59. Maiti P, Nam PH, Okamoto M, Hasegawa N, Usuki A (2002) Influence of crystallization on
intercalation, morphology, and mechanical properties of polypropylene/clay
nanocomposites. Macromolecules 35(6):2042–2049
60. Okamoto M, Nam PH, Maiti P, Kotaka T, Hasegawa N, Usuki A (2001) A house of cards
structure in polypropylene/clay nanocomposites under elongational flow. Nano Lett 1
(6):295–298
61. Tiwari VK, Prasad AK, Singh V, Jana KK, Misra M, Prasad CD, Maiti P (2013) Nanoparticle
and process induced super toughened piezoelectric hybrid materials: the effect of stretching
on filled system. Macromolecules 46:5595–5603
62. Shankar SSV, Dinesh R, Thomas T (2010) Experimental study on manufacture and analysis
of rubber nanoclay MWCNT composite. Int J Environ Sci Dev 1(2):181–183
63. Lima AMF, de Castro VG, Borges RS, Silva GG (2012) Electrical conductivity and thermal
properties of functionalized carbon nanotubes/polyurethane composites. Polı ´meros Ciencia e
Tecnologia 22(2):117–124
64. Guo S, Zhang C, Wang W et al (2008) Preparation and characterization of polyurethane/
multiwalled carbon nanotube composites. Polym Polym Compos 16:471–478
65. Sui G, Zhong WH, Yang XP, Yu YH, Zhao SH (2008) Preparation and properties of natural
rubber composites reinforced with pretreated carbon nanotubes. Polym Adv Technol
19:1543–1549
66. Jyotishkumar P, Abraham E, George SM, Elias E, Pionteck J, Moldenaers P, Thomas S
(2013) Preparation and properties MWCNTs/poly(acrylonitrilestyrene- butadiene)/epoxy
hybrid composites. J Appl Polym Sci 127:3093–3103
67. Tibbetts GG, Lake ML, Strong KL (2007) A review of the fabrication and properties of
vapor-grown carbon nanofiber/polymer composites. Compos Sci Technol 67:1709–18
68. Andrews R, Jacques D, Minot M, Rantell T (2002) Fabrication of carbon multiwall nanotube/
polymer composites by shear mixing. Macromol Mater Eng 287:395–403
69. Xie XL, Mai YW, Zhou XP (2005) Dispersion and alignment of carbon nanotubes in polymer
matrix: a review. Mater Sci Eng R Rep 49:89–112
70. Tsubokawa N (2005) Preparation and properties of polymer grafted carbon nanotubes and
nanofibers. Polym J 37(9):637–655
71. Shanks R, Kong I (2012) Thermoplastic elastomers. InTech. ISBN 978-953-51-0346-2
72. Pedroni LG, Araujo JR, Felisberti MI, Nogueira AF (2012) Nanocomposites based on
MWCNT and styrene–butadiene–styrene block copolymers: effect of the preparation method
on dispersion and polymer–filler interactions. Compos Sci Technol 72:1787–1492
73. Alipour A (2012) Fabrication and characterization of nanostructured polymer composites
prepared by melt compounding. Int J Biosci Biochem Bioinform 2:79–84
74. Siengchin S (2011) Nano-scale reinforcing and toughening thermoplastics: processing,
structure and mechanical properties. InTech. ISBN 978-953-307-420-7
75. Deng F, Ito M, Noguchi T, Wang L, Ueki H, Niihara K, Kim YA, Endo M, Zheng QS (2011)
Elucidation of the reinforcing mechanism in carbon nanotube/rubber nanocomposites. ACS
Nano 5:3858–3866
76. Bokobza L (2012) Enhanced electrical and mechanical properties of multiwall carbon
nanotube rubber composites. Polym Adv Technol 23:1543–1549
77. Endo M (1988) Grow carbon-fibers in the vapor-phase. Chem-Tech 18:568–576
78. Endo M, Kim YA, Hayashi T, Nishimura K, Matusita K, Dresselhaus MS (2001) Vaporgrown carbon fibers (VGCFs): basic properties and their battery applications. Carbon
39:1287–1297
79. Cadambi RM, Ghassemieh E (2011) Optimized process for the inclusion of carbon nanotubes
in elastomers with improved thermal and mechanical properties. J Appl Polym Sci
124:4993–5001
80. Hu Y, Shenderova OA, Hu Z, Padgett CW, Brenner DW (2006) Carbon nanostructures for
advanced composites. Rep Prog Phys 69:1847–1895
81. Coleman JN, Khan U, Blau WJ, Gunko YK (2006) Small but strong: a review of the
mechanical properties of carbon nanotube-polymer composites. Carbon 44(9):1624–1652
Nonlinear Viscoelasticity of One Dimensional Filler Reinforced Elastomer. . .
