Title page for etd-0704122-143114


URN etd-0704122-143114 Statistics This thesis had been viewed 81 times. Download 3 times.
Author YUN-JHONG Li
Author's Email Address No Public.
Department Institute Of Mechanical Engineering
Year 2021 Semester 2
Degree Master Type of Document Master's Thesis
Language zh-TW.Big5 Chinese Page Count 86
Title The study on the composite of Graphe simalation by molecular Dynamics
Keyword
  • Graphene¡APDMS¡AMolecular Dynamics.
  • Graphene¡APDMS¡AMolecular Dynamics.
  • Abstract Abstrct
    ¡@¡@According to the increase in literature and related applied research in various fields,The various properties of graphene are revealed one by one,"Thinest and Lightest", "Strongest and Hardest", "Highest Carrier Mobility", "Maximum Current Resistance" and "Highest Thermal Conductivity", etc.Graphene applied to composites does not necessarily require a single layer of graphene, two single-layer graphene or low defect, One of the main technical keys for the processing and application of nanomaterials is dispersion.The composite material not only enhances the advantages of the material and the matrix material itself,through different temperatures,different layers,Complementary properties of material combinations,Excellent performance is achieved.
    ¡@¡@The research software uses Materials Studio 4.3 technology to analyze the properties of graphene blended in polymer composite polydimethylsiloxane (Polydimethylsiloxane) by molecular dynamics simulation.Mainly discuss the following key points:
    1¡B Discussion on the interface energy of nanocomposites.
    2¡B The effect of temperature on interface energy.
    The temperatures are: 300K, 350K, 400K, 450K.
    3¡B The effect of layers on interface performance.
    ¡@¡@¡@¡@Single-layer graphene,two single-layer graphene: 300K, 350K,
    After the simulation can be found, explore these different parameters,Graphene and composite materials (PDMS) at different temperatures,The effect of different amounts of graphene in composite materials (PDMS),and analyze the results.
    Advisor Committee
  • Jen-Ching Huang - advisor
  • Ching Been -Yang - co-chair
  • none - co-chair
  • Files indicate access worldwide
    Date of Defense 2022-06-21 Date of Submission 2022-07-04

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