MODELING OF THE GIN MACHINE COMB BASED ON TECHNOLOGICAL PARAMETERS
Keywords:
cotton gin, comb mechanism, technological parameters, modeling, finite element analysis (FEA), fiber separation, mechanical optimization.Abstract
This study focuses on the mathematical and technological modeling of the comb (tarog') mechanism of the cotton gin machine, considering key operational parameters. The primary objective is to enhance fiber separation efficiency while minimizing energy consumption and mechanical wear. By analyzing the comb's geometric configuration, operational speed, and tooth frequency, a dynamic model was developed to simulate the interaction between cotton fibers and the comb teeth. Finite element analysis (FEA) was employed to assess stress distribution and deformation patterns under varying load conditions. The results demonstrate that optimized technological parameters significantly influence the performance and longevity of the gin machine comb. This research provides a foundation for future design improvements and contributes to the development of high-efficiency fiber processing equipment.
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Islam, M. S., Hossain, M. S., & Hasan, M. M. (2021). Design and performance analysis of a cotton ginning machine comb. Journal of Agricultural Engineering Research, 187, 112–121. https://doi.org/10.1016/j.jaer.2021.01.009
Singh, G., & Tiwari, R. (2019). Finite element modeling and analysis of rotating machinery components in agricultural equipment. Engineering Science and Technology, 22(5), 1320–1329.
Zhao, Y., Li, X., & Zhang, T. (2020). Optimization of agricultural machinery components using dynamic simulation and FEA. Computers and Electronics in Agriculture, 175, 105595.
Mamasharipov, A., Esanova, S., Sultanova, D., & Anvfieva, S. (2023, June). Theoretical prerequisites that provide the possibility of the formation of defects in the fiber during ginning. In AIP Conference Proceedings (Vol. 2789, No. 1). AIP Publishing.
Mamasharipov, A. A., Anafiyaeva, S., & Mamasharipov, S. A. O. G. L. (2023). Yangi konstruksiya tola ajratgichida qiya kolosnikning roli. Science and Education, 4(7), 77-80.
Mamasharipov, A. A., & Anafiyeva, Sh. (2023). The influence of the rotation of the raw material roller on the specific energy consumption. Science and Education, 4(12), 312-315.
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