[1]
R. M. Nedderman, Statics and Kinematics of Granular Materials, Cambridge University Press, (2005).
Google Scholar
[2]
J. M. Ottino, D. V. Khakhar, Mixing and segregation of granular materials, Annual Review of Fluid Mechanics. 32 (2000) 55-91.
DOI: 10.1146/annurev.fluid.32.1.55
Google Scholar
[3]
S. Radl, E. Kalvoda, B. J. Glasser, J. G. Khinast, Mixing characteristics of wet granular matter in a bladed mixer, Powder Technology. 200, 3 (2010) 171-189.
DOI: 10.1016/j.powtec.2010.02.022
Google Scholar
[4]
A. S. Mendez, G. de Carli, C. V. Garcia, Evaluation of powder mixing operation during batch production: application to operational qualification procedure in the pharmaceutical industry, Powder Technology. 198, 2 (2010) 310-313.
DOI: 10.1016/j.powtec.2009.11.027
Google Scholar
[5]
J. Boss, Solid mixing process (in Polish), PWN, Warszawa – Wrocław, (1987).
Google Scholar
[6]
A. Santomaso, M. Olivi, P. Canu, Mechanisms of mixing of granular materials in drum mixers under rolling regime, Chemical Engineering Science. 59, 16 (2004) 3269-3280.
DOI: 10.1016/j.ces.2004.04.026
Google Scholar
[7]
G.V. Barbosa-Cánovas, E. Ortega-Rivas, P. Juliano, H. Yan, Food Powders Physical Properties, Processing and Functionality, Springer-Verlag, New York, (2005).
Google Scholar
[8]
R. Choldrich, Fundamentals of particle technology. Midland Information Technology and Publishing, Loughborough, (2002).
Google Scholar
[9]
J. Bridgwater, Mixing of powders and granular materials by mechanical means-a perspective, Particuology. 10, 4 (2012) 397-427.
DOI: 10.1016/j.partic.2012.06.002
Google Scholar
[10]
L. Obregón, A. Realpe, C. Rinaldi, C. Velázquez, Mixing of granular materials. Part I: Effect of periodic shear, Powder Technology. 197 (2010) 9-16.
DOI: 10.1016/j.powtec.2009.08.014
Google Scholar
[11]
A. F. Revuzhenko, Mechanics of granular media, Springer Science & Business Media, (2006).
Google Scholar
[12]
N. Harnby, An engineering view of pharmaceutical powder mixing, Pharmaceutical science & technology today. 3, 9 (2000) 303-309.
DOI: 10.1016/s1461-5347(00)00283-2
Google Scholar
[13]
I. Bauman, D. Ćurić, M. Boban, Mixing of solids in different mixing devices, Sadhana. 33, 6 (2008) 721-731.
DOI: 10.1007/s12046-008-0030-5
Google Scholar
[14]
http: /consumasz. pl/mieszalnik-bebnowy-typ-mbs/, accessed: 21. 02. (2015).
Google Scholar
[15]
http: /www. arcon-foodpharma. com. pl/pl/zastosowanie/farmaceutyki/mieszanie-pl/mieszalniki-produkcyjne, accessed: 21. 02. (2015).
Google Scholar
[16]
http: /consumasz. pl/mieszalnik-wstegowy-typ-m-01/, accessed: 21. 02. (2015).
Google Scholar
[17]
J. B. Królczyk, A. Rezwiakow, M. Tukiendorf, Mixing of biomass and coal in a static mixer as an example of technological solutions involving implementation of renewable energy sources, Ecol CHEM ENG S. 4, 21 (2014) 685-696.
DOI: 10.1515/eces-2014-0050
Google Scholar
[18]
J. B. Królczyk, The use of cluster analysis method to describe the mixing process of the multi-element granular mixture, Transactions of FAMENA. XXXVII, 4 (2014) 43-54.
Google Scholar
[19]
J. B. Królczyk, An attempt to predict quality changes in a ten-component granular system, VJESNIK-Technical Gazette. 21, 2 (2014) 255-261.
Google Scholar
[20]
J. Bridgwater, Mixing of particles and powders: Where next? Particuology. 8, 6 (2010) 563-567.
DOI: 10.1016/j.partic.2010.07.001
Google Scholar
[21]
J. B. Królczyk, Industrial Conditions of the Granular Material Manufacturing Process, Applied Mechanics and Materials. 693 (2014) 267-272.
DOI: 10.4028/www.scientific.net/amm.693.267
Google Scholar