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首页> 外文期刊>Granular matter >A constitutive model for granular materials with evolving contact structure and contact forces-Part Ⅰ: framework
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A constitutive model for granular materials with evolving contact structure and contact forces-Part Ⅰ: framework

机译:颗粒材料构成模型,具有演化接触结构和接触力部分 - 部分:框架

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摘要

This and the companion paper present a constitutive model for granular materials with evolving contact structure and contact forces, where the contact structure and contact forces are characterised by some statistics of grain-scale entities such as contact normals and contact forces. And these statistics are actually the fabric or force terms in the stress-force-fabric (SFF) equation. The stress-strain response is obtained by inserting the predicted fabric or force terms from evolution equations into the SFF equation. Discrete element modelling is used to verify the slightly modified SFF equation and also to obtain the data of how the contact structure and contact forces evolve in various loading paths. It is demonstrated that a normalised contact force is a better measure of the contact forces in polydisperse granular assemblies and strong contacts should be contacts with larger normalised contact forces. The modified SFF equation is shown to predict the stress accurately. The constitutive equations regarding the response of the contact structure and contact forces are presented and they along with the SFF equation form a constitutive model, which is found capable of capturing the observed phenomena correctly and predicting the mechanical response in various loading conditions. The model is shown to be an extension to the hypoplastic models with more state variables.
机译:该和伴随纸具有颗粒材料的构成模型,具有演进的接触结构和接触力,其中接触结构和接触力的特征在于晶粒规格的一些统计数据,例如接触法线和接触力。这些统计数据实际上是应力 - 织物(SFF)方程中的织物或力术语。通过将预测的织物或力术语从进化方程插入SFF方程来获得应力 - 应变响应。离散元素建模用于验证略微修改的SFF方程,也可以获得在各种装载路径中的接触结构和接触力如何发展的数据。证明归一化接触力是更好地测量多分散颗粒组件中的接触力,并且强触点应具有较大的归一化接触力。被修改的SFF方程被示出为准确地预测压力。提出了关于接触结构和接触力的响应的本构剖方程,并且它们与SFF方程一起形成一组成型模型,其被发现能够正确地捕获观察到的现象并预测各种负载条件下的机械响应。该模型被显示为具有更多状态变量的次塑性模型的扩展。

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