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Peridynamic States and Constitutive Modeling

Journal of elasticity(2007)

Multiscale Dynamic Material Modeling Department | Math Group

Cited 1724|Views24
Abstract
A generalization of the original peridynamic framework for solid mechanics is proposed. This generalization permits the response of a material at a point to depend collectively on the deformation of all bonds connected to the point. This extends the types of material response that can be reproduced by peridynamic theory to include an explicit dependence on such collectively determined quantities as volume change or shear angle. To accomplish this generalization, a mathematical object called a deformation state is defined, a function that maps any bond onto its image under the deformation. A similar object called a force state is defined, which contains the forces within bonds of all lengths and orientation. The relation between the deformation state and force state is the constitutive model for the material. In addition to providing a more general capability for reproducing material response, the new framework provides a means to incorporate a constitutive model from the conventional theory of solid mechanics directly into a peridynamic model. It also allows the condition of plastic incompressibility to be enforced in a peridynamic material model for permanent deformation analogous to conventional plasticity theory.
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Key words
Peridynamic,Material model,Constitutive model,Nonlocal elasticity,Fracture,Plastic flow,74A05,74A20
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要点】:论文提出了一种固体力学中原始细观动力学框架的泛化,允许材料在一点的响应依赖于所有连接到该点的键的变形,从而扩展了细观动力学理论可以再现的材料响应类型。

方法】:通过定义了一个名为“变形状态”的数学对象,该对象是一个将任意键映射为其在变形下的像的函数,以及一个包含所有长度和方向键中力的“力状态”对象,建立了变形状态与力状态之间的关系,即材料的本构模型。

实验】:文中未提供具体的实验细节和数据集名称,但提出的新框架能够将传统固体力学理论中的本构模型直接纳入细观动力学模型中,并允许在细观动力学材料模型中实施塑性不可压缩性条件,类似于传统塑性理论。