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Peridynamics for multiscale materials modeling

Journal of Physics Conference Series · 2008 · Vol. 125 · pp. 012078–012078
E. AskariFlorin BobaruRichard B. LehoucqMichael L. ParksStewart SillingOlaf Weckner

Abstract

The paper presents an overview of peridynamics, a continuum theory that employs a nonlocal model of force interaction. Specifically, the stress/strain relationship of classical elasticity is replaced by an integral operator that sums internal forces separated by a finite distance. This integral operator is not a function of the deformation gradient, allowing for a more general notion of deformation than in classical elasticity that is well aligned with the kinematic assumptions of molecular dynamics. Peridynamics effectiveness has been demonstrated in several applications, including fracture and failure of composites, nanofiber networks, and polycrystal fracture. These suggest that peridynamics is a viable multiscale material model for length scales ranging from molecular dynamics to those of classical elasticity.

Numerical methods in engineeringComposite Material MechanicsElectromagnetic Simulation and Numerical MethodsPeridynamicsElasticity (physics)Finite strain theoryDeformation (meteorology)MechanicsMaterials scienceClassical mechanicsMolecular dynamicsFracture (geology)Continuum mechanics

Funding

  • U.S. Department of Energy
  • Sandia National Laboratories
Citations
264
FWCI
10.63
field-weighted impact
References
34
Percentile
98%
vs. same field & year
Citations per year
Cited by
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References
Yielding of steel sheets containing slits
Journal of the Mechanics and Physics of Solids · 1960 · 7,560 citations
Reformulation of elasticity theory for discontinuities and long-range forces
Journal of the Mechanics and Physics of Solids · 2000 · 3,996 citations
Fast Parallel Algorithms for Short-Range Molecular Dynamics
Journal of Computational Physics · 1995 · 43,820 citations
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