Simulation of Large Forging Flat-Anvil Stretching Process and Its Optimization

被引:0
作者
陈锟 [1 ,2 ]
杨弋涛 [1 ]
邵光杰 [1 ]
刘克家 [2 ]
机构
[1] School of Materials Science and Engineering,Shanghai University
[2] School of Materials Science and Engineering,Shanghai Institute of Technology
关键词
large forging; flat-anvil stretching; numerical simulation; optimization;
D O I
暂无
中图分类号
TG316 [锻造工艺];
学科分类号
080201 ; 080503 ;
摘要
In this paper,a kind of mathematic method for optimizing stretching process of large forgings is proposed.Distributions of effective strain within forged ingots is described by a Gauss function,which is obtained from the simulation of flat-anvil stretching process.Successive stretching is expressed by the superimposing Gauss functions.Optimized stretching process,with both homogeneous and certain strain in the center of forgings,is presented by derivation of this function.The relationship between effective strain and the values of feed is obtained during the successive stretching with a rotation angle of 90° and a feed displacement of 1/2 anvil width.The optimization result is verified by finite element simulation.Optimized value of feed obtained using this method can ensure both uniformity and forging penetration.It provides mathematic model and theoretic basis of optimizing large forging stretching process.
引用
收藏
页码:199 / 202
页数:4
相关论文
共 3 条
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Theoretical and laboratory modelling of the closure of metallurgical defects during forming of a forging[J] . G. Banaszek,A. Stefanik.Journal of Materials Processing Tech. . 2006 (1)
[2]  
Application of hydrostatic integration parameter for free-forging and rolling[J] . Morihiko Nakasaki,Ichiro Takasu,Hiroshi Utsunomiya.Journal of Materials Processing Tech. . 2006 (1)
[3]   A comprehensive numerical analysis of the effect of relative feed during the operation of stretch forging of large ingots in profiled anvils [J].
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