On the basis of the three-dimensional(3D)random aggregate&mortar two-phase mesoscale finite element model,C++programming was used to identify the node position information of the interface between the aggregate an...On the basis of the three-dimensional(3D)random aggregate&mortar two-phase mesoscale finite element model,C++programming was used to identify the node position information of the interface between the aggregate and mortar elements.The nodes were discretized at this position and the zero-thickness cohesive elements were inserted.After that,the crack energy release rate fracture criterion based on the fracture mechanics theory was assigned to the failure criterion of the interface transition zone(ITZ)elements.Finally,the three-phase mesomechanical model based on the combined finite discrete element method(FDEM)was constructed.Based on this model,the meso-crack extension and macro-mechanical behaviour of coral aggregate concrete(CAC)under uniaxial compression were successfully simulated.The results demonstrated that the meso-mechanical model based on FDEM has excellent applicability to simulate the compressive properties of CAC.展开更多
提出了一种针对铆接结构进行疲劳寿命评估的新方法。首先,运用弹塑性理论模型求解出铆接造成的铆钉孔周边的残余应力。然后,通过三维弹塑性、接触非线性有限元分析(Finite element method,FEM),计算出载荷传递引起的铆钉孔周围的应力分...提出了一种针对铆接结构进行疲劳寿命评估的新方法。首先,运用弹塑性理论模型求解出铆接造成的铆钉孔周边的残余应力。然后,通过三维弹塑性、接触非线性有限元分析(Finite element method,FEM),计算出载荷传递引起的铆钉孔周围的应力分布。将这两个应力场进行叠加,并将沿径向距离疲劳危险部位应力最大处特定距离的点的应力,对照相关材料的光滑试件S-N曲线进行插值,得到疲劳寿命的评估结果。新方法与应力严重系数法(Stress severity factor,SSF)法进行了对比,并通过试验验证了该方法的可行性和准确性。展开更多
基金supported by the Key Projects of the National Science Foundation of China(Nos.52178190,52078250,11832013)
文摘On the basis of the three-dimensional(3D)random aggregate&mortar two-phase mesoscale finite element model,C++programming was used to identify the node position information of the interface between the aggregate and mortar elements.The nodes were discretized at this position and the zero-thickness cohesive elements were inserted.After that,the crack energy release rate fracture criterion based on the fracture mechanics theory was assigned to the failure criterion of the interface transition zone(ITZ)elements.Finally,the three-phase mesomechanical model based on the combined finite discrete element method(FDEM)was constructed.Based on this model,the meso-crack extension and macro-mechanical behaviour of coral aggregate concrete(CAC)under uniaxial compression were successfully simulated.The results demonstrated that the meso-mechanical model based on FDEM has excellent applicability to simulate the compressive properties of CAC.
文摘提出了一种针对铆接结构进行疲劳寿命评估的新方法。首先,运用弹塑性理论模型求解出铆接造成的铆钉孔周边的残余应力。然后,通过三维弹塑性、接触非线性有限元分析(Finite element method,FEM),计算出载荷传递引起的铆钉孔周围的应力分布。将这两个应力场进行叠加,并将沿径向距离疲劳危险部位应力最大处特定距离的点的应力,对照相关材料的光滑试件S-N曲线进行插值,得到疲劳寿命的评估结果。新方法与应力严重系数法(Stress severity factor,SSF)法进行了对比,并通过试验验证了该方法的可行性和准确性。