网站首页期刊简介编委会过刊目录投稿指南广告合作征订与发行联系我们English
基于零件冲裁毛刺高度的冲压模具磨损预测
英文标题:Prediction of stamping die wear based on blanking burr height of part
作者:张恒 彭建飞 
单位:江苏省常熟中等专业学校 
关键词:冲裁毛刺 模具磨损 有限元仿真 冲裁间隙 冲裁速度 
分类号:TG386
出版年,卷(期):页码:2017,42(12):123-127
摘要:

 冲压模具的磨损会引起冲裁间隙的增大,导致零件冲裁毛刺高度的增加。利用DEFORM-2D软件对0.8 mm料厚的CK75弹簧钢板料的冲裁过程进行有限元仿真,分析了冲裁模具的磨损过程,深入研究了冲裁工艺参数对冲裁毛刺高度与模具磨损的影响变化趋势。研究结果表明:在研究的冲裁工艺参数范围内,零件冲裁毛刺的高度随着冲裁间隙与冲裁速度的不断增加而增大,而随着模具刃口圆角半径的增大则表现出先增加后减小的变化规律;冲裁凸模的磨损深度伴随着冲裁间隙的增大而逐渐减小,随着冲裁速度的增加而增大,而随着模具刃口圆角半径的增加表现出先增大后减小的变化规律。此外,借助冲压模具进行冲裁试验,冲裁毛刺高度的仿真值与试验值之间的最大相对误差为17.7%,从而为衡量模具磨损状况提供了一种比较直接的方法。

 

 The wear of stamping dies increases blanking clearance, which leads to the increase of blanking burr height. Thus, the blanking process of CK75 sheet with a thickness of 0.8 mm was simulated by software DEFORM-2D, and the wear process of blanking die was analyzed. Then, the influences of blanking process parameters on the blanking burr height and die wear were studied. The results show that the blanking burr height increases with the increase of blanking clearance and blanking speed, while it shows  trends of increasing at first and then decreasing with the increase of fillet radius of punch within the study range of blanking process parameter. However, the wear depth of punch decreases with the increase of blanking clearance, and it increases with the increase of blanking speed, while it shows trends of increasing at first and then decreasing with the increase of fillet radius of punch. In addition, the blanking experiment was carried out by stamping die, and the maximum relative error between simulation value and experimental value of blanking burr height is 17.7%, which provides a more direct approach to evaluate the die wear.

 
基金项目:
江苏省职业教育教学改革研究课题“数控专业现代学徒制技训课程的开发与实践研究”(ZYB157)
作者简介:
作者简介:张恒(1982-),男,硕士,高级技师 E-mail:skywallzh@163.com
参考文献:

[1]王通, 曲茂林. 基于Co元素含量检测的冲裁模具磨损研究[J]. 热加工工艺, 2014, 43(1): 148-150.

 

Wang T, Qu M L. Wear study on blanking die based on Co element content test[J]. Hot Working Technology, 2014, 43(1): 148-150.

 


[2]王晓莉, 穆瑞, 王彩虹. 基于光亮带长度的冲裁凸模磨损的仿真预测[J]. 锻压技术, 2017, 42(7): 112-116.

 

Wang X L, Mu R, Wang C H. Simulation prediction on blanking punch wear based on length of smooth zone[J]. Forging & Stamping Technology, 2017, 42(7): 112-116.

 


[3]Falconnet E, Makich H, Chambert J, et al. Numerical and experimental analyses of punch wear in the blanking of copper alloy thin sheet[J]. Wear, 2012, 296:598-606.

 


[4]Li M. An experimental investigation on cut surface and burr in trimming aluminum autobody sheet [J]. International Journal of Mechanical Sciences, 2000, 42(5):889-906.


[5]罗德洋, 胡朝辉, 廖毅, 等. 冲裁毛刺对疲劳寿命影响的数值仿真分析[J]. 锻压技术, 2016, 41(12): 46-52.

 

Luo D Y, Hu C H, Liao Y, et al. Influence of the blanking burr on fatigue life based on numerical simulation methods [J]. Forging & Stamping Technology, 2016, 41(12): 46-52.

 


[6]GB/T 288.1—2010,金属材料拉伸试验第1部分:室温试验方法[S].

 

GB/T 288.1—2010, Metallic materials—Tensile testing-Part 1: Method of test at room temperature[S].

 


[7]GB/T 5027—2016,金属材料薄板和薄带塑性应变比(r值)的测定[S].

 

GB/T 5027—2016, Metallic materials—Sheet and strip-Determination of plastic strain ratio[S].

 

 


[8]GB/T 5028—2008,金属材料薄板和薄带拉伸应变硬化指数(n值)试验方法 [S].

 

GB/T 5028—2008, Metallic materials—Sheet and strip-Determination of tensile strain hardening expronent[S].

 

 

 


[9]刘静, 张明, 陈浩. 基于响应面法的台阶式凸模冲裁工艺参数优化[J]. 塑性工程学报, 2016, 23(3): 52-57.

 

Liu J, Zhang M, Chen H. Parameters optimization of step-shaped-punch blanking based on response surface method [J]. Journal of Plasticity Engineering, 2016, 23(3): 52-57.

 


[10]徐卫国. 基于响应曲面法的波形弹簧片冲压工艺参数优化[J]. 锻压技术, 2017, 42(3): 175-179.

 

Xu W G. Optimization on stamping parameters of wave spring sheet based on response surface method [J]. Forging & Stamping Technology, 2017, 42(3): 175-179.

 


[11]刘奎武, 边巍. 基于响应面法的C75S弹簧钢冲裁工艺参数优化[J]. 锻压技术, 2016, 41(12): 32-36.

 

Liu K W, Bian W. Optimization on blanking process parameters for spring steel C75S based on response surface method [J]. Forging & Stamping Technology, 2016, 41(12): 32-36.

 


[12]王晓莉, 朱晓红, 穆瑞. 基于有限元仿真的冲裁毛刺控制方法[J]. 锻压技术, 2016, 41(11): 65-70.

 

Wang X L, Zhu X H, Mu R. Control method of blanking burr based on finite element simulation [J]. Forging & Stamping Technology, 2016, 41(11): 65-70.

 
服务与反馈:
本网站尚未开通全文下载服务】【加入收藏
《锻压技术》编辑部版权所有

中国机械工业联合会主管  中国机械总院集团北京机电研究所有限公司 中国机械工程学会主办
联系地址:北京市海淀区学清路18号 邮编:100083
电话:+86-010-82415085 传真:+86-010-62920652
E-mail: fst@263.net(稿件) dyjsjournal@163.com(广告)
京ICP备07007000号-9