39
intercalation, morphology, and mechanical properties of polypropylene/clay
nanocomposites. Macromolecules 35(6):2042–2049
60. Okamoto M, Nam PH, Maiti P, Kotaka T, Hasegawa N, Usuki A (2001) A house of cards
structure in polypropylene/clay nanocomposites under elongational flow. Nano Lett 1
(6):295–298
61. Tiwari VK, Prasad AK, Singh V, Jana KK, Misra M, Prasad CD, Maiti P (2013) Nanoparticle
and process induced super toughened piezoelectric hybrid materials: the effect of stretching
on filled system. Macromolecules 46:5595–5603
62. Shankar SSV, Dinesh R, Thomas T (2010) Experimental study on manufacture and analysis
of rubber nanoclay MWCNT composite. Int J Environ Sci Dev 1(2):181–183
63. Lima AMF, de Castro VG, Borges RS, Silva GG (2012) Electrical conductivity and thermal
properties of functionalized carbon nanotubes/polyurethane composites. Polı ´meros Ciencia e
Tecnologia 22(2):117–124
64. Guo S, Zhang C, Wang W et al (2008) Preparation and characterization of polyurethane/
multiwalled carbon nanotube composites. Polym Polym Compos 16:471–478
65. Sui G, Zhong WH, Yang XP, Yu YH, Zhao SH (2008) Preparation and properties of natural
rubber composites reinforced with pretreated carbon nanotubes. Polym Adv Technol
19:1543–1549
66. Jyotishkumar P, Abraham E, George SM, Elias E, Pionteck J, Moldenaers P, Thomas S
(2013) Preparation and properties MWCNTs/poly(acrylonitrilestyrene- butadiene)/epoxy
hybrid composites. J Appl Polym Sci 127:3093–3103
67. Tibbetts GG, Lake ML, Strong KL (2007) A review of the fabrication and properties of
vapor-grown carbon nanofiber/polymer composites. Compos Sci Technol 67:1709–18
68. Andrews R, Jacques D, Minot M, Rantell T (2002) Fabrication of carbon multiwall nanotube/
polymer composites by shear mixing. Macromol Mater Eng 287:395–403
69. Xie XL, Mai YW, Zhou XP (2005) Dispersion and alignment of carbon nanotubes in polymer
matrix: a review. Mater Sci Eng R Rep 49:89–112
70. Tsubokawa N (2005) Preparation and properties of polymer grafted carbon nanotubes and
nanofibers. Polym J 37(9):637–655
71. Shanks R, Kong I (2012) Thermoplastic elastomers. InTech. ISBN 978-953-51-0346-2
72. Pedroni LG, Araujo JR, Felisberti MI, Nogueira AF (2012) Nanocomposites based on
MWCNT and styrene–butadiene–styrene block copolymers: effect of the preparation method
on dispersion and polymer–filler interactions. Compos Sci Technol 72:1787–1492
73. Alipour A (2012) Fabrication and characterization of nanostructured polymer composites
prepared by melt compounding. Int J Biosci Biochem Bioinform 2:79–84
74. Siengchin S (2011) Nano-scale reinforcing and toughening thermoplastics: processing,
structure and mechanical properties. InTech. ISBN 978-953-307-420-7
75. Deng F, Ito M, Noguchi T, Wang L, Ueki H, Niihara K, Kim YA, Endo M, Zheng QS (2011)
Elucidation of the reinforcing mechanism in carbon nanotube/rubber nanocomposites. ACS
Nano 5:3858–3866
76. Bokobza L (2012) Enhanced electrical and mechanical properties of multiwall carbon
nanotube rubber composites. Polym Adv Technol 23:1543–1549
77. Endo M (1988) Grow carbon-fibers in the vapor-phase. Chem-Tech 18:568–576
78. Endo M, Kim YA, Hayashi T, Nishimura K, Matusita K, Dresselhaus MS (2001) Vaporgrown carbon fibers (VGCFs): basic properties and their battery applications. Carbon
39:1287–1297
79. Cadambi RM, Ghassemieh E (2011) Optimized process for the inclusion of carbon nanotubes
in elastomers with improved thermal and mechanical properties. J Appl Polym Sci
124:4993–5001
80. Hu Y, Shenderova OA, Hu Z, Padgett CW, Brenner DW (2006) Carbon nanostructures for
advanced composites. Rep Prog Phys 69:1847–1895
81. Coleman JN, Khan U, Blau WJ, Gunko YK (2006) Small but strong: a review of the
mechanical properties of carbon nanotube-polymer composites. Carbon 44(9):1624–1652
Nonlinear Viscoelasticity of One Dimensional Filler Reinforced Elastomer. . .
39
