Department of Intelligent Mechanical Engineering,
Fukuoka Institute of Technology
MISAWA's Research Group
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Bachelor's theses (FY2025):
- Tensile simulation of graphene nanoribbons with reconfigured edges (K.A. and T.A.)
- Investigation of thermal conductivity in graphene nanoribbons using non-equilibrium molecular dynamics (Y.N. and K.S.)
- Optimal structural design of diamond/aluminum direct bonding interfaces (Y.Y and K.T)
- Friction simulation of graphene on a gold (111) surface (A.N. and S.F.)
- Molecular dynamics simulation on sintering process of silicon nitride nanoparticles (S.O. and I.N.)
Bachelor's theses (FY2024):
- Molecular dynamics analysis of mechanical properties of graphene nanoribbons with various edge structures (K.I. and K.A.)
- Size-dependency on thermal conductivity calculation of graphene nanoribbons (Y.M. and Y.I.)
- Molecular dynamics analysis of heat treatment conditions of diamond/silicon direct bonding interface (T.S. and S.M.)
- Modeling and structural analysis of diamond/aluminium direct bonding interface (K.H. and R.H.)
Bachelor's theses (FY2023):
- Molecular dynamics analysis of diffusion behavior of water on calcium carbonate surfaces (K.K., K.K. and K.Y.)
- Molecular dynamics analysis of mechanical properties of graphene with atomic vacancies (S.I. and R.M.)
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