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Finite Element Analysis of Particle Assembly-water Coupled Frictional Contact Problem

机译:颗粒-水耦合摩擦接触问题的有限元分析

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In order to analyze precisely not only the elastoplastic deformation phenomenon of saturated particle assembly such as soils, grains, powdered and tablet medicines or three dimensional cellular materials, but also the frictional sliding phenomenon between saturated particle assembly and other bodies, a particle assembly-water coupled finite element program, that incorporates both the subloading surface and the subloading-friction models, is developed. Subsequently, simulations of the compaction behavior of saturated particle assembly under strain rate control are performed. It is revealed by the numerical experiment adopting the finite element program that the frictional sliding behavior of the contact boundary influences both the deformation behavior and the pore water flow behavior in the saturated particle assembly.
机译:为了不仅精确分析土壤,谷物,粉末和片剂药物或三维多孔材料等饱和颗粒组件的弹塑性变形现象,而且还分析饱和颗粒组件与其他物体(颗粒组件-水)之间的摩擦滑动现象耦合有限元程序,其中既包含子加载表面,又包含子加载-摩擦模型。随后,模拟了在应变率控制下的饱和颗粒组件的压实行为。通过采用有限元程序的数值实验表明,接触边界的摩擦滑动行为既影响饱和粒子组件中的变形行为,又影响孔隙水的流动行为。

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