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Force Analysis of Material Movement in a Horizontal Mixer of a Hydrolytic Chamber: a Case Study of Soybean Meal Processing

https://doi.org/10.22314/2073-7599-2025-19-1-35-40

EDN: OHFKIO

Abstract

The paper addresses the increasing demand for plant-based protein in the compound feed industry. It emphasizes the role of grain legumes; particularly soy; one of the most protein-rich crops; as a primary feed protein source. Analytical studies have identified key strategies for developing a universal compound feed production line that integrates high-protein ingredients derived from soybean meal. To enhance protein digestibility and biological value; extruded soybean meal undergoes enzymatic hydrolysis in a continuous horizontal mixer. Additionally; the paper describes material movement within a hydrolytic chamber equipped with a screw-driven working unit. (Research purpose) The primary objective of the study is to conduct a force analysis of material movement in a horizontal screw mixer to determine the optimal structural and operational parameters of the hydrolytic chamber. (Materials and methods) The analysis focuses on the system of forces acting on a material particle resting on the helical surface of a horizontal screw and pressed against the inner wall of the casing. (Results and discussion) By projecting all active and assumed inertial forces acting on a material particle; a system of equations was derived. The study found that the power required to drive the screw shaft depends on multiple factors; including the condition of the screw and casing surfaces; particle mass; screw geometry; polar coordinates defining the particle’s position within the screw; and the kinematic parameters of its rotational motion. (Conclusions) The developed mathematical model of material movement; which accounts for the physical and mechanical properties of the material and the geometry of its flow; facilitates the selection of optimal structural and operational parameters for the mixer. This ensures efficient material transport during the design process.

About the Authors

M. G. Zagoruiko
Federal Scientific Agroengineering Centre VIM
Russian Federation

Michail G. Zagoruiko, Dr.Sc.(Eng.); associate professor; leading researcher

Moscow



M. E. Belyshkina
Federal Scientific Agroengineering Centre VIM
Russian Federation

Marina E. Belyshkina, Dr.Sc.(Agri.); ^ief researcher

Moscow



I. A. Bashmakov
Federal Scientific Agroengineering Centre VIM
Russian Federation

Igor A. Bashmakov, Ph.D.(Eng.); senior researcher

Moscow



A. M. Maradudin
Saratov State University of Genetics; Biotechnology and Engineering named after N.I. Vavilov
Russian Federation

Alexey M. Maradudin, Ph.D.(Eng.); associate professor

Saratov



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Review

For citations:


Zagoruiko M.G., Belyshkina M.E., Bashmakov I.A., Maradudin A.M. Force Analysis of Material Movement in a Horizontal Mixer of a Hydrolytic Chamber: a Case Study of Soybean Meal Processing. Agricultural Machinery and Technologies. 2025;19(1):35-40. (In Russ.) https://doi.org/10.22314/2073-7599-2025-19-1-35-40. EDN: OHFKIO

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