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Basic trends in the improvement of domestic equipment for mixing particulate materials

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References

  1. A. V. Katalymov and V. A. Lyubartovich, Feeding of Particulate and Viscous Materials [in Russian], Izd. Khimiya, Leningrad (1990).

    Google Scholar 

  2. Mixers for Particulate and Pasty Materials. Catalog [in Russian], TsINTIkhimneftemash, Moscow (1985).

  3. Yu. I. Makarov, Equipment for Mixing Paniculate Materials [in Russian], Mashinostroenie, Moscow (1973).

    Google Scholar 

  4. Yu. I. Makarov, S. S. Kashkovskii, and I. I. Bagrintsev, “Determination of the type of mixer for particulate materials using a nomogram,” Khim. Neft. Mashinostr., No. 3, 27–28 (1980).

    Google Scholar 

  5. A. A. Aleksandrovskii, F. G. Akhmadiev, and V. S. Churakov, “Mathematical modeling of the kinetics of processing heterogeneous systems using the theory of discontinuous Markov Processes,” in: Current Equipment for the Processing of Heterogeneous Media [in Russian], Lensovet LTI, Mezhvuzovskii Sbornik, Leningrad (1982), pp. 10–14.

    Google Scholar 

  6. F. G. Akhmadiev, Methods of Calculating the Combined Effect of Hydrodynamic and Mechanical Processes of Chemical Technology in Heterogeneous Media, Doctoral Dissertation in Engineering Sciences, KKhTI, Kazan' (1976).

    Google Scholar 

  7. V. V. Kafarov, I. N. Dorokhov, and S. Yu. Arutyunov, Systems Analysis of Chemical Engineering Processes [in Russian], Nauka, Moscow (1985).

    Google Scholar 

  8. V. P. Polyanskii, Yu. I. Makarov, and G. I. Kitaev, Optimization of Batch Mixers of Particulate Materials, Abstracts of Reports at the All-Union Conference “The technology of particulate materials” [in Russian], Vol. 2, YaPI, Yaroslavl' (1989), pp. 49–50.

    Google Scholar 

  9. V. P. Polyanskii and G. I. Kitaev, A New Approach to Mathematical Modeling of a Single Type of Process for Mixing Heterogeneous Systems, Abstracts of Reports at the All-Union Conference “The technology of particulate materials” [in Russian], Vol. 2, YaPI, Yaroslavl' (1989), pp. 95–96.

    Google Scholar 

  10. D. O. Bytev, Stochastic Modeling of the Processes of Mixing Particulate Materials, Abstracts of Reports at the All-Union Conference “The technology of particulate materials” [in Russian], Vol. 2, YaPI, Yaroslavl' (1989), pp. 74–77.

    Google Scholar 

  11. Yu. N. Chupin, N. N. Torubarov, and E. N. Fursov, Mixers with Intracyclic Changes in the Kinematic Parameters of Agitators, Abstracts of Reports at the All-Union Conference “The technology of particulate materials” [in Russian], Vol. 2, YaPI, Yaroslavl' (1989), p. 48.

    Google Scholar 

  12. V. M. Bakhtyukov, Biplanetary Mixers, Express Information, Series KhM-1 [in Russian], No. 2, TsINTIkhimneftemash, Moscow (1984), p. 9.

    Google Scholar 

  13. I. A. Stoikov, P. S. Rastegaev, G. G. Berezina, and O. D. Dotsenko, Mixer-Disaggregators for Finely Dispersed Particulate Materials, Express Information, Series KhM-1 [in Russian], No. 10 (1987).

  14. V. B. Modestov and L. F. Postil'ga, A Study of the Operating Efficiency of Horizontal Mixers, Abstracts of Reports at the All-Union Conference “The technology of particulate materials” [in Russian], Vol. 2, YaPI, Yaroslavl' (1989), p. 43.

    Google Scholar 

  15. N. I. Mozgov, Modeling and Intensification of the Process of Vibrational Mixing, Candidate's Dissertation in Engineering Sciences, Ivanovo Chemical Engineering Institute, Ivanovo (1980).

    Google Scholar 

  16. Yu. A. Biryukov, L. N. Bogdanov, and V. P. Dorogin, The Use of Air-Operated Circulation Mixers in the Production of Granulated Plastics, Abstracts of Reports at the All-Union Conference “The technology of particulate materials” [in Russian], Vol. 2, YaPI, Yaroslavl' (1989), p. 60.

    Google Scholar 

  17. N. A. Derevyakin, The Design of Vortex Units for the Treatment of Particulate Materials, Abstracts of Reports at the All-Union Conference “The development of electromagnetic vortex units for improving technological processes” [in Russian], Tambov Institute of Chemical Engineering, Tambov (1989).

    Google Scholar 

  18. A. M. Khanov, V. A. Shiperov, and M. N. Ignatov, High-Speed Batch Mixer-Granulator, Abstracts of Reports at the All-Union Conference “The technology of particulate materials” [in Russian], Vol. 2, YaPI, Yaroslavl' (1989), p. 103.

    Google Scholar 

  19. S. I. Baturina, The Effect of the Temperature Zone on the Quality of Polymer Composites Obtained in a Centrifugal Mixer-Disperser, Abstracts of Reports at the All-Union Conference “The technology of particulate materials” [in Russian], Vol. 2, YaPI, Yaroslavl' (1989), pp. 127–128.

    Google Scholar 

  20. Z. K. Goliakberov, L. G. Golubev, and A. K. Lodygin, Mathematical Modeling of the Combined Process of Mixing and Drying, Abstracts of Reports at the All-Union Conference “The technology of particulate materials” [in Russian], Vol. 2, YaPI, Yaroslavl' (1989), p. 130.

    Google Scholar 

  21. Yu. A. Verigin, Kinematic Analysis of the Operating Processes as a Means of Developing New Equipment for Grinding and Mixing Materials, Abstracts of Reports at the All-Union Conference “The technology of particulate materials” [in Russian], Vol. 2, YaPI, Yaroslavl' (1989), pp. 147–148.

    Google Scholar 

  22. Yu. I. Makarov, “The problems in mixing particular materials,” Zh. Vses. Khim. Obshch. im. D. I. Mendeleeva,33, No. 4, 384–389 (1988).

    Google Scholar 

  23. V. N. Ivanets, Intensification of the Process of Mixing Highly Dispersed materials by Directed Flow Control, Doctoral Dissertation in Engineering Sciences, Odessa Technological Institute, Odessa (1989).

    Google Scholar 

  24. A. I. Zaitsev, Mixers with Dispersed Flows of Particulate Materials, Abstracts of Reports at the All-Union Conference “The technology of particulate materials” [in Russian], Vol. 2, YaPI, Yaroslavl' (1989), pp. 78–81.

    Google Scholar 

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Translated from Khimicheskoe i Neftyanoe Mashinostroenie, No. 10, pp. 5–8, October, 1993.

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Makarov, Y.I., Sal'nikova, G.D. Basic trends in the improvement of domestic equipment for mixing particulate materials. Chem Petrol Eng 29, 463–467 (1993). https://doi.org/10.1007/BF01152014

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