1. Altınkaynak M., Gupta M., Spalding S., Crabtree., 2011.: Melting in a Single Screw Extruder: Experiments and 3D Finite Element Simulations. Magazine International Polymer Processing XXVI (2), 182-196.
2. Basov N., Broy W., 1985.: Engineering plastics. – M.: Chemistry. - 528. (in Russian)
3. Brian Black W., 2000.: Wall slip and boundary effects in polymer shear flows, A dissertation at the University of Wisconsin – Madison, [Electronic resource] http://grahamgroup.che. wisc.edu / pub/ black_dissert.pdf
4. Dyadichev V., Tereshenko T., Dyadychev A., 2010.: Problems of specified quality polymer mixture preparation when utilizing waste in coextrusion equipment, TEKA Commission of motorization and power industry in agriculture, Vol. Xa, 113–118.
5. Dyadichev V., Levanichev V., Tereshtchenko T., 2003.: Method description rheology of the polymer melt in a wide range of shear rates. Resource-saving technologies of production and fabrication of materials in mechanical engineering: Coll. Science. etc. Part 2. - Lugansk: publ EUNU. Dal, 68-72. (in Russian)
6. Dyadichev V., Tereshenko T., Dyadycheva I., 2011.: Methods of choice of melt filtration system in the process of secondary polymer material extrusion, TEKA Commission of motorization and power industry in agriculture, Vol. XIa, 56–62.
7. Han C., 1979.: Rheology in polymer processing. tr. from Eng. ed. Vinogradov, G.V. Fridman, M.L. – M.: Chemistry. - 368. (in Russian)
8. Hatzikiriakos S., Dealy J., 1991.: Wall slip of molten high density polyethylene. [Electronic resource ] Department of Chemical Engineering, McGill University// Access mode http://www.chem.mtu.edu/~fmorriso/cm4655/Hazi kiriakos_Dealy.pdf.
9. Kosarev A., 2003.: The unity of the dynamics and mechanisms of turbulence eddies and vortices Benard, [Electronic resource] / Agency for Science and Technology Information / / Access mode http://www.sciteclibrary.ru/rus/catalog/pages/4917 .html. (in Russian)
10. Levanichev V., 2013.: Model of the polymer melt flow, Eastern-European journal of enterprise technologies, Vol 4, No 7(64), 39-41. (in Russian)
11. Michaeli W., 1992.: Extrusion dies for plastics and rubber: design and engineering computations. Hanser Publishers. Munich, 340.
12. Rauwendaal C., 2008.: Рolymer extrusion . tr. from english. ed. A.J. Malkin - St. Petersburg. Profession. - 768. (in Russian)
13. Rauwendaal C., 2008.: Identification and elimination of problems in extrusion. tr. from english. ed. Volodin, V. - St. Petersburg.: Profession, 328. (in Russian)
14. Tadmor Z., Gogos C., 1984.: Theoretical Foundations of polymer processing. tr. from english. – M.: Chemistry. - 632. (in Russian)
15. Tager A., 2007.: Physical chemistry of polymers. 4th edition. – M.: Scientific World. - 576. (in Russian)
16. Torner R., Akutin M., 1986.: Equipment for plastics processing plants. – M.: Chemistry. - 400. (in Russian)
17. Torner R., 1977.: Theoretical foundations of polymer processing (mechanical processes). . – M.: Chemistry. - 464. (in Russian)
18. Ulshin V., Levanichev V., Tereshenko T., 2011.: Research of process flow of the polymer melt in the channels coextrusion equipment, Lugansk: publ EUNU. Dal, No 3(157). (in Russian)
19. Vinogradov G., Malkin A., 1977.: Rheology of polymers. – M.: Chemistry. - 434. (in Russian)