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轴类件拔长V型砧和四砧径向锻造锻透性研究
英文标题:Research on forging penetration efficiency in the process of V-shaped anvil stretching and four-anvil radial forging for long-axis workpiece
作者:魏贤明 曹杰 汪开忠 
单位:安徽工业大学 马鞍山钢铁股份有限公司 
关键词:拔长 径向锻造 V型砧 四砧径向锻造 锻透性 有限元模拟 
分类号:TG316.2
出版年,卷(期):页码:2017,42(4):21-26
摘要:

轴类大锻件拔长可以采用V型砧、四砧径向锻造等。为了解这些拔长方式对锻件芯部变形的影响,应用有限元软件SuperForm模拟了拔长锻造过程,对比分析了V型砧和四砧径向锻造两种工艺方法的锻透性。研究表明:V型砧拔长,锻后锻件内部等效应变分布不均匀,各处变形差异较大,经3道次拔长后,锻件芯部锻透性较好,给定条件下的累积等效应变约为1.6;四砧径向锻造,锻后锻件内部等效应变分布比较均匀,但锻件芯部锻透性较差,给定条件下芯部等效应变小于0.2,且端部一定长度范围内,芯部等效应变更小,经4道次拔长后,芯部累积等效应变为0.8左右。

The long-axis heavy forging workpiece is stretched by V-shaped anvil forging and four-anvil radial forging, etc. In order to understand the influences of stretching methods on deformation in the core of forging workpiece, the stretching process was simulated by the finite element software SuperForm, and the V-shaped anvil forging and four-anvil radial forging were compared from the aspect of forging penetration efficiency. The research results show that the equivalent strain distribution of the internal forging workpiece is uneven with big difference by V-shaped anvil stretching. However, the high forging penetration efficiency in the core of forging workpiece is obtained by three passes stretching, and the cumulative equivalent strain is about 1.6 under the given condition. But, the equivalent strain distribution of the internal forging workpiece is uniform by four-anvil radial forging, the forging penetration efficiency in the core of forging workpiece is bad, and the equivalent strain is less than 0.2 under the given condition. In addition, the equivalent strain in the core of forging workpiece in the end within a certain distance is smaller, and the cumulative equivalent strain is about 0.8 after four passes streching.

基金项目:
安徽省教育厅自然科学研究项目(KJ2013A061)
作者简介:
魏贤明(1989-),男,硕士研究生 E-mail:1124905495@qq.com 通讯作者:曹杰(1971-),男,博士,副教授 E-mail:caojie910@ahut.edu.cn
参考文献:

[1]赵俊伟,陈学文.大型锻件锻造工艺及缺陷控制技术的研究现状及发展趋势[J].锻压装备与制造技术,2009,4(9): 23-28.


Zhao J W, Chen X W. The current stage and development trend of forging technology and defect control for heavy forging[J]. China Metalforming Equipment & Manufacturing Technology, 2009,4(9): 23-28.


[2]宫成立,关谷涵.大型锻件内部缺陷分析及消除内裂纹的措施[J].机械设计与制造,2008,(5):152-153.


Gong C L, Guan G H. Analysis on large-scale forging internal defect and measures of eliminating internal cracks[J].Machinery Design & Manufacture, 2008, (5): 152-153.


[3]果栋.四砧拔长中心压实工艺参数研究[D].秦皇岛:燕山大学,2012.


Guo D. Research on Four-Anvil JTS Process Parameters[D].Qinhuangdao:Yanshan University2012.


[4]王玉宝,任胜利. 四锤头锻造原理及实施效果分析[J].大型铸锻件,2012, (1):44-47.


Wang Y B, Ren S L. Four-hammer forging principle and effect analysis[J]. Heavy Casting and Forging, 2012, (1): 44-47.


[5]田峰,贾琛.大型锻件的锻造工艺研究进展[J].热加工工艺,2015, 445):10-12.


Tian F, Jia C. Research progress on forging process for large forgings[J].Hot Working Technology, 2015,445):10-12.


[6]董节功,周旭东,朱锦洪,等.径向锻造三维成形锻透性的数值模拟[J].机械工程材料,2007,31(3):76-78.


Dong J GZhou X DZhu J Het al. FEM simulation of forging penetration efficiency of radial forging in 3D[J]. Materials for Mechanical Engineering, 2007, 31(3):76-78.


[7]余琼, 董湘怀,吴云剑.径向压下率与送进量对径向锻造工件质量的影响[J].锻压技术,2015,40(8):64-70.


Yu QDong X HWu Y J. Influences of radial reduction ratio and feed ratio on radial forging quality[J]. Forging & Stamping Technology, 2015, 40(8): 64-70.


[8]栾谦聪,董湘怀,吴云剑.径向锻造工艺参数对锻透性的影响[J].中国机械工程,2014,25(22):3098-3103.


Luan Q CDong X HWu Y J. Effects of process parameters on FPE in radial forging processes[J]. China Mechanical Engineering, 2014, 25(22): 3098-3103.


[9]牛立群, 张琦,解明,等.基于FORGE-3D径向锻造工艺的数值模拟[J]. 锻压技术,2017,42(2):167-171.


Niu L QZhang QXie Met al. Numerical simulation of radial forging process based on FORGE-3D[J]. Forging & Stamping Technology, 2017, 42(2): 167-171.


[10]Zhou X D, Liu X R, Xing J B. Forging penetration efficiency of steel H13 stepped shaft radial forging with GFM forging machine[J]. Journal of Shanghai Jiaotong University: Science, 2012, 17(3):315-318.

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