Rapid Finite Element Analysis of Bulk Metal Forming Process Based on Deformation Theory

被引:0
作者
WANG PengDONG XianghuaiFU LijunDepartment of Plasticity TechnologyShanghai Jiao Tong UniversityShanghai China [200030 ]
机构
关键词
bulk metal forming; finite element method(FEM); deformation theory; rapid simulation;
D O I
10.13228/j.boyuan.issn1006-706x.2009.05.004
中图分类号
TG301 [压力加工理论];
学科分类号
080201 ; 080503 ;
摘要
The one-step finite element method(FEM),based on plastic deformation theory,has been widely used to simulate sheet metal forming processes,but its application in bulk metal forming simulation has been seldom investigated,because of the complexity involved.Thus,a bulk metal forming process was analyzed using a rapid FEM based on deformation theory.The material was assumed to be rigid-plastic and strain-hardened.The constitutive relationship between stress and total strain was adopted,whereas the incompressible condition was enforced by penalty function.The geometrical non-linearity in large plastic deformation was taken into consideration.Furthermore,the force boundary condition was treated by a simplified equivalent approach,considering the contact history.Based on constraint variational principle,the deformation FEM was proposed.The one-step forward simulation of axisymmetric upsetting process was performed using this method.The results were compared with those obtained by the traditional incremental FEM to verify the feasibility of the proposed method.
引用
收藏
页码:23 / 28+42 +42
页数:7
相关论文
共 50 条
[41]   Finite element analysis of material flow in flat-rivet clinching process [J].
Chao Chen ;
Yawen Ouyang ;
Denglin Qin .
The International Journal of Advanced Manufacturing Technology, 2021, 116 :1961-1974
[42]   Finite element analysis of material flow in flat-rivet clinching process [J].
Chen, Chao ;
Ouyang, Yawen ;
Qin, Denglin .
INTERNATIONAL JOURNAL OF ADVANCED MANUFACTURING TECHNOLOGY, 2021, 116 (5-6) :1961-1974
[43]   Analyzing Deformation of a Cationic Photopolymerized Epoxy Adhesive during the Curing Process in UV Irradiation and Dark Reaction based on Finite Element Method and Measurement [J].
Takahashi, A. ;
Sekiguchi, Y. ;
Taki, N. ;
Okamura, M. ;
Sato, C. .
JOURNAL OF ADHESION, 2024, 100 (07) :599-615
[44]   Propagation Operator Based Boundary Condition for Finite Element Analysis [J].
Morimoto, Keita ;
Iguchi, Akito ;
Tsuji, Yasuhide .
IEEE PHOTONICS JOURNAL, 2020, 12 (04)
[45]   QCM Mass Sensitivity Analysis Based on Finite Element Method [J].
Hu, Jianguo ;
Huang, Xianhe .
IEEE TRANSACTIONS ON APPLIED SUPERCONDUCTIVITY, 2019, 29 (02)
[46]   A finite element based simulation framework for robotic grasp analysis [J].
Dharbaneshwer, S. J. ;
Thondiyath, Asokan ;
Subramanian, Sankara J. ;
Chen, I-Ming .
PROCEEDINGS OF THE INSTITUTION OF MECHANICAL ENGINEERS PART C-JOURNAL OF MECHANICAL ENGINEERING SCIENCE, 2021, 235 (13) :2482-2495
[47]   Dynamic analysis of a rig shafting vibration based on finite element [J].
Ngo V.T. ;
Xie D. ;
Xiong Y. ;
Zhang H. ;
Yang Y. .
Frontiers of Mechanical Engineering, 2013, 8 (3) :244-251
[48]   A Smoothed Finite Element Method (S-FEM) for Large-Deformation Elastoplastic Analysis [J].
Liu, Jun ;
Zhang, Zhi-Qian ;
Zhang, Guiyong .
INTERNATIONAL JOURNAL OF COMPUTATIONAL METHODS, 2015, 12 (04)
[49]   Incremental Sheet Metal Forming: Numerical Simulation and Rapid Prototyping Process to make an Automobile White-Body [J].
Nguyen Duc-Toan ;
Seung-Han, Yang ;
Dong-Won, Jung ;
Tae-Hoon, Choi ;
Young-Suk, Kim .
STEEL RESEARCH INTERNATIONAL, 2011, 82 (07) :795-805
[50]   Finite element analysis of tilting of metal in bar rolled with three-roll mill [J].
Asakawa, M ;
Kobayashi, K ;
Katayama, Y ;
Shioga, D ;
Yanagimoto, J .
ISIJ INTERNATIONAL, 2006, 46 (04) :553-559