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EFFECTS OF THE SUPPORTS WITH DIFFERENT DIMENSIONS ON ELECTROCHEMICAL PERFORMANCE OF PLATINUM NANOPARTICLES

Yu-Chun Chiang (Yuan Ze University) Pai-Hsuan Wu (Yuan Ze University) Heng-I Yueh (Yuan Ze University)

 

The characteristics and electrochemical activity of Pt nanoparticles deposited on carbon nanotubes, graphene sheets and carbon blacks were studied. The Pt deposited on graphene sheets exhibited the highest electrochemical performance.

 

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FABRICATION OF HIGH HARDNESS AND HIGH STRENGTH ALTI-TIB2 COMPOSITE MATERIALS

Masashi Yoshida (Ube National College of Technology)

 

 

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GRAPHENE MODIFIED CFRP FOR ENHANCED DAMAGE BEHAVIOR

Daniel Fritsch (Technische Universität Hamburg Harburg) Hans Wittich (Technische Universität Hamburg-Harburg) Bodo Fiedler (Technische Universität Hamburg-Harburg)

 

This contribution presents the effect of graphene modification on epoxy matrix material's fracture toughness and the compression after impact strength of the graphene modified CFRP produced in vacuum assisted resin transfer moulding (VARTM) method.

 

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INVESTIGATING THERMAL AND MECHANICAL PROPERTIES OF GRAPHENE/EPOXY NANOCOMPOSITES - EXPERIMENTS

Jia-Lin Tsai (National Chiao Tung University) Ming-Wei Lee (National Chiao Tung University) Tai-Yuan Wang (National Chiao Tung University)

 

The research investigated the thermal and mechanical properties of functionalized graphene/epoxy nanocomposites. Results indicated that Young’s modulus and thermal conductivity of the nanocomposites increased when the graphene was functionalized.

 

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PIEZORESISTIVE THERMOPLASTIC FILM FOR COMPOSITES EMBEDDED HEALTH-MONITORING SYSTEM

Ruggero Volponi (CIRA Italian Aerospace Research Centre) Paola Spena (IMAST) Felice De Nicola (CIRA Italian Aerospace Research Centre) Pietro Russo (Consiglio Nazionale delle Ricerche)

 

The present work show a way to integrate a piezoresitive nanocharged thermoplastic thin film into a fiber reinforced composite to improve an embedded health-monitoring system.

 

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SIMULATION OF IMPREGNATION TO THE CNT FOREST BY MOLECULAR DYNAMICS METHOD

Tomohiro Tajiri (Tokyo University of Science) Ryosuke Matsuzaki Yoshinobu Shimamura (Shizuoka University)

 

We conducted a molecular dynamic (MD) simulation of introduction of water into between CNTs of VACNFs, and evaluated water permeability. The aims were to verify the application of Gebart equation and investigate the flow tendency.

 

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THEORETICAL MODELLING OF THE ELASTIC MODULUS OF POLYMER NANOCOMPOSITES

Tom Thorvaldsen (Norwegian Defence Research Establishment (FFI)) Bernt B. Johnsen (Norwegian Defence Research Establishment (FFI)) Torbjørn Olsen (Norwegian Defence Research Establishment (FFI)) Finn Knut Hansen (University of Oslo)

 

Mathematical models are investigated and suggested for the calculation of the elastic modulus of polymer nanocomposites, with particular emphasis on the effect from agglomerates and the particle interphase properties.

 

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EFFECT OF DEFECTS ON THERMAL TRANSPORT PROPERTIES OF CNR-GRAPHENE NANOSTRUCTURE

Shi Gang (NUDT) Yin Changping (National University of Defense Technology) Zhang Jianwei (National University of Defense Technology) Ju Su (National University of Defense Technology) Jiang Dazhi (National University of Defense Technology)

 

In the paper, the molecular dynamic simulation method is used to investigate how defects in the CNR-graphene junctions affect thermal transport properties of the CNR/Graphene nanostructure.

 

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MECHANICAL PROPERTIES OF MODIFIED GRAPHENE NANOPLATELETS REINFORCED EPOXY NANOCOMPOSITES

Chin-lung Chiang (Hungkuang University) Wei Jen Chen (China University of Science and Technology) Yi-Luen Li (China University of Science and Technology) Ming-Chuen Yip (University of Macau) Ming-Yuan Shen (China University of Science and Technology)

 

The graphene nanoplatelets (GNPs) modified with maleic acid (MA) were used to reinforce epoxy resin to prepare the nanocomposite and to investigate their mechanical properties, such as tensile and impact properties.

 

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IMPROVEMENT OF FLAX FIBER REINFORCED COMPOSITE BY HYBRIDIZATION WITH CARBON FIBER: SORPTION AND MECHANICAL PROPERTIES

Meriem Fehri (université de Caen-Normandie) R. R. Ragueh (Université de Caen Normandie) Y. Lebarillier (Université de Caen Normandie) Alexandre Vivet (Université de Caen Normandie) Mohamed Haddar (LA2MP - EniSfax) Fakhreddine Dammak (LA2MP - EniSfax)

 

Several hybrid stacking sequences made of carbon and flax plies have been tested to analyse the influence of the carbon fiber ply position inside the structure on the water recovery behavior and the buckling test response.

 

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