102. Visakh PM, Thomas S, Oksman K, Mathew AP (2012) Effect of cellulose nanofibers isolated
from pulp residue on vulcanized natural rubber. BioResources 7(2):2156–2168
103. Geethamma VG, Kalaprasad G, Groeninckx G, Thomas S (2005) Dynamic mechanical
behavior of short coir fiber reinforced natural rubber composites. Compos Part A Appl Sci
Manuf 36:1499–1506
104. Sui G, Zhong WH, Yang XP, Yu YH (2008) Curing kinetics and mechanical behavior of
natural rubber reinforced with pretreated carbon nanotubes. Mater Sci Eng A 485:524–531
105. Kueseng K, Jacob KI (2006) Natural rubber nanocomposites with SiC nanoparticles and
carbon nanotubes. Eur Polym J 42:220–227
106. Du M, Guo B, Lei Y, Liu M, Jia D (2008) Carboxylated butadiene-styrene rubber/halloysite
nanotube nanocomposites: interfacial interaction and performance. Polymer 49:4871–4876
107. Charman M, Leonardi F, Dominguez S, Bissuel C, Derail C (2011) Dispersion of multiwalled
carbon nanotubes in a rubber matrix using an internal mixer: effects on rheological and
electrical properties. J Polym Sci B: Polym Phys 49:1597–1604
108. Zhang Q, Rastogi S, Chen D, Lippits D, Lemstra PJ (2006) Low percolation threshold in
single-walled carbon nanotube/high density polyethylene composites prepared by melt
processing technique. Carbon 44:778–785
109. Du F, Scogna RC, Zhou W, Brand S, Fischer JE, Winey KI (2004) Nanotube networks in
polymer nanocomposites: rheology and electrical conductivity. Macromolecules
37:9048–9055
110. Costa FR, Wagenknecht U, Jehnichen D, Goad MA, Heinrich G (2006) Nanocomposites
based on polyethylene and Mg-Al layered double hydroxide. Part II. Rheological characterization more. Polymer 47:1649–1660
111. Auad ML, Mosiewicki MA, Uzunpinar C, Williams RJJ (2009) Single-wall carbon
nanotubes/epoxy elastomers exhibiting high damping capacity in an extended temperature
range. Compos Sci Technol 69:1088–1092
112. Fan Z, Advani SG (2007) Rheology of multiwall carbon nanotube suspension. J Rheol 51
(4):585–604
113. Galgali G, Ramesh C, Lele A (2001) A rheological study on the kinetics of hybrid formation
in polypropylene nanocomposites. Macromolecules 34:852–858
114. Schmidt G, Nakatani AI, Butler PD (2000) Shear orientation of viscoelastic polymer-clay
solutions probed by flow birefringence and SANS. Macromolecules 33:7219–7222
115. Krishnamoorti R, Vaia RA, Giannelis EP (1996) Structure and dynamics of polymer-layered
silicate nanocomposites. Chem Mater 8:1728–1734
116. Hemmati M, Narimani A, Shariatpanahi H (2011) Study on morphology, rheology and
mechanical properties of thermoplastic elastomer polyolefin (TPO)/carbon nanotube
nanocomposites with reference to the effect of polypropylene-grafted-maleic anhydride
(PP-g-MA) as a compatibilizer. Int J Polym Mater 60:384–397
117. Lin L, Liu S, Zhang Q, Li X, Ji M, Deng H, Fu Q (2013) Towards tunable sensitivity of
electrical property to strain for conductive polymer composites based on thermoplastic
elastomer. ACS Appl Mater Interfaces 5:5815–5824
118. Aranguren MI, Mora E, DeGroot JV, Macosko CW (1992) Rheology and microstructure of
filled polymer melts. J Rheol 36:1165–1182
119. Krishnamoorti R, Giannelis EP (1997) Rheology of end-tethered polymer layered silicate
nanocomposites. Macromolecules 30:4097–4102
120. Kelarakis A, Yoon K, Chu B et al (2005) Rheological study of carbon nanofiber induced
physical gelation in polyolefin nanocomposite melt. Polymer 46:11591–11599
Nonlinear Viscoelasticity of One Dimensional Filler Reinforced Elastomer. . .
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