The elasto-damage theory of the components assembling model


Autoria(s): 邓守春; 梁乃刚; Lu HX
Data(s)

2009

Resumo

The potential energy in materials is well approximated by pair functional which is composed of pair potentials and embedding energy. During calculating material potential energy, the orientational component and the volumetric component are derived respectively from pair potentials and embedding energy. The sum of energy of all these two kinds of components is the material potential. No matter how microstructures change, damage or fracture, at the most level, they are all the changing and breaking atomic bonds. As an abstract of atomic bonds, these components change their stiffness during damaging. Material constitutive equations have been formulated by means of assembling all components' response functions. This material model is called 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 great conceptual simplicity, physical explicitness, and intrinsic induced anisotropy, etc.

Identificador

http://dspace.imech.ac.cn/handle/311007/28820

http://www.irgrid.ac.cn/handle/1471x/8839

Idioma(s)

英语

Fonte

Science in China Series G: Physics, Mechanics & Astronomy.2009,52(1):1-12

Palavras-Chave #固体力学 #Pair Functional #Pair Potentials #Embedding Energy #Damage #Anisotropy #Orientational Component #Volumetric Component #Component Assembling Model #Cauchy-Born Rule #Walled Carbon Nanotubes #Quasi-Brittle Materials #Continuum Damage #Localization Problems #Microplane Model #Fracture #Deformation #Simulation #Concrete
Tipo

期刊论文