Journal of Minerals and Materials Characterization and Engineering

Journal of Minerals and Materials Characterization and Engineering

ISSN Print: 2327-4077
ISSN Online: 2327-4085
www.scirp.org/Journal/jmmce
E-mail: jmmce@scirp.org
"Role of Temperature and Carbon Nanotube Reinforcement on Epoxy based Nanocomposites"
written by Subhranshu Sekhar Samal,
published by Journal of Minerals and Materials Characterization and Engineering, Vol.8 No.1, 2009
has been cited by the following article(s):
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[4] Behaviour of waste polypropylene pyrolysis char-based epoxy composite materials
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[6] Multiwalled carbon nanotube-poly vinyl alcohol nanocomposite multifunctional coatings on aerospace alloys
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[9] THERMAL PROPERTIES OF POLYMERIC COMPOSITES REINFORCED BY NANOCERAMIC MATERIALS
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[10] Enhancement of the mechanical properties of an epoxy composite through inclusion of graphene oxide nanosheets functionalized with silica nanoparticles through …
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[11] MD-based design of SiC/graphene nanocomposites towards better mechanical performance
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[12] Enhancement of the mechanical properties of an epoxy composite through inclusion of graphene oxide nanosheets functionalized with silica nanoparticles through …
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[13] Mechanical and thermal properties of graphene–carbon nanotube-reinforced metal matrix composites: A molecular dynamics study
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[14] New aspects on the metal reinforcement by carbon nanofillers: A molecular dynamics study
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[15] Finite Element Analysis of CNT Reinforced Epoxy Composite Due to Thermo-mechanical Loading
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[16] Improving mechanical properties of epoxy by adding multi-wall carbon nanotube
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[17] Effect of dispersion method and CNT loading on the quality and performance of nanocomposite soy protein/CNTs adhesive for wood application
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[18] Evaluation of Thermal Stress in Carbon/Glass Hybrid and Glass Nanocomposite under Resistive Heating
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[19] Preparation and Characterization of Nanocomposite Soy-Carbon Nanotubes (SPI/CNTs) Adhesive from Soy Protein Isolate
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[20] A review of two nanocomposite insulating materials models: Lewis' contribution in the development of the models, their differences, their similarities and future …
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[21] Multi-criteria optimisation in drilling of epoxy/glass fabric hybrid nanocomposite using grey relational analysis
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[22] Influence of temperature on tensile behavior of multiwalled carbon nanotube modified epoxy nanocomposites
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[23] Investigation on the Machinability Characteristics of MWCNTs Filled Epoxy/Glass Fabric Hybrid Nanocomposite Using Various Drill Bits
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[24] A Review of Two Nanocomposite Insulating Materials Models: Lewis’ Contribution in the Development of the Models, their Differences, their Similarities and Future Challenges
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[25] Influence of Multi-Walled Carbon Nanotubes on Mechanical, Thermal and Electrical Behavior of Polybenzoxazine-Epoxy Nanocomposites
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[26] Thermal Diffusivity and Thermal Conductivity of Epoxy-Based Nanocomposites by the Laser Flash and Differential Scanning Calorimetry Techniques
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[27] Effect of the preparation methods on electrical properties of epoxy resin/carbon nanofiber composites
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[28] The effect of additive carbon nano tube on optical properties of epoxy resin
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[29] ENVIRONMENTAL EFFECTS ON MATERIAL PROPERTIES OF MWCNT REINFORCED NANOCOMPOSITES
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[30] Влияние методов приготовления композитов эпоксидная смола/углеродные нановолокна на их электрофизические свойства
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[31] Влияние нановолокнистого углеродного наполнителя на электрофизические свойства и термоокислительную стабильность эпоксидных композитов
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[32] Characterisation and modelling of CNT-epoxy and CNT-fibre-epoxy composites
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[33] Characterisation and modelling of CNT–epoxy and CNT–fibre–epoxy composites
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[34] Effect of amine functionalization of CNF on electrical, thermal, and mechanical properties of epoxy/CNF composites
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[35] On Two Nanocomposite Models: Differences, Similarities and Interpretational Possibilities Regarding Tsagaropoulos' Model and Tanaka's Model
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[36] Modeling, manufacturing, and characterization of nanocomposites and multiscale composites
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