The influence of the velocity regimes on the deformation properties of fibrous materials and fabrics in the course of heat treatment is investigated. An improved device for controlling the heat flows that occur in the process of deformation of textile materials is developed and investigated in order to increase the energy efficiency in the use of the heat carrier and energy conservation systems applied for control of complex multidimensional technological plants based on the S-Sh-2-164ShM tenter drier.
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A. Ye. Polyakov, Ye. A. Ryzhkova, and M. S. Ivanov, Electrotechnical Complexes and Systems of Technological Equipment as Subjects of Control of Energy-Conserving Regimes. Part 2 [in Russian], Kosygin Russian State University of Technology, Design, Art, Moscow (2018), 202 pp.
A. Ye. Polyakov, K. A. Polyakov, et al., Khim. Volokna, No. 3, 58–62 (2014).
A. Ye. Polyakov, M. S. Ivanov, et al., Patent for Useful Model No. 2018144697 (Dec. 17, 2018), Device for Control of Heat Flows in Process of Deformation of Textile Materials [in Russian].
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Translated from Khimicheskie Volokna, No. 2, pp. 57–60, March–April, 2020.
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Polyakov, A.E., Ivanov, M.S., Ryzhkova, E.A. et al. A Moernized Method of Controlling Heat Flows of Process of Deformation of Textile Materials. Fibre Chem 52, 125–128 (2020). https://doi.org/10.1007/s10692-020-10166-x
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DOI: https://doi.org/10.1007/s10692-020-10166-x