Open Access
Issue |
E3S Web of Conf.
Volume 365, 2023
IV International Scientific Conference “Construction Mechanics, Hydraulics and Water Resources Engineering” (CONMECHYDRO - 2022)
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Article Number | 04001 | |
Number of page(s) | 14 | |
Section | Mechanization, Electrification of Agriculture and Renewable Energy Sources | |
DOI | https://doi.org/10.1051/e3sconf/202336504001 | |
Published online | 30 January 2023 |
- Makhkamov R.G. Fundamentals of the process of interaction of surfaces of solids with fibrous mass. p. 96 Tashkent (1979) [Google Scholar]
- Miroshnichenko G.I. Fundamentals of designing cotton primary processing machines. p.241 Tashkent (1998) [Google Scholar]
- Muradov R.M. Mukhametshina E.T. Analysis of research on the improvement of elements of pneumatic transport installations in order to reduce the damage of cotton seeds. Universum: Technical Sciences, 6(75), pp. 46–49. Russia (2020) [Google Scholar]
- Negmatov S.S., Abed N.S., Gulyamov G., Eshkobilov O.Kh. Features of contact interaction of composite polymer materials with raw cotton in the process of friction. IOP Conference Series: Materials Science and Engineering, 1030, (2020) [Google Scholar]
- Abed N.S., Eshkobilov O.Kh. Gulyamov G., Tuhtasheva M.N. Engineering composite materials for the cotton processing industry. E3S Web of Conferences 264, (2021). doi: 10.1051/e3sconf/202126405053 [CrossRef] [EDP Sciences] [PubMed] [Google Scholar]
- Eshkobilov O.Kh. Gulyamov G.Composite polypropylene polymer materials that work in contact with raw cotton. In E3S Web of Conferences 264, 05055 (2021) doi: 10.1051/e3sconf/202126405055 [CrossRef] [EDP Sciences] [PubMed] [Google Scholar]
- Eshkobilov O.Kh.,Negmatov S.S., Abed N.S., Gulyamov G. Investigation of the process of electrification of composite polymer coatings in the case of frictional interaction with the fibrous mass. AIP Conference Proceedings 2432, (2022) https://doi.org/10.1063/5.0089709. [Google Scholar]
- Eshkobilov O.Kh., Tuhtasheva M.N. Development of a disc tribometer and determination of its optimal parameters and modes of contact interaction of composites with raw cotton. International Journal of Mechatronics and Applied Mechanics, 1(10), pp. 214–221 (2021) doi:10.17683/ijomam/issue10/v1.28. [Google Scholar]
- Eshkobilov O., Negmatov S., Abed N., Gulyamov G. Anti-Friction-Wear-Resistant Composite Polypropylene Materials Working in Conditions of Contact with Raw Cotton. Journal of optoelectronics laser. 41(6), 2022. doi: 10050086.2022.06.97 [Google Scholar]
- Eshkabilov Kh., Berdiyev Sh. Structure and properties of the modified diffusion nitride-oxide surface layer. In E3S Web of Conferences 264, 05055 (2021). doi:10.1051/e3sconf/202126405054 [CrossRef] [EDP Sciences] [PubMed] [Google Scholar]
- Eshkabilov Kh., Berdiyev Sh., Kamolov B. Hardening of cutting tools by combined gas nitriding method. IOP Conference Series: Materials Science and Engineering, 1030(1), (2021) doi:10.1088/1757-899X/1030/1/012019 [CrossRef] [Google Scholar]
- Negmatov S.S., Saipidinov A.A., Irgashev A.S., Eshkabilov Kh.K. Modeling the process of real contact area formation during friction interaction of fibrous masses with polymer counterbody surface. Soviet Journal of Friction and Wear, 6(4), pp. 125–128 (1985) [Google Scholar]
- Abed-Negmatova N.S., Negmatov S.S., Gulyamov G., Negmatov J.N. Antifriction wear-resistant composite materials and details made from them for working bodies of cotton machines and mechanisms. Advanced Materials Research. 616–618, pp. 2005–2008, (2012) doi: 10.4028/www.scientific.net/AMR.616-618.2005. [CrossRef] [Google Scholar]
- Abed-Negmatova N.S., Negmatov J., Gulyamov G., Yuldashev A., Eminov Sh., Bozorboev Sh., Aripova A., Negmatov S., Xojimuradov D. Composite polymer materials and the details made of them for cotton machines and mechanisms.Advanced Materials Research. 413, pp. 535–538. (2012) doi:10.4028/www.scientific.net/AMR.616-618.2005 [Google Scholar]
- Abed-Negmatova N.S., Gulyamov G., NegmatovS.S., HodzhikarievD.M., Negmatov J.N., EminovSh.Sh., BozorbaevSh., Aripova A., Negmatova Durability of composite polymer materials working in contact with pulp. 6th International conference on times of polymers (top) and composites. AIP Conference Proceedings. 1459, (2012). doi: 10.1063/1.4738470 [Google Scholar]
- Yuldashev A.Kh., Negmatov S.S., Abed-Negmatova N.S., Abdurakhmanov A.G., Bozorov Sh.A., Eminov Sh.Sh., Aripova A., Khodjikariev D.M. Melt index of low-density polyethylene and its effect on rotational molding. 6th International conference on times of polymers (top) and composites. AIP Conference Proceedings. 1459(1) doi:10.1063/1.4738491 [Google Scholar]
- Negmatov S.S., Shernaev A.N., Gulyamov G., Abed-Negmatova N.S., SaidovM.M., MusabekovD.H., NegmatovSh.S., and Negmatova M.I. Wear-resistant polymer composite filled with finely dispersed wood and carbon/graphite powders. TableofContents.6th International conference on times of polymers (top) and composites. AIP Conference Proceedings. 1459, doi: 10.1063/1.4738486 [Google Scholar]
