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A fractal model of melt viscosity of a polypropylene-carbon nanotube nanocomposite
High Temperature
◽
10.1134/s0018151x12060119
◽
2012
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Vol 50
(6)
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pp. 732-735
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Cited By ~ 1
Author(s):
Z. M. Zhirikova
◽
G. V. Kozlov
◽
V. Z. Aloev
Keyword(s):
Carbon Nanotube
◽
Fractal Model
◽
Melt Viscosity
Download Full-text
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References
Fractal Model of the Nanofiller Structure Affecting the Degree of Reinforcement of Polyurethane-Carbon Nanotube Nanocomposites
Прикладная механика и техническая физика
◽
10.15372/pmtf20180315
◽
2018
◽
Keyword(s):
Carbon Nanotube
◽
Fractal Model
◽
Degree Of Reinforcement
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Fractal model for estimating fracture toughness of carbon nanotube reinforced aluminum oxide
Journal of Applied Physics
◽
10.1063/1.3445869
◽
2010
◽
Vol 107
(12)
◽
pp. 123532
◽
Cited By ~ 15
Author(s):
Abhishek Rishabh
◽
Milind R. Joshi
◽
Kantesh Balani
Keyword(s):
Fracture Toughness
◽
Carbon Nanotube
◽
Aluminum Oxide
◽
Fractal Model
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Tuning the Structure and Performance of Bulk and Porous Vapor Sensors Based on Co-continuous Carbon Nanotube-Filled Blends of Poly(vinylidene fluoride) and Polycarbonates by Varying Melt Viscosity
ACS Applied Materials & Interfaces
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10.1021/acsami.0c15184
◽
2020
◽
Vol 12
(40)
◽
pp. 45404-45419
◽
Cited By ~ 1
Author(s):
Yilong Li
◽
Yanjun Zheng
◽
Jürgen Pionteck
◽
Petra Pötschke
◽
Brigitte Voit
Keyword(s):
Carbon Nanotube
◽
Vinylidene Fluoride
◽
Melt Viscosity
◽
Poly Vinylidene Fluoride
◽
Vapor Sensors
◽
And Performance
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Fractal Model of the Nanofiller Structure Affecting The Degree of Reinforcement of Polyurethane–Carbon Nanotube Nanocomposites
Journal of Applied Mechanics and Technical Physics
◽
10.1134/s002189441803015x
◽
2018
◽
Vol 59
(3)
◽
pp. 508-510
◽
Cited By ~ 3
Author(s):
G. V. Kozlov
◽
I. V. Dolbin
Keyword(s):
Carbon Nanotube
◽
Fractal Model
◽
Degree Of Reinforcement
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Theoretical Estimation of the Shearing Strength of Polymer/Carbon Nanotube Contact: A Fractal Model
Mechanics of Composite Materials
◽
10.1007/s11029-021-09945-2
◽
2021
◽
Author(s):
L. B. Atlukhanova
◽
G. V. Kozlov
◽
I. V. Dolbin
Keyword(s):
Carbon Nanotube
◽
Fractal Model
◽
Theoretical Estimation
◽
Shearing Strength
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Carbon Nanotube and Graphene Device Physics
10.1017/cbo9780511778124
◽
2009
◽
Cited By ~ 25
Author(s):
H.-S. Philip Wong
◽
Deji Akinwande
Keyword(s):
Carbon Nanotube
◽
Device Physics
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Modulation of electronic conductivity and bandgap of electrochemically polymerised polycarbazole films using montmorillonite, multi‐walled carbon nanotube and reduced graphene oxide as nanofillers
Micro & Nano Letters
◽
10.1049/mnl.2018.0139
◽
2018
◽
Vol 13
(9)
◽
pp. 1335-1338
Author(s):
Aditi Srivastava
◽
P. Chakrabarti
Keyword(s):
Graphene Oxide
◽
Carbon Nanotube
◽
Reduced Graphene Oxide
◽
Electronic Conductivity
◽
Multi Walled Carbon Nanotube
◽
Reduced Graphene
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Carbon nanotube instillation in mice causes sustained pulmonary inflammation and apoptosis of alveolar macrophages
Pneumologie
◽
10.1055/s-0031-1296111
◽
2011
◽
Vol 65
(12)
◽
Author(s):
NC Habel
◽
S Hirn
◽
F Tian
◽
O Eickelberg
◽
T Stoeger
Keyword(s):
Carbon Nanotube
◽
Alveolar Macrophages
◽
Pulmonary Inflammation
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Carbon Nanotube Supported Ni/Pd-Nanoparticles on for Carbonylative Suzuki–Miyaura Coupling
Synfacts
◽
10.1055/s-0040-1706462
◽
2020
◽
Vol 16
(10)
◽
pp. 1206
Keyword(s):
Carbon Nanotube
◽
Pd Nanoparticles
◽
Supported Ni
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Computational Multiscale Analysis for Interlaminar Reinforcement of Composite Laminates with Radially Grown Carbon Nanotube Architecture
10.33599/nasampe/s.19.1545
◽
2019
◽
Author(s):
Karthik Rajan Venkatesan
◽
Aditi Chattopadhyay
Keyword(s):
Carbon Nanotube
◽
Composite Laminates
◽
Multiscale Analysis
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