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Size-dependent elastic properties of nanosized structural elements

Nanotechnology · 2000 · Vol. 11(3) · pp. 139–147
Ronald E. MillerVijay B. Shenoy

Abstract

Effective stiffness properties (D) of nanosized structural elements such as plates and beams differ from those predicted by standard continuum mechanics (Dc). These differences (D-Dc)/Dc depend on the size of the structural element. A simple model is constructed to predict this size dependence of the effective properties. The important length scale in the problem is identified to be the ratio of the surface elastic modulus to the elastic modulus of the bulk. In general, the non-dimensional difference in the elastic properties from continuum predictions (D-Dc)/Dc is found to scale as αS/Eh, where α is a constant which depends on the geometry of the structural element considered, S is a surface elastic constant, E is a bulk elastic modulus and h a length defining the size of the structural element. Thus, the quantity S/E is identified as a material length scale for elasticity of nanosized structures. The model is compared with direct atomistic simulations of nanoscale structures using the embedded atom method for FCC Al and the Stillinger-Weber model of Si. Excellent agreement between the simulations and the model is found.

Carbon Nanotubes in CompositesMicrostructure and mechanical propertiesForce Microscopy Techniques and ApplicationsMaterials scienceElastic modulusStiffnessElasticity (physics)Nanoscopic scaleBulk modulusLength scaleModulusComposite materialCondensed matter physics

Funding

  • Brown University
  • Harvard University
  • Natural Sciences and Engineering Research Council of Canada
Citations
1,767
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3.13
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References
22
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92%
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Theory of Dislocations
Medical Entomology and Zoology · 1968 · 9,670 citations
Computer simulation of local order in condensed phases of silicon
Physical review. B, Condensed matter · 1985 · 5,220 citations
Processing of Carbon Nanotube Reinforced Aluminum Composite
Journal of materials research/Pratt's guide to venture capital sources · 1998 · 492 citations
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