- Musabekov D., Abed-Negmatova N.S., Gulyamov G., Shernaev A., Khodjimuradov D., Negmatov S.S. Effective Composite Materials for Friction Pairs of Working Bodies of Cotton Machines.Advanced Materials Research. 413, pp. 548–550 (2012) doi:10.4028/www.scientific.net/AMR.413.548. [Google Scholar]
- Negmatov S.S., Abed N.S., Gulyamov G., Eshkobilov O.Kh. Installation and methodology for determining of antifrictional properties of antistatic-heat-conducting composite polymeric materials interacting with fibrous mass (cotton-raw). Technical science and innovation, 2, pp. 20–23. Тashkent, (2018) [CrossRef] [Google Scholar]
- Negmatov S.S., Eshkobilov O.Kh., Abed N.S., Negmatova K.S., Tulaganova V. Theoretical basics of contact interaction of machinery antifriction composite polymer materials with fibrous mass (raw cotton). Advanced Materials Research. pp. 160–166, Switzerland (2018) [Google Scholar]
- Amirov G.A. Investigation of the influence of mechanization means and pneumatic transport installations on fiber quality. p. 26 Tashkent (1976) [Google Scholar]
- Negmatov S.S., Abed N.S., Gulyamov G., Eshkobilov O.Kh., Тukhtasheva М.N. Methods for studying the tribological properties of antifriction-wear-resistant antistatic-heat-conducting composite polymer materials with fibrous mass. Composite materials, 1, pp. 86–89. Таshkent (2018) [Google Scholar]
- Negmatov S.S., Abed N.S., Gulyamov G., Eshkobilov O.Kh., Тukhtasheva М.N. On the problem of developing methodological foundations of the method for studying the properties of anti-friction-wear-resistant antistatic-heat-conducting composite polymer materials operating under conditions of interaction with pulp. Composite materials, 1, pp. 99–100, Таshkent (2018) [Google Scholar]
- Negmatov S.S., Abed N.S., Gulyamov G., Тukhtasheva M.N., Eshkobilov O.Kh. Study of the strength properties of antifriction antistatic-heat-conducting composite materials based on polyolefins. Innovative technologies, 4(40), pp.33–37 Kаrshi (2020) [Google Scholar]
- Negmatov S.S., Abed N.S., Gulyamov G., Eshkobilov O.Kh., Тukhtasheva M.N. Installation and method for determining the antifriction properties of antistatic-heat-conducting composite polymeric materials interacting with raw cotton. Mechanic problems, 2, pp. 66–70. Tаshkent (2019) [Google Scholar]
- Negmatov S.S., Gulyamov G., Abed N.S., Eshkobilov O.Kh., Тukhtasheva М.N. Method for determining the values of electrostatic charges and temperatures occurring in the friction zone in the tribosystem. Composite-fibrous materials. Composite materials, 1, pp. 79–81 Таshkent (2019) [Google Scholar]
- Negmatov S.S., Abed N.S., Gulyamov G., Eshkobilov O.Kh., Тukhtasheva М.N. Development of a method for determining the intensity of wear of anti-friction-wear-resistant antistatic-heat-conducting composite polymer materials and coatings based on them when interacting with pulp. Composite materials, 2, pp. 75–77. Таshkent (2019). [Google Scholar]
- Eshqobilov O.Kh., Tukhtasheva M.N. Investigation of antifriction properties of composite epoxy material in interaction with raw cotton. International Journal of Mechatronics and Applied Mechanics, 12, pp. 134–139 (2022) doi:10.17683/ijomam/issue12.20 [Google Scholar]
- Saipidinov A., Umarov U.H., Jalalov T. Investigation of the formation of FPC composite polymer materials in interaction with fibrous mass. Abstracts of reports of the All-Union Conference on Composite Polymer Materials and their application in the National economy. pp. 126–128 Tashkent (1983) [Google Scholar]
- Negmatov S.S., Dzhumabaev A.B., Irgashev A.A. Investigation of the possibility of using the bulk mass of raw cotton when determining the coefficient of friction of a polymer-cotton raw. Reports of the All-Union Symposium on Mechanical Emission and Mechanochemistry of Solids. pp. 3–7, Tashkent (1981) [Google Scholar]
- Abed N.S., Gulyamov G., Eshkobilov O.Kh., Тukhtasheva М.N. Evaluation of the frictional properties of antistatic-heat-conducting composite polymer materials when interacting with raw cotton. International symposium on innovative scientific conference “Integration and integration of science and education” /International scientific-practical conference. pp.39–41. Таshkent (2018) [Google Scholar]
- Negmatov S.S., Abed N.S., Gulyamov G., Eshkobilov O.Kh. Investigation of the effect of temperature and electric charge on the coefficient of friction of a composite material when interacting with raw cotton. Innovative technologies, 3(39), pp. 55–59, Kаrshi, (2020) [Google Scholar]
- Negmatov S.S., Gulyamov G., Ulmasov T.U., Abed N.S., Eshkobilov O.Kh., Saidova M.M., Bozorboyev Sh.A., Тukhtasheva M.N., Eminov Sh. Investigation of the technological process of contact interaction of surfaces of metal working bodies of machines with raw cotton. Composite materials, 1, pp. 120–124, Таshkent (2020) [Google Scholar]
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