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基于数值仿真的台阶型定位销冷镦成形工艺优化
英文标题:Optimization on cold upsetting process for step positioning pin based on numerical simulation
作者:王琳 王明强 
单位:江苏省连云港工贸高等职业技术学校 江苏科技大学 
关键词:冷镦成形 台阶型定位销 模具设计 有限元模拟 正交试验 
分类号:TH162
出版年,卷(期):页码:2019,44(7):96-100
摘要:

为降低成本、提高生产效率,摒弃传统凭借经验试模修模的方法,提出一种台阶型定位销的冷镦成形工艺方法。基于塑性成形理论,针对零件特征进行简单的模具设计,并分析影响零件成形的主要因素,结合DEFORM-3D有限元模拟及正交试验方法,设计上冲头速度、凹模锥角、凹模过渡圆角、摩擦系数、浮动凸模倒角的5因素4水平的正交试验,以零件在成形过程中模具所受载荷最小为优化目标,获得最优工艺参数。结果表明,当浮动凸模倒角为0.3 mm、凹模锥角为10°、凹模过渡圆角为0.1 mm、上冲头速度为6 mm·s-1、摩擦系数为0.10时,模具的成形载荷最小。最后基于生产实际,与仿真结果进行对比,验证了试验的可行性。

 In order to reduce cost and improve production efficiency, a cold upsetting process of step positioning pin was proposed, and the traditional method of die modification by experience was abandoned. Based on the theory of plastic forming, the simple die design was carried out according to the characteristics of parts, and the main factors affecting the forming of parts were analyzed. Combined with DEFORM-3D finite element simulation and orthogonal test method, the orthogonal test of five factors and four levels was designed including speed of upper punch, cone angle of die, transition fillet of die, friction coefficient and chamfer of floating punch, and the optimum process parameters were obtained with the optimization objective of minimizing the load on the die during the forming process. The results show that when the chamfer of floating punch is 0.3 mm, the cone angle of die is 10°, the transition fillet of die is 0.1 mm, the speed of upper punch is 6 mm·s-1 and the friction coefficient is 0.10, the forming load of die is minimum. Finally, based on the actual production, the feasibility of the experiment is verified by comparing with the simulation results.
 

基金项目:
作者简介:
王琳(1968-),男,硕士,正高级讲师,E-mail:767566286@qq.com;通讯作者:王明强(1964-),男,硕士,教授,E-mail:1024038901@qq.com
参考文献:

[1]刘铭心, 张东民, 吴艳云,. 薄壁六角螺母浮动冷镦工艺分析及模具结构优化[J]. 锻压技术, 2018, 43(8): 17-22.


Liu M X, Zhang D M, Wu Y Y, et al. Analysis on floating cold heading for thin-walled hex nut and its die structure optimization[J].Forging & Stamping Technology, 2018, 43(8): 17-22.


[2]肖志玲,李世瑜,刘华, .小型薄壁套管多工位冷镦挤工艺[J].锻压技术,2017,42(3):15-19.


Xiao Z L, Li S Y, Liu H, et al.Multi-stage cold forging and extruding process of small thin wall casing[J].Forging & Stamping Technology,2017,42(3):15-19.


[3]赵军, 易际明. 基于数值模拟的厚板精冲挤压过程分析[J]. 锻压装备与制造技术, 2011,46(4):71-73.


Zhao J, Yi J M. Study on fine-blanking and extrusion process of thick plate based on numerical simulation [J].China Metalforming Equipment & Manufacturing Technology2011, 46(4):71-73.


[4]石君. 基于正交试验管廊固定螺母冷镦成形的分析及优化[J]. 锻压技术, 2018,43(3):31-35, 51.


Shi J. Analysis and optimization on cold heading of pipe gallery fixing nut based on orthogonal test[J]Forging & Stamping Technology,2018,43(3):31-35, 51.


[5]周宏明, 张衡, 张祥雷, . 钻头冷镦参数建模及成形工艺优化[J]. 中国机械工程, 2016, 27(21):2962-2966.


Zhou H M, Zhang H, Zhang X L, et al. Drill bit cold heading parametric modeling and forming process optimizaton[J].China Mechanical Engineering, 2016, 27(21):2962-2966.


[6]张艳芳, 周敏. 大高径比凸台冷镦成形极限研究[J]. 热加工工艺, 2014, 43(23):160-162.


Zhang Y F, Zhou M. Research on cold upsetting forming limit of large height-diameter ratio boss[J]. Hot Working Technology, 2014, 43(23):160-162.


[7]张许俊, 时培成, 陈超伟. 转向球头一次成型工艺及仿真分析[J]. 内燃机与配件, 2018, (1):112-115.


Zhang X J, Shi P C, Chen C W. Primary forming technology and simulation analysis of steering ball head[J]. Internal Combustion Engine & Parts, 2018, (1):112-115.


[8]张东民, 刘铭心, 盛育东, . 薄壁六角螺母冷镦过程中模具磨损模拟分析及参数优化[J]. 润滑与密封, 2017, 42(10):114-117.


Zhang D M, Liu M X, Sheng Y D, et al. Process analysis and parameter optimization on die wear in cold heading for thin-walled hex nut[J]. Lubrication Engineering, 2017, 42(10): 114-117.


[9]刘子杨. 1Cr17Ni2托板螺母冷镦挤工艺技术研究及模具优化[J]. 模具制造, 2018, (11): 62-66.


Liu Z Y. Technological research of cold forging and die optimization for the 1Cr17Ni2 anchor nut[J]. Die & Mould Manufacture, 2018, (11): 62-66.


[10]张磊, 容幸福. 锥形螺母冷镦挤数值模拟及模具设计[J]. 机械工程与自动化, 2015, (2):142-143, 148.


Zhang L, Rong X F. Numerical simulation and die design of cold heading extrusion for taper nut [J]. Mechanical Engineering & Automation, 2015, (2):142-143, 148.


[11]魏科, 王高潮, 李宁,. 基于DEFORM和正交试验法的前轴辊锻工艺优化[J]. 塑性工程学报, 2012, 19(1):6-10.


Wei KWang G CLi Net al. Research on optimization of front-axle roll forging technique based on DEFORM-3D and orthogonal experimental method[J]. Journal of Plasticity Engineering2012, 19(1):6-10.


[12]吴梦陵, 张珑. 基于正交法的汽车前罩板注塑工艺参数优化研究[J]. 塑料, 2009, 38(1):5-8.


Wu M L, Zhang L. Parameter optimization for the automobile hood in injection molding based on orthogonal method[J]. Plastic, 2009, 38(1):5-8.

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