Finite element analysis of fluid-structure interaction in the hydromechanical deep drawing process

被引:0
作者
Mohammed Abbadeni
Ibrahim Zidane
Hamou Zahloul
Aurelian Fatu
Mohamed Hajjam
机构
[1] Hassiba Benbouali University,Mechanical Engineering Departement
[2] CNRS-Poitiers University-ENSMA,Pprime Institute, Mechanical Engineering & Complex Systems Department
来源
Journal of Mechanical Science and Technology | 2017年 / 31卷
关键词
Fluid film; Hydromechanical deep drawing; Reynolds equation; Lubrication mechanism;
D O I
暂无
中图分类号
学科分类号
摘要
In this work, we attempt to explain the lubrication mechanisms at the blank-die contact zone during the hydromechanical deep drawing process and to simulate such process. An analytical model is proposed for the non-uniform fluid pressure distribution in the cavity and for the hydrodynamic flow of the fluid film between the blank and die. The hydrodynamic flow is calculated by solving the Reynolds equation. The proposed model is implemented in the finite element software ABAQUS/Explicit. After validating the approach, the influences of the blank holder force and the fluid pressure on the formability of the blank metal are investigated using the AA5086 aluminum alloy. The results show that the choice of an appropriate blank holder force can reduce the strain in the blank and prevent the risk of fracture.
引用
收藏
页码:5485 / 5491
页数:6
相关论文
共 45 条
[1]  
Hama T.(2009)Outflow characteristics of a pressure medium during sheet hydroforming ISIJ International 49 239-246
[2]  
Kurisu K.(2009)Correlation between sheet deformation and hydraulic pressure variation during sheet hydroforming ISIJ International 49 1736-1743
[3]  
Matsushima K.(1998)Development of hydromechanical deep drawing Journal of Materials Processing Technology 83 14-25
[4]  
Fujimoto H.(2005)Investigation into hydrodynamic deep drawing assisted by radial pressure - Part II: Numerical analysis of the drawing mechanism and the process parameters Journal of Materials Processing Technology 166 150-161
[5]  
Takuda H.(2000)Numerical model for the oil pressure distribution in the hydromechanical deep drawing process Journal of Materials Processing Technology 103 74-79
[6]  
Hama T.(2015)Numerical and experimental investigations of hydromechanical deep drawing process of laminated aluminum/steel sheets Journal of Manufacturing Processes 18 131-140
[7]  
Matsushima K.(2004)Key technologies of the simulation of the hydrodynamic deep drawing of irregular parts Journal of Materials Processing Technology 150 40-47
[8]  
Kitajima T.(2012)Numerical simulation of sheet hydroforming taking into account analytical pressure and fluid flow Journal of Materials Processing Technology 212 2020-2030
[9]  
Fujimoto H.(2015)Die design for deep drawing with high-pressured water jet utilizing computer fluid dynamics based on Reynolds equation Journal of Materials Processing Technology 218 99-106
[10]  
Takuda H.(1978)An average flow model for determining effects of three-dimensional roughness on partial hydrodynamic lubrication Journal of Lubrication Technology 100 12-17