[2] Bika D.G., Gentzler M., Michaels J.N.,
Mechanical Properties of Agglomerates,
Powder Technology,
117(1-2): 98-112 (2001).
[4] Ommen J.R.V., Valverde J.M., Pfeffer R.,
Fluidization of Nanopowders: A Review,
J. Nanopart. Res.,
14(737): (2012).
[5] Quevedo J.A., Omosebi A., Pfeffer R.,
Fluidization Enhancement of Agglomerates of Metal Oxide Nanopowders by Microjets,
American Ins. Chem. Eng. (AIChE Journal),
56(6): 1456-1468 (2010).
[6] Shabanian J., Jafari R., Chaouki J.,
Fluidization of Ultrafine Powders,
Int. Rev. Chem. Eng.,
4(1): 16-50 (2012).
[9] شیخی ا.، ستوده قره باغ ر.، مستوفی ن.، ضرغامی، ر.، محجوب جهرمی م.،
تعیین مشخصههای هیدرودینامیکی بسترهای سیال سه فازی به کمک پایش نوسانهای ارتعاش،
نشریه شیمی و مهندسی شیمی ایران،
(4)43: 30 تا 53 (1390).
[10] Xiao G., Grace J.R., Lim C.J.,
Limestone Particle Attrition in High-Velocity Air Jets,
Ind. Eng. Chem. Res.,
51(1): 556-560 (2012).
[11] de Martin L., Bouwman W.G., van Ommen J.R.,
Multidimensional Nature of Fluidizednanoparticle Agglomerates,
Langmuir, 30(42): 12696-12702 (2014).
[13] Bushell G., Yan Y., Woodfield D., Raper J., Amal R.,
On Techniques for the Measurement of the Mass Fractaldimension of Aggregates,
Adv. Colloid Interface Sci,
95(1): 1–50 (2002).
[14] de Martin L., Fabre A., van Ommen J.R.,
The Fractal Scaling of Fluidized Nanoparticle Agglomerates,
Chem. Eng. Sci.
112: 79-86 (2014).
[15] Vicsek T., "
Fractal Growth Phenomena", World Scientific Pub Co Inc, (1992).
[18] Matsuda S., Hatano H., Muramoto T., Tsutsumi A.,
Modeling for Size Reduction of Agglomerates in Nanoparticle Fluidization,
American Inst. Chem. Eng. (AIChE) Journal,
50(11): 2763-2771 (2004).
[19] Salameh S., Schneider J., Laube J. Alessandrini A., Facci P., Seo J.W., Colombi Ciacchi L., Mädler L.,
Adhesion Mechanisms of the Contactinterface of TiO2 Nanoparticles in Films and Aggregates,
Langmuir,
28(31): 11457-11464 (2012).
[21] Fabre A., Salameh S., Ciacchi L.C., Kreutzer M.T., van Ommen J.R.,
Contact Mechanics of Highly Porous Oxide Nanoparticle Agglomerates,
Journal of Nanoparticle Research,
18: (2016).
[22] Tamadondar M.R., Zarghami R., Boutou K., Tahmasebpoor M., Mostoufi N.,
Size of Nanoparticle Agglomerates in Fluidization,
Can. J. Chem. Eng., Wiley Online Library,
94(3): 476-484 (2016).
[23] Sokolov S. V., Kätelhön E., Compton R. G.,
A Thermodynamic View of Agglomeration,
The Journal of Physical Chemistry C,
119(44): 25093-25099 (2015).
[24] Fabre A., “
Fluidized Nanoparticle Agglomerates, Formation, Characterization, and Dynamics”, Ph.D. Dissertation, Delft University of Technology, Delft, Netherlands, (2016).
[25] Kendall K., Alford N.M., Birchall J.D.,
Elasticity of Particle Assemblies as a Measure of the Surface Energy of Solids, Proceedings of the Royal Society of London A: Mathematical,
Physical and Engineering Sciences,
412(1843): (1987).
[26] Kendall K., Weihs T.P.,
Adhesion of Nanoparticles within Spray Dried Agglomerates,
Journal of Physics D: Applied Physics,
25(1A): (1992).
[27] Yoshimura H.N., Molisani A.L., Narita N.E., Cesar P.F., Goldenstein H.,
Porosity Dependence of Elastic Constants in Aluminum Nitride Ceramics,
MaterialsResearch,
10(2): 127 (2007).
[28] Hasselman D.P.H.,
On the Porosity Dependence of the Elastic Moduli of Polycrystallinerefractory Materials,
Journal of the American Ceramic Society banner,
45(9): 452-453 (1962).
[29] Wang J.C.,
Young’s Modulus of Porous Materials,
Journal of Materials Science,
19(3): 801-808 (1984).
[30] Martin R.B., Haynes R.R.,
Confirmation of Theoretical Relation between Stiffness and Porosity in Ceramics,
Journal of the American Ceramic Society, 54(8): 410-411 (1971).
[31] Phani K., Niyogi S.,
Elastic Modulus-Porosity Relationship for Si3N4,
Journal of Materials Science Letters,
6(5): 511-515 (1987).
[32] Hertz H.
Uber die Berührung fester elastischer Körper. (On the Contact of Elastic Solids).
J. Reine und Angewandte Mathematik,
92(
1): 156-171 (1882).
[33] Fabre A., Clemente A., Balas
F., Lobera M.P., Santamaria J., Kreutzer
M.T., van Ommen J.R.,
Modeling the Size Distribution in a Fluidized Bed of Nanopowder,
J. Environ Sci: Nano.,
4: 670-678 (2017).
[34] Butt H. J., Kappl M., "
Surface and Interfacial Forces", John Wiley & Sons, Inc. (2010).
[35] Timoshenko S.P., Goodier J. N., "
Theory of Elasticity", McGraw-Hill (1970).
[36] Tamadondar M.R., Zarghami R, Boutou K., Tahmasebpoor M., Mostoufi N.,
Size of Nanoparticle gglomerates in Fluidization,
Can. J.Chem. Eng.,
94(3): 476-484 (2016).