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Aliyev, О., Botirov, А., Коsimov, Х., & Rakhimov, F. (2022). Ways to increase the work efficiency of working bodies machined with a shaped cutter. Proceedings of the International conference on Humanities, Education and Sciences, 247–250. Los-Angeles, Californiya, USA.
Gadoev, N., Muradov, R., Kosimov, Kh., & Rakhimov, F. (2022). Study of raw cotton movement in the working chamber of a stone trap. (In Russian). Proceedings of the International Conference on Research in Humanities, Applied Sciences and Education Hosted (pp. 352–355). Berlin, Germany.
Jamolov, A., Muradov, R., Kozokov, S., & Abdukarimov, T. (2023). Theoretical analysis of the process of cleaning cotton from small contaminants on a drum with an inclined splitter. AIP Conference Proceedings (vol. 2789 (1)). AIP Publ.
Kamoliy, I., Muradov, R., & Rakhimov, F. (2022). The role of the vacuum valve in the technological machinery of cotton ginning enterprises. (In Uzbek). Economic, innovative-technological problems and international experience of increasing the efficiency of product production based on deep processing of raw materials in cotton textile clusters: Proceedings of the International Conference (pp. 188–192). Namangan: Namangan Engineering and Technological Institute.
Kosimov, H., Muradov, R., & Rakhimov, F. (2022b). New technology of removing heavy impurities separated from cotton from the working chamber of the dryer. (In Uzbek). Modern researches, innovations, current problems and development trends of technology and technology: Proceedings of the International scientific and technical conference (vol. 8-9, pp. 729–730). Jizzakh.
Kosimov, H., Saidmakhamadov, N., & Rakhimov F. (2022c). Improvement of the incinerator device for separating heavy impurities from the cotton composition. (In Uzbek). The role and importance of digital life and social sciences in raising a mature generation: current problems and prospects: Proceedings of the Scientific and Practical Conference (pp. 225–228). Andijan.
Kosimov, Kh., Karimov, A., Muradov, R., & Rakhimov, F. (2020a). Ways to increase the efficiency of the refrigerator. (In Uzbek). Scientific and Technical Journal, (1), 205–212. Namangan Engineering and Technological Institute.
Kosimov, Kh., Muradov, R., & Rakhimov, F. (2022e). Improving the process of cleaning cotton raw materials from heavy impurities. (In Uzbek). Ensuring modern integration of competitive personnel training in higher education institutions: problems and solutions: Proceedings of the Republican Scientific and Technical Conference (pp. 411–413). Tashkent: Tashkent State Technical University named after Islam Karimov.
Kosimov, X., Muradov, R., & Rakhimov, F. (2022d). Ways to reduce cotton particles mixed with waste in the dryer. (In Uzbek). Problems in textile and light industry in the context of science and production integration and ways to overcome them: Proceedings of the International scientific-practical conference (vol. 1, pp. 180–182). Namangan: Namangan Engineering and Technological Institute.
Kosimov, X., Muradov, R., & Rakhimov, F. (2022f). Devices for separating heavy impurities from cotton content and their shortcomings. (In Uzbek). Scientific basis of application of innovative technologies in modern engineering: experience and prospects: Proceedings of the International ScientificPractical Conference (pp. 244–246). Namangan: Namangan Engineering and Technological Institute.
Meliboyev, U. (2020). To‘qimachilik sanoati texnologik jarayonlarini modellashtirish asoslari [Basics of modeling technological processes of the textile industry]. (In Uzbek). Namangan.
Mukhametshina, E. T., Jamolov, A., & Muradov, R. M. (2020). Study on possibilities of scarring ways to reduce in the cotton cleaning process. IOP Conference Series: Earth and Environmental Science, 614 (1). IOP Publ.
Muradov, R., Karimov, A., Kosimov, Kh., & Rakhimov, F. (2020a). Ways to reduce the falling of a piece of cotton into a pocket in a dryer. (In Uzbek). Mechanical Problems, 4, 67–70.
Muradov, R., Kasymov, H., Karimov, A., & Rakhimov, F. (2020b). Theoretical Study of the Movement of New Impurities and Heavy Impurities. The Аmerican Journal of Engineering and Technology, 2(7), 18–27.
Mutalov, M., Abdukarimov, T., Sarimsakov, O., & Rakhimov, F. (2021). Modeling the movement of cotton in a pneumatic transport pipeline. (In Uzbek). DGU, 18102.
Rajapova, N., Salomova, M., Muradov, R., & Rakhimov, F. (2019). Create a Device that can Remove Heavy Components from the Chassis Chamber. International Journal Advanced Research Science, Engineering and Technology, 6(7), 10041–10047.
Rakhimov, F. H. (2023). Improvement of the ginning device in order to preserve the natural properties of cotton [PhD thesis]. (In Uzbek). Namangan.
Rakhimov, F., Akhmedov, M., Kosimov, Kh., & Muradov, R. (2022). Analysis of technological processes that cause fiber loss during initial processing of cotton. (In Uzbek). Innovative solutions of technical, engineering and technological problems of production: Proceedings of the International Scientific and Technical Conference (pp. 799–801). Jizzakh: Jizzakh Polytechnic Institute.
Rakhimov, F., Kosimov, X., Muradov, R., & Gadayev, N. (2023). Increase the efficiency of the stamping device by installing a router in the working chamber. AIP Conference Proceedings (vol. 2789 (1)). AIP Publ.
Salomova, M., Kasimov, Kh., & Rakhimov, F. (2019). Improvement of pneumatic transport device elements (In Uzbek). Mechanical Problems, (1), 101–105.
Salomova, M., Oripov, N., Sarimsakov, O., & Rakhimov, F. (2020). Pneumatic transport orchestra of cotton wool and energy resource management technology. (In Uzbek). Scientific and Technical Journal, (2), 138–144.
Abdukarimov, T., Kasimov, H., & Rakhimov F. (2021a). Determining the efficiency of cleaning by experimenting in a device that separates heavy impurities from cotton. (In Uzbek). Science and Technology Development, (6), 229–235. Bukhara Institute of Engineering and Technology.
Abdukarimov, T., Shamshiddinov, I., Rakhimov, F., & Muradov, R. (2021b). Increasing the efficiency of stone catcher device by installing a cutter in the working chamber. (In Russian). Vanguard of Youth Science, 186–192.