh issledovaniy pochvorezhushchikh rabochikh organov [Laboratory study results of soil-cutting operating elements]. Sel’skokhozyaystvennye mashiny i tekhnologii. 2018. Vol. 12. N4. 41-47 (In Russian). DOI: 10.22314/2073-7599-2018-12-4-41-47. EDN: UZLCMO.