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A Simple Model for Elastic-Plastic Contact of Granular Geomaterials

机译:粒状地质材料弹性塑料接触的简单模型

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摘要

We propose a simple elastic-plastic contact model by considering the interaction of two spheres in the normal direction, for use in discrete element method (DEM) simulations of geomaterials. This model has been developed by using the finite element method (FEM) and nonlinear fitting methods, in the form of power-law relation of the dimensionless normal force and displacement. Only four parameters are needed for each loading-unloading contact process between two spheres, which are relevant to material properties evaluated by FEM simulations. Within the given range of material properties, those four parameters can be quickly accessed by interpolating the data appended or by regression functions supplied. Instead of the Von Mises (V-M) yield criterion, the Drucker–Prager (D-P) criterion is used to describe the yield behavior of contacting spheres in this model. The D-P criterion takes the effects of confining pressure, the intermediate principal stress, and strain rate into consideration; thus, this model can be used for DEM simulation of geomaterials as well as other granular materials with pressure sensitivity.
机译:我们通过考虑两个球体在正常方向上的相互作用,以便用于造型的几法材料模拟来提出简单的弹性塑料接触模型。该模型是通过使用有限元方法(FEM)和非线性拟合方法而开发的,以无量纲法线力和位移的幂律关系的形式。两个球体之间的每个装卸接触过程只需要四个参数,这与由FEM模拟评估的材料特性相关。在给定的材料属性范围内,可以通过插入附加的数据或提供的回归函数来快速访问这四个参数。代替Vonmmes(V-M)屈服标准,Drucker-PRAGER(D-P)标准用于描述该模型中接触球的产量行为。 D-P标准考虑了限制压力,中间主应力和应变率的影响;因此,该模型可用于造型的造影和具有压力灵敏度的其他颗粒材料。

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