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Title:Design of final forging punch for hollow valve based on cross wedge rolling preformed blank
Authors: Jiang Xiaodan Zhang Zhengrong Lin Xijia 
Unit: Guangdong University of Technology 
KeyWords: hollow valve  final forging  mold design  numerical simulation 
ClassificationCode:TG315
year,vol(issue):pagenumber:2016,41(2):109-112
Abstract:
The punch's shape size in the process of cross wedge rolling and final forging of the hollow valve was studied. According to the characteristics of the performed blank in final forging process, three kinds of final forging punches with different initial dimensions were designed, and the influences of the punches on the final forging process of preformed blank were studied by combining experiment with numerical simulation. The simulation results show that if the punch mandrel is too short in the final forging process, the front end of the punch mandrel appears the phenomenon of material gathering, and the cavity dimensions of the final forging cannot be formed. However, the experimental results show that the over-long punch mandrel will lead to the difficulty of unmold in final forging in the actual production. According to the analysis on results of both simulation and experiment, the design principle of the punch mandrel was obtained and the appropriate length of the punch mandrel was determined. Based on above research, the reasonable shape and size of the final forging was obtained by the designed punch.
 
Funds:
广东省“扬帆计划”引进创新创业团队专项资助(201312G02)
AuthorIntro:
蒋小丹(1990-),女,硕士研究生
Reference:
[1]吕翠峰, 张杰. 中空气门同轴度的控制方法探讨[J].内燃机与配件, 2013, 5(5):9-11.Lv C F, Zhang J. Discussion on control method of hollow valve axiality [J]. Internal Combustion Engine & Parts,2013,5(5):9-11.

[2]森井宏和,平尾健一郎.空心发动机气门的制造方法:中国专利, CN201380004333.5[P].2014-08-20.Morii Hiroshi, Hirao Kenichiro. Manufacturing method of hollow engine valve: China Patent, CN201380004333.5 [P].2014-08-20.

[3]曲文强, 董兵, 聂元龙, 等. 盘端密闭中空充钠气门的制作方法: 中国专利, 201410249979.6[P]. 2014-06-06.Qu W Q, Dong B, Nie Y L, et al. The manufacture method of the airtight hollow infilling sodium valve: China Patent, 20141 0249979.6[P]. 2014-06-06.

[4]赵磊.电镦锻成形多场耦合数值模拟及工艺参数优化[D]. 重庆:重庆大学, 2013.Zhao L. Multi-field Coupling Numerical Simulation and Process Parameters Optimization of Electric Upsetting [D]. Chongqing: Chongqing University,2013.

[5]莫东强.气门热锻模具的优化设计和性能研究[D]. 广州:华南理工大学,2015.Mo D Q. Optimization Design and Research of Performance of Valve Hot Forged Die [D]. Guangzhou: South China University of Technology, 2015.

[6]林喜佳,章争荣,莫东强,等. 中空气门毛坯的终锻过程研究[J]. 锻压技术,2015,40(11):13-18.Lin X J, Zhang Z R, Mo D Q, et al. Research on final forging process of the blank of hollow valve[J]. Forging & Stamping Technology,2015,40(11):13-18.

[7]Ji H C, Liu J P, Wang B Y, et al. Numerical analysis and experiment on cross wedge rolling and forging for engine valves [J].Journal of Materials Processing Technology, 2015, 221: 233-242.

[8]晏建军. DEFORM楔横轧成形工艺工业应用[J]. 智能制造, 2015, (2-3):49-51.Yan J J. Industrial application of DEFORM cross wedge rolling process [J]. Intelligent Manufacturing, 2015, (2-3): 49-51.

[9]邓子玉, 任亮, 李艳娟, 等. 成形角对空心件楔横轧收口工艺的影响[J]. 锻压技术, 2014,39 (3):52-56.Deng Z Y, Ren L, Li Y J, et al. Effect of forming angle on the cross wedge rolling process of hollow-ware heals [J].Forging & Stamping Technology, 2014,39(3):52-56.

[10]林喜佳,章争荣,莫东强,等. 预成形毛坯过渡圆角半径对气门终锻成形过程的影响[J].锻压技术, 2015, 40(3):12-17.Lin X J, Zhang Z R, Mo D Q, et al. Influence of transition fillet radius of preformed blank on final forging of valve [J].Forging & Stamping Technology, 2015,40(3):12-17.
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