12. Sumita M, Tsukumo Y, Miyasaka K, Ishikawa K (1983) Tensile yield stress of polypropylene
composites filled with ultrafine particles. J Mater Sci 18:1758
13. Cole DH, Shull KR, Baldo P, Rehn L (1999) Dynamic properties of a model polymer/metal
nanocomposite: gold particles in poly(tert-butyl acrylate). Macromolecules 32:771
14. Oya A, Kurokawa Y, Yasuda H (2000) Factors controlling mechanical properties of clay
mineral/polypropylene nanocomposites. J Mater Sci 35:1045
15. Zeng QH, Yu AB, Lu GQ (2008) Multiscale modeling and simulation of polymer
nanocomposites. Prog Polym Sci 33:191
16. Hule RA, Pochan DJ (2007) Polymer nanocomposites for biomedical applications. MRS Bull
32:354
17. Sarvestani AS, Jabbari E (2010) Nonlinear viscoelastic behavior of rubbery
bionanocomposites. In: Stephen R, Thomas S (eds) Rubber nanocomposites: preparation,
properties, and applications. Wiley Online Library, Singapore, p 331
18. Dealy JM. Nonlinear viscoelasticity. Rheology, vol. 1. Encyclopedia of Life Support Systems
(EOLSS)
19. Nurdina A, Mariatti M, Samayamutthirian P (2009) Effect of single-mineral filler and hybridmineral filler additives on the properties of polypropylene composites. J Vinyl Addit Technol
15(1):20
20. Leong Y, Bakar A, Ishak Z, Ariffin A, Pukanszky B (2004) Comparison of the mechanical
properties and interfacial interactions between talc, kaolin, and calcium carbonate filled
polypropylene composites. J Appl Polym Sci 91:3315
21. Sancaktar E, Walker E (2004) Effects of calcium carbonate, talc, mica, and glass-fiber fillers
on the ultrasonic weld strength of polypropylene. J Appl Polym Sci 94:1986
22. Hanumantha Rao K, Forssberg K, Forsling W (1998) Interfacial interaction and mechanical
properties of mineral filled polymer composites; wollastonite in PMMA polymer matrix.
Colloids Surf A Physicochem Eng Asp 133:107
23. Thomas P, Jose ET, George G, Thomas S, Joseph K (2013) Dynamic mechanical and
rheological properties of nitrile rubber nanocomposites based on TiO2, Ca3(PO4)2 and
layered silicate J Compos Mater: 1
24. Ezawa M (2012) Dirac theory and topological phases of silicon nanotube. EPL (Europhys Lett)
98:67001
25. Liu M, Guo B, Du M, Lei Y, Jia D (2008) Natural inorganic nanotubes reinforced epoxy resin
nanocomposites. J Polym Res 15:205
26. Samanta SK, Gomathi A, Bhattacharya S, Rao CNR (2010) Novel nanocomposites made of
boron nitride nanotubes and a physical gel. Langmuir 26(14):12230
27. Moskalyuk OA, Aleshin AN, Tsobkallo ES, Krestinin AV, Yudin VE (2012) Electrical
conductivity of polypropylene fibers with dispersed carbon fillers. Phys Solid State 54
(10):2122
28. Sahoo BP, Naskar K, Tripathy DK (2012) Conductive carbon black-filled ethylene acrylic
elastomer vulcanizates: physico-mechanical, thermal, and electrical properties. J Mater Sci
47:2421
29. Wu D, Wu L, Zhang M (2007) Rheology of multi-walled carbon nanotube/poly(butylene
terephthalate) composites. J Polym Sci B Polym Phys 45:2239
30. Katihabwa A, Wang W, Jiang Y, Zhao X, Lu Y, Zhang L (2011) Multi-walled carbon
nanotubes/silicone rubber nanocomposites prepared by high shear mechanical mixing.
J Reinf Plast Compos 30(12):1007
31. Lively B, Bizga J, Zhong W-H (2013) Analysis tools for nanofiller polymer composites:
macro- and nanoscale dispersion assessments correlated with mechanical and electrical composite properties. Polym Compos. doi:10.1002/pc.22628
32. Upadhyaya P, Garg M, Kumar V, Nema AK (2012) The effect of water absorption on
mechanical properties of wood flour/wheat husk polypropylene hybrid composites. Mater
Sci Appl 3:317
Effect of Hybrid Fillers on the Non-Linear Viscoelasticity of Rubber. . .
