由一类新的本构关系描述的多孔弹性固体中刚性椭圆夹杂引起的应力集中

IF 1.8 3区 工程技术 Q2 ENGINEERING, MULTIDISCIPLINARY
Bhaskar Vajipeyajula, Pavitra Murru, K. R. Rajagopal
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引用次数: 1

摘要

在水泥混凝土、岩石、陶瓷、多孔金属、骨等生物材料等一大类多孔弹性固体中,材料模量取决于密度。当这些材料经历足够小的变形时,通常采用线性化弹性本构关系来描述其响应的方法将不允许我们捕捉材料模量对密度的依赖,因为这将意味着应力和线性化应变之间的非线性关系,因为依赖于密度意味着依赖于线性化应变的轨迹。在隐式本构关系的背景下,当物体发生小变形时,可以捕获材料模量对密度的依赖。我们在一类新的隐式本构关系中研究了由于刚性椭圆包含引起的应力集中,其中应力和线性化应变呈现线性,这使我们能够捕获材料模量对密度的依赖。我们发现,当忽略材料模量的密度依赖关系时,采用材料模量依赖于密度的本构关系得到的应力集中与采用经典线性化弹性本构关系得到的应力集中有显著不同。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Stress Concentration Due to the Presence of a Rigid Elliptical Inclusion in Porous Elastic Solids Described by a New Class of Constitutive Relations

Stress Concentration Due to the Presence of a Rigid Elliptical Inclusion in Porous Elastic Solids Described by a New Class of Constitutive Relations

In a large class of porous elastic solids such as cement concrete, rocks, ceramics, porous metals, biological materials such as bone, etc., the material moduli depend on density. When such materials undergo sufficiently small deformations, the usual approach of appealing to a linearized elastic constitutive relation to describe their response will not allow us to capture the dependence of the material moduli on the density, as this would imply a nonlinear relationship between the stress and the linearized strain in virtue of the balance of mass as dependence on density implies dependence on the trace of the linearized strain. It is possible to capture the dependence of the material moduli on the density, when the body undergoes small deformations, within the context of implicit constitutive relations. We study the stress concentration due to a rigid elliptic inclusion within a new class of implicit constitutive relations in which the stress and the linearized strain appear linearly, that allows us to capture the dependence of the material moduli on the density. We find that the stress concentration that one obtains employing the constitutive relation wherein the material moduli depend on the density can be significantly different from that obtained by adopting the classical linearized elastic constitutive relation to which it reduces to when the density dependence of the material moduli are ignored.

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来源期刊
Journal of Elasticity
Journal of Elasticity 工程技术-材料科学:综合
CiteScore
3.70
自引率
15.00%
发文量
74
审稿时长
>12 weeks
期刊介绍: The Journal of Elasticity was founded in 1971 by Marvin Stippes (1922-1979), with its main purpose being to report original and significant discoveries in elasticity. The Journal has broadened in scope over the years to include original contributions in the physical and mathematical science of solids. The areas of rational mechanics, mechanics of materials, including theories of soft materials, biomechanics, and engineering sciences that contribute to fundamental advancements in understanding and predicting the complex behavior of solids are particularly welcomed. The role of elasticity in all such behavior is well recognized and reporting significant discoveries in elasticity remains important to the Journal, as is its relation to thermal and mass transport, electromagnetism, and chemical reactions. Fundamental research that applies the concepts of physics and elements of applied mathematical science is of particular interest. Original research contributions will appear as either full research papers or research notes. Well-documented historical essays and reviews also are welcomed. Materials that will prove effective in teaching will appear as classroom notes. Computational and/or experimental investigations that emphasize relationships to the modeling of the novel physical behavior of solids at all scales are of interest. Guidance principles for content are to be found in the current interests of the Editorial Board.
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