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- W2238310040 endingPage "322" @default.
- W2238310040 startingPage "297" @default.
- W2238310040 abstract "Quantum/molecular mechanics and continuum mechanics have been highly developed to describe material properties at small and large length scales. As we enter the era of nanotechnology, it has become increasingly important to model phenomena at mesoscopic length scales. Two alternative approaches, namely the “bottom up” approach based on quantum/molecular mechanics and the “top down” approach based on continuum mechanics, are frequently used to model mechanical properties of nano-structured materials. However, the connection between these two approaches is not well established. Much effort has been made to develop theories and approaches to span multiple length scales or to bridge gap between the two approaches. Based on a molecular mechanics concept, a stick-spiral model is developed to analytically link the molecular structure and macroscopic properties of carbon nanotubes. We review and summarize in this chapter the recent advances on this model" @default.
- W2238310040 created "2016-06-24" @default.
- W2238310040 creator A5002769517 @default.
- W2238310040 date "2009-11-09" @default.
- W2238310040 modified "2023-09-25" @default.
- W2238310040 title "Stick-Spiral Model for Studying Mechanical Properties of Carbon Nanotubes" @default.
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