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Mechanics of carbon nanotubes
Soon after the discovery of carbon nanotubes, it was realized that the theoretically predicted
mechanical properties of these interesting structures–including high strength, high stiffness …
mechanical properties of these interesting structures–including high strength, high stiffness …
Multiscale modeling and simulation of polymer nanocomposites
Polymer nanocomposites offer a wide range of promising applications because of their
much enhanced properties arising from the reinforcement of nanoparticles. However, further …
much enhanced properties arising from the reinforcement of nanoparticles. However, further …
A computational library for multiscale modeling of material failure
We present an open-source software framework called PERMIX for multiscale modeling and
simulation of fracture in solids. The framework is an object oriented open-source effort …
simulation of fracture in solids. The framework is an object oriented open-source effort …
Key computational modeling issues in integrated computational materials engineering
Designing materials for targeted performance requirements as required in Integrated
Computational Materials Engineering (ICME) demands a combined strategy of bottom–up …
Computational Materials Engineering (ICME) demands a combined strategy of bottom–up …
A review of multiscale computational methods in polymeric materials
Polymeric materials display distinguished characteristics which stem from the interplay of
phenomena at various length and time scales. Further development of polymer systems …
phenomena at various length and time scales. Further development of polymer systems …
Coupling of atomistic and continuum simulations using a bridging scale decomposition
We present a new method for coupling molecular dynamics (MD) and continuum mechanics
simulations that is based on the projection of the MD solution onto the coarse scale shape …
simulations that is based on the projection of the MD solution onto the coarse scale shape …
The heterognous multiscale methods
The heterogenous multiscale method (HMM) is presented as a general methodology for the
efficient numerical computation of problems with multiscales and multiphysics on multigrids …
efficient numerical computation of problems with multiscales and multiphysics on multigrids …
[ספר][B] Handbook of nanoscience, engineering, and technology
WA Goddard III, D Brenner, SE Lyshevski, GJ Iafrate - 2002 - taylorfrancis.com
Nanotechnology, science, and engineering spearhead the 21st century revolution that is
leading to fundamental breakthroughs in the way materials, devices, and systems are …
leading to fundamental breakthroughs in the way materials, devices, and systems are …
Atomistic/continuum coupling in computational materials science
Important advances in multi-scale computer simulation techniques for computational
materials science have been made in the last decade as scientists and engineers strive to …
materials science have been made in the last decade as scientists and engineers strive to …
Atomistic modeling of the fracture of polycrystalline diamond
A series of molecular-dynamics simulations using a many-body interatomic potential has
been performed to investigate the behavior under load of several< 001> and< 011> …
been performed to investigate the behavior under load of several< 001> and< 011> …