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Component assembling model and its application to quasi-brittle damage
Authors:S.C. Deng   J.X. Liu   J. Zhang  N.G. Liang
Affiliation:aState Key Laboratory of Nonlinear Mechanics (LNM), Institute of Mechanics, Chinese Academy of Sciences (CAS), Graduate School of CAS, Beijing 100080, China
Abstract:
Potential energy can be approximated by “pair-functional” potentials which is composed of pair potentials and embedding energy. Pair potentials are grouped according to discrete directions of atomic bonds such that each group is represented by an orientational component. Meanwhile, another kind of component, the volumetric one is derived from embedding energy. Damage and fracture are the changing and breaking of atomic bonds at the most fundamental level and have been reflected by the changing of these components’ properties. Therefore, material is treated as a component assembly, and its constitutive equations are formed by means of assembling these two kinds of components’ response functions. This material model is referred to as the component assembling model. Theoretical analysis and numerical computing indicate that the proposed model has the capacity of reproducing some results satisfactorily, with the advantages of physical explicitness and intrinsic induced anisotropy, etc.
Keywords:Damage   Fracture   Anisotropy   Constitutive equation   Pair-functional potentials   Pair potentials   Embedding energy   Orientational/volumetric component   Component assembling model
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