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基于评分函数的汽车不锈钢板件冲压工艺优化
英文标题:Stamping process optimization on automobile stainless steel plate based on scoring function
作者:王亚1 2 
单位:1.濮阳职业技术学院 2.河南大学 
关键词:一模双件 冲压工艺 评分函数 整体压边 分区压边 变压边力 定压边力 
分类号:TG386.2
出版年,卷(期):页码:2023,48(9):56-63
摘要:

 以一种汽车用不锈钢板件为研究对象,考虑到生产效率和成本问题,设计了一种一模双件冲压工艺,同时为提高板件成形质量、降低冲压力,采用数值模拟技术对不锈钢板件的冲压成形过程进行了研究。以板件的最小厚度、最大厚度以及最大冲压力为考察指标,建立了评分函数,对整体压边定压边力方式、分区压边定压边力方式以及分区压边变压边力方式的成形效果进行了比较。结果表明:整体压边定压边力方式存在较大的拉裂和起皱风险,且无法获得符合尺寸要求的板件,而分区压边方式能有效避免拉裂和起皱风险,且变压边力的加载方式更好,成形中需要的冲压力也更小。最后,采用分区压边变压边力方式进行了不锈钢板件的成形试验,获得了无拉裂、起皱等缺陷的板件,验证了工艺的有效性。

 For a stainless steel plate for automobile, considering the problems of production efficiency and cost, a stamping process of one-die producing two-piece was designed, and in order to improve the forming quality and reduce the stamping force, the stamping process of stainless steel plate was studied by numerical simulation technology. Then, taking the minimum thickness, the maximum thickness and the maximum stamping force of plate as the inspection indexes, the scoring function was established, and the forming effects of integral blank holder with constant blank holder force, zonal blank holder with constant blank holder force and zonal blank holder with variable blank holder force were compared. The results show that the integral blank holder with constant blank holder force mode has a greater risk of cracking and wrinkling, and cannot obtain the plate that meets the size requirements, while the zonal blank holder mode can effectively avoid the risk of cracking and wrinkling, and the variable blank holder force loading mode is better which requires a smaller stamping force in the forming. Finally, the forming test of stainless steel plate was carried out by using zonal blank holder with variable blank holder force mode, and the plate without defects such as cracking and wrinkling was obtained to verify the effectiveness of the process. 

基金项目:
作者简介:
作者简介:王亚(1981-),男,学士,讲师 E-mail:wangya198102@163.com
参考文献:

 [1]郑家贤. 冲压工艺与模具设计实用技术[M]. 北京:机械工业出版社, 2005.


Zheng J X. Practical Technology of Stamping Process and Die Design[M]. Beijing: China Machine Press, 2005.

[2]于晓飞,刘鹏,薛仁杰,等.冷轧双相钢HC420/780DP冲压开裂原因分析及改进[J].塑性工程学报,2021,28(4):98-104.

Yu X F, Liu P, Xue R J, et al. Analysis and improvement of stamping cracking reason for coldrolled dualphase steel HC420/780DP[J]. Journal of Plasticity Engineering, 2021, 28(4):98-104.

[3]李锐,孟亮.基于Deform和正交试验的汽车轮毂盖板冲压工艺参数优化[J].制造技术与机床,2021,(8):147-150.

Li R,Meng L. Optimization of stamping process parameters for automobile hub cover plate based on deform and orthogonal test[J]. Manufacturing Technology & Machine Tool, 2021, (8):147-150.

[4]杨程,陈林,彭迎娇,等.台阶盒形件起皱和开裂改善[J].精密成形工程,2022,14(6):141-147.

Yang C, Chen L, Peng Y J, et al. Improvement of wrinkling and cracking for stepped box parts[J]. Journal of Netshape Forming Engineering, 2022, 14(6):141-147.

[5]谢晖,张敏,王诗恩,等.基于变间隙压边的铝板冲压成形工艺优化[J].热加工工艺,2016,45(3):113-116,120.

Xie H, Zhang M, Wang S E, et al. Process optimization of aluminum alloy sheet stamping forming based on variable gap blank holder[J]. Hot Working Technology, 2016, 45(3):113-116, 120.

[6]高双明,矫阿娇,崔礼春.某轿车后门内板冲压工艺及整形模具结构优化[J].锻压技术,2021,46(1):65-69.

Gao S M, Jiao A J, Cui L C. Stamping process and structure optimization of sizing die for inner panel of a car rear door[J]. Forging & Stamping Technology, 2021, 46(1):65-69.

[7]王康康,陈泽中,江楠森,等.基于GABP的汽车行李箱盖内板冲压成形工艺优化[J].塑性工程学报,2021,28(9):28-34.

Wang K K, Chen Z Z, Jiang N S, et al. Process optimization of stamping forming for inner panel of car trunk lid based on GABP[J]. Journal of Plasticity Engineering, 2021, 28(9):28-34.

[8]付泽民,乔涛涛,张锁怀,等.基于变压边力的方盒形工件拉深工艺研究[J].热加工工艺,2020,49(3):106-109.

Fu Z M, Qiao T T, Zhang S H, et al. Study on drawing process of square box workpiece based on variable blank holder force[J]. Hot Working Technology, 2020, 49(3):106-109.

[9]刘晓晶,刘翠红,王欣,等.车门外板分区变压边力充液拉深数值模拟研究[J].热加工工艺,2016,45(23):146-149.

Liu X J, Liu C H, Wang X, et al. Numerical simulation study on divided region variable blank holder force of automobile outdoor in hydrodynamic deep drawing[J]. Hot Working Technology, 2016, 45(23):146-149.

[10]蒋磊,张雄飞,王龙,等.基于变压边力的侧围外板成形研究[J].精密成形工程,2020,12(6):157-163.

Jiang L, Zhang X F, Wang L, et al. Forming of side outer panel based on variable blank holder force[J]. Journal of Netshape Forming Engineering, 2020, 12(6):157-163.

[11]陈炜.冲压工艺与模具设计[M].北京:科学出版社, 2015. 

Chen W. Stamping Process and Die Design[M]. Beijing: Science Press, 2015.

[12]王雷刚,孙昊,庄晓伟,等.爪极锻造工艺参数多目标优化[J].机械设计与制造,2017,(9):201-203.

Wang L G, Sun H, Zhuang X W, et al. Multiobjective optimization of claw pole forging process parameters[J]. Machinery Design & Manufacture, 2017, (9):201-203.

[13]陈燕,蔡伟亮,蔡一蓝.基于CAE与正交试验的多指标注塑成型工艺参数优化[J].工程塑料应用,2010,38(4):36-38.

Chen Y, Cai W L, Cai Y L. Optimization of multiindex injection parameters based on CAE and orthogonal test[J]. Engineering Plastics Application, 2010, 38(4):36-38.

[14]董奇,金飞翔,秦强,等.基于正交试验齿圈座热锻成形工艺优化[J].塑性工程学报,2021,28(8):18-22.

Dong Q, Jin F X, Qin Q, et al. Optimization of hot forging forming process based on orthogonal test for gear ring seat[J]. Journal of Plasticity Engineering, 2021, 28(8):18-22.
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