159
composites filled with ultrafine particles. J Mater Sci 18:1758
13. Cole DH, Shull KR, Baldo P, Rehn L (1999) Dynamic properties of a model polymer/metal
nanocomposite: gold particles in poly(tert-butyl acrylate). Macromolecules 32:771
14. Oya A, Kurokawa Y, Yasuda H (2000) Factors controlling mechanical properties of clay
mineral/polypropylene nanocomposites. J Mater Sci 35:1045
15. Zeng QH, Yu AB, Lu GQ (2008) Multiscale modeling and simulation of polymer
nanocomposites. Prog Polym Sci 33:191
16. Hule RA, Pochan DJ (2007) Polymer nanocomposites for biomedical applications. MRS Bull
32:354
17. Sarvestani AS, Jabbari E (2010) Nonlinear viscoelastic behavior of rubbery
bionanocomposites. In: Stephen R, Thomas S (eds) Rubber nanocomposites: preparation,
properties, and applications. Wiley Online Library, Singapore, p 331
18. Dealy JM. Nonlinear viscoelasticity. Rheology, vol. 1. Encyclopedia of Life Support Systems
(EOLSS)
19. Nurdina A, Mariatti M, Samayamutthirian P (2009) Effect of single-mineral filler and hybridmineral filler additives on the properties of polypropylene composites. J Vinyl Addit Technol
15(1):20
20. Leong Y, Bakar A, Ishak Z, Ariffin A, Pukanszky B (2004) Comparison of the mechanical
properties and interfacial interactions between talc, kaolin, and calcium carbonate filled
polypropylene composites. J Appl Polym Sci 91:3315
21. Sancaktar E, Walker E (2004) Effects of calcium carbonate, talc, mica, and glass-fiber fillers
on the ultrasonic weld strength of polypropylene. J Appl Polym Sci 94:1986
22. Hanumantha Rao K, Forssberg K, Forsling W (1998) Interfacial interaction and mechanical
properties of mineral filled polymer composites; wollastonite in PMMA polymer matrix.
Colloids Surf A Physicochem Eng Asp 133:107
23. Thomas P, Jose ET, George G, Thomas S, Joseph K (2013) Dynamic mechanical and
rheological properties of nitrile rubber nanocomposites based on TiO2, Ca3(PO4)2 and
layered silicate J Compos Mater: 1
24. Ezawa M (2012) Dirac theory and topological phases of silicon nanotube. EPL (Europhys Lett)
98:67001
25. Liu M, Guo B, Du M, Lei Y, Jia D (2008) Natural inorganic nanotubes reinforced epoxy resin
nanocomposites. J Polym Res 15:205
26. Samanta SK, Gomathi A, Bhattacharya S, Rao CNR (2010) Novel nanocomposites made of
boron nitride nanotubes and a physical gel. Langmuir 26(14):12230
27. Moskalyuk OA, Aleshin AN, Tsobkallo ES, Krestinin AV, Yudin VE (2012) Electrical
conductivity of polypropylene fibers with dispersed carbon fillers. Phys Solid State 54
(10):2122
28. Sahoo BP, Naskar K, Tripathy DK (2012) Conductive carbon black-filled ethylene acrylic
elastomer vulcanizates: physico-mechanical, thermal, and electrical properties. J Mater Sci
47:2421
29. Wu D, Wu L, Zhang M (2007) Rheology of multi-walled carbon nanotube/poly(butylene
terephthalate) composites. J Polym Sci B Polym Phys 45:2239
30. Katihabwa A, Wang W, Jiang Y, Zhao X, Lu Y, Zhang L (2011) Multi-walled carbon
nanotubes/silicone rubber nanocomposites prepared by high shear mechanical mixing.
J Reinf Plast Compos 30(12):1007
31. Lively B, Bizga J, Zhong W-H (2013) Analysis tools for nanofiller polymer composites:
macro- and nanoscale dispersion assessments correlated with mechanical and electrical composite properties. Polym Compos. doi:10.1002/pc.22628
32. Upadhyaya P, Garg M, Kumar V, Nema AK (2012) The effect of water absorption on
mechanical properties of wood flour/wheat husk polypropylene hybrid composites. Mater
Sci Appl 3:317
Effect of Hybrid Fillers on the Non-Linear Viscoelasticity of Rubber. . .
159
