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基于DEFORM的冲头和刀口相对位置偏移量对模具及产品的影响
英文标题:Influence of relative position deviation of punch and edge on die and product based on DEFORM
作者:段晓斌 何仕荣 江鸿潮 任鹤 
单位:上海理工大学 
关键词:冲裁 相对位置偏移量 DEFORM 疲劳强度 毛刺 合模 
分类号:TG385.2
出版年,卷(期):页码:2017,42(7):132-136
摘要:

针对生产加工中出现的产品不良、冲头和刀口崩坏等现象,通过DEFORM仿真,分析了冲裁模具冲头与刀口的相对位置偏移量对模具和产品的影响,具体分析了模具冲头与刀口的相对位置偏移量对模具所受压力、冲头和刀口的疲劳强度、产品毛刺大小等几方面的严重危害,得出冲压模具冲头与刀口的相对位置偏移量对模具所受力的大小影响不大,但会降低冲头和刀口的疲劳强度、影响产品毛刺大小,降低产品生产效率和模具寿命,影响产品质量,并提出通过进行人工合模操作或通过使用合模机可以很好地改善冲头与刀口的相对位置偏移量,提高模具精度和产品质量。

According to the issues of bad product and collapsing of punch and edge, the influences of relative position deviation of punch and edge on the die and product were analyzed by DEFORM simulation. Then, the critical issues including the effect of relative position deviation of punch and edge on the die pressure, punch and edge fatigue strength, burr size etc. were analyzed. The facts show that the relative position deviation of punch and edge has little effect on the pressure, but the fatigue strength of punch and edge is weakened and the burr size is also influenced. Therefore, the production efficiency and the service life of die are reduced, and the product quality is influenced. Furthermore, the relative position deviation of punch and edge is improved by die closing machine or manual closing operation, and the die precision and product quality are also improved.

基金项目:
作者简介:
作者简介:段晓斌(1992-),男,硕士研究生,E-mail:dxbsxq@163.com;通讯作者:何仕荣(1964-),男,博士,教授,E-mail:1542919162@qq.com
参考文献:

[1]GB/T 16743—2010, 冲裁间隙[S].


GB/T 16743—2010, Blanking clearance[S].


[2]蔺锋. 板料合理冲裁间隙确定方法的研究[D].沈阳: 沈阳航空航天大学,2013.


Lin F. The Research of Determining Method on Reasonable Sheet Metal Blanking Clearance [D].Shenyang:Shenyang Aerospace University, 2013.


[3]田光辉,林红旗.模具设计与制造[M].北京: 北京大学出版社,2015.


Tian G H, Lin H Q. Die Design and Manufacture [M]. Beijing: Peking University Press, 2015.


[4]胡建军.DEFORM-3D塑性成形CAE应用教程[M].北京:北京大学出版社,2011.


Hu J J. DEFORM-3D Plastic Forming CAE Application Tutorial [M]. Beijing: Peking University Press, 2011.


[5]袁佳健,胡仲勋,毛建中,. 国产锆合金板料冲裁间隙的有限元分析[J]. 锻压技术, 2016, 41(6):4-9.


Yuan J J, Hu Z X, Mao J Zet al. Finite element analysis on sheet metal blanking clearance of domestic Zr alloys[J]. Forging & Stamping Technology, 2016, 41(6):4-9.


[6]俞振胜.以疲劳观点分析模具强度的设计[J].模具技术,1999,(6):41-45.


Yu Z S. Mold strength design in view of fatigue analysis [J]. Die and Mould Technology, 1999, (6):41-45.


[7]刘彦国,徐创文.冲压件机械去毛刺工艺[J]. 模具制造,2003, (5):36-38.


Liu Y G, Xu C W. Stamping mechanical deburring process [J]. Die & Mould Manufacture, 2003, (5): 36-38.


[8]张正修,马新梅,张镇. 冲压毛刺及其去除[J].工厂建设与设计,1995,(6):17-21.


Zhang Z X, Ma X M, Zhang Z. Stamping burr and remove [J]. Construction & Design for Engineering, 1995, (6): 17-21.


[9]张桂侠. 提高冲压模具使用寿命的方法探讨[J]. 锻压技术,2011,36(6):90-94.


Zhang G X. Service life improvement method of stamping die[J]. Forging & Stamping Technology, 2011, 36(6): 90-94.


[10]冯文杰,胡玲珊,陈莹莹. 提高花键轴冷挤压模具寿命研究[J]. 现代制造工程,2010,(3):97-99.


Feng W J, Hu L S, Chen Y Y. The research for prolonging the life of spline shaft cold-extrusion die[J]. Modern Manufacturing Engineering, 2010, (3): 97- 99.


[11]韦林. 基于CAE技术的铝型材挤压模具疲劳寿命仿真分析[D].长沙:湖南大学,2008.


Wei L. The Fatigue Life-span Analysis of Profiled Aluminum Extrusion Die Based on CAE [D]. Changsha: Hunan University, 2008.


[12]王欠颖. 影响冲压模具寿命及耐用度的分析[J]. 科技创业家,2014, (3):58.


Wang Q Y. Analysis of the life and durability of stamping die[J]. Science and Technology Entrepreneurs, 2014, (3): 58.


[13]江秉华,成虹,彭志平. 冲压模具间隙对模具寿命的影响[J]. 机械设计与制造,2010,(9):229-231.


Jiang B H, Cheng H, Peng Z P. Stamping die life of die gapon [J]. Machinery Design & Manufacture, 2010, (9): 229- 231.


[14]何仕荣.一种小型精密合模机[P].中国: CN204036914U, 2014-12-24.


He S R. A small precision mold closing machine[P]. China: CN204036914U, 2014-12-24.


[15]胡成武,崔双好,李文元,. 变间隙拉深对圆筒形件拉深制耳影响的试验研究[J]. 塑性工程学报,2016, 23(2):75-80.


Hu C W, Cui S H, Li W Y, et al. Experiment study on drawing earing of cylindrical cups by variable gap deep drawing[J]. Journal of Plasticity Engineering, 2016, 23(2):75-80.

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