» Constitutive Equations

Constitutive Equations

A constitutive equation, or constitutive relation, is a mathematical relationship that describes how a specific material responds to external stimuli. In continuum mechanics, it connects 运动学 quantities like strain to kinetic quantities like stress. For example, Hooke’s Law, [latex]\boldsymbol{\sigma} = \mathbf{C} : \boldsymbol{\varepsilon}[/latex], is a constitutive equation for linear elastic solids, relating the stress tensor [latex]\boldsymbol{\sigma}[/latex] to the strain tensor [latex]\boldsymbol{\varepsilon}[/latex].

Constitutive equations are essential because the fundamental laws of continuum 机械 (conservation of mass, momentum, and energy) are universal and apply to all materials. However, different materials behave differently under the same loading conditions. A steel beam, a column of water, and a piece of rubber will all respond uniquely to an applied force. Constitutive equations provide the material-specific information needed to close the system of governing equations and obtain a unique solution for a given problem. They are determined experimentally and represent a mathematical model of a material’s behavior.

The complexity of constitutive equations varies greatly. The simplest models are for linear, isotropic materials. For a linear elastic solid, Hooke’s Law relates stress and strain linearly via a fourth-order stiffness tensor [latex]\mathbf{C}[/latex]. For a Newtonian fluid, the stress is linearly related to the rate of strain. However, many real-world materials exhibit much more complex behavior. Non-linear elasticity is needed for materials like rubber that undergo large deformations. Plasticity models describe permanent deformation after a yield stress is exceeded. Viscoelastic models, used for polymers, exhibit both fluid-like and solid-like characteristics, with their response depending on the rate of loading. Developing accurate constitutive models for advanced materials like composites, biological tissues, or granular materials is a major and ongoing area of research in mechanics.

UNESCO Nomenclature: 2210
– Mechanics

类型

Abstract System

Disruption

Substantial

使用方法

Widespread Use

Precursors

  • Robert Hooke’s experiments on springs (‘ut tensio, sic vis’)
  • Isaac Newton’s concept of viscosity in fluids
  • The development of the mathematical concepts of stress and strain
  • Experimental testing of material properties

应用

  • material selection in engineering design based on stress-strain behavior
  • simulation of non-newtonian fluids like ketchup or blood in cfd
  • modeling plasticity and permanent deformation in metal forming processes
  • geotechnical engineering for describing the behavior of soil and rock under load

专利:

Potential Innovations Ideas

级别需要会员

您必须是!!等级!!会员才能访问此内容。

立即加入

已经是会员? 在此登录
Related to: constitutive equation, material model, stress-strain relationship, Hooke’s law, Newtonian fluid, viscoelasticity, plasticity, material properties

发表回复

您的邮箱地址不会被公开。 必填项已用 * 标注

迎接新挑战
机械工程师、项目或研发经理
有效的产品开发

可在短时间内接受新的挑战。
通过 LinkedIn 联系我
塑料金属电子集成、成本设计、GMP、人体工程学、中高容量设备和耗材、受监管行业、CE 和 FDA、CAD、Solidworks、精益西格玛黑带、医疗 ISO 13485

我们正在寻找新的赞助商

 

您的公司或机构从事技术、科学或研究吗?
> 给我们发送消息 <

接收所有新文章
免费,无垃圾邮件,电子邮件不分发也不转售

或者您可以免费获得完整会员资格以访问所有受限制的内容>这里<

Related Invention, Innovation & Technical Principles

滚动至顶部

你可能还喜欢