August 2016

Journal

Variable horizon in a peridynamic medium

By:
Silling, Stewart; Littlewood, David; Seleson, Pablo D
Journal Name:
Journal of Mechanics of Materials and Structures
Page Number:
591-612
Volume:
10
Issue Number:
5
Publication Date:
August 2016
View DOI Listing:
https://doi.org/10.2140/jomms.2015.10.591

Abstract

A notion of material homogeneity is proposed for peridynamic bodies with variable horizon but constant bulk properties. A relation is derived that scales the force state according to the position-dependent horizon while keeping the bulk properties unchanged. Using this scaling relation, if the horizon depends on position, artifacts called ghost forces may arise in a body under a homogeneous deformation. These artifacts depend on the second derivative of the horizon and can be reduced by employing a modified equilibrium equation using a new quantity called the partial stress. Bodies with piecewise constant horizon can be modeled without ghost forces by using a simpler technique called a splice. As a limiting case of zero horizon, both the partial stress and splice techniques can be used to achieve local–nonlocal coupling. Computational examples, including dynamic fracture in a one-dimensional model with local–nonlocal coupling, illustrate the methods.


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