[1]
I. Fortelný, R. Rosenberg, J. Kovář: The effect of composition and rheological properties of component on the morphological structure of polymer blends. In: Polymer Blends. 32nd Microsymposium, Praha, s. p-98. (1989).
Google Scholar
[2]
J.S. Lipatov and col.: J. of Appl. Polym. Sci, 26, p.499 (1981).
Google Scholar
[3]
H. J Van Oen: Colloid Interface Sci., 40, p.448 (1972).
Google Scholar
[4]
K. Min, J.L. White, J.F. Fellers: Polymer Eng. Sci., 24, p.1327 (1984).
Google Scholar
[5]
Nadella, H. P., Henson, H. M., Spruiell, J. E., White, J. L. : J. Appl. Polym. Sci., 21, p.3003 (1977).
Google Scholar
[6]
K.K. Toray: Chem. Abstract, 18, No. 102, p.76 (1985).
Google Scholar
[7]
G.M. Jordhamo, J.A. Manson, J.A., L.H. Sperling: Polymer Eng. Sci, 26, p.517 (1986).
Google Scholar
[8]
D.R. Paul, C. Newmann: Polymer Blends. New York, 453 p. (1978).
Google Scholar
[9]
E. Ružinská: Modification of fibre-forming polymers for preparation of special composite materials. Chemické listy, Vol. 104, p.507 5L-14. ISSN 0009-2770. (2010).
Google Scholar
[10]
E. Ružinská, A. Danihelová, M. Jablonski, K. J. Krajewski (2012).
Google Scholar
[11]
E. Ružinská, K. J. Krajewski: Evaluation the supramolecular structure bicomponent fibers for preparation of filters for efficient reduction of hazardous substances in the process of surface treatment of wood. Annals of Warsaw University of Life Sciences – SGGW, No. 84, pp.137-141. ISSN 1898-5912 (2013).
Google Scholar
[12]
J. Martinka, K. Balog, T. Chrebet, E. Hroncová, J. Dibdiaková: Effect of oxygen concentration and temperature on ignition time of polypropylene. Journal of Thermal Analysis and Calorimetry, Vol. 110, No. 1, pp.485-487. (2012).
DOI: 10.1007/s10973-012-2546-5
Google Scholar
[13]
E. Ružinská, K. J. Krajewski: Analysis of selected factors of the environment in the technological processes of surface treatment of wood with the presence of hazardous substances Annals of Warsaw University of Life Sciences – SGGW, No. 84, pp.133-136. ISSN 1898-5912 (2013).
Google Scholar