期刊文献+

基于线性变换的板材成形回弹工艺优化研究 被引量:1

Process Optimal Control of Sheet Metal Forming Springback Based on Linear Transformation
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摘要 提出了基于线性变换的板材冲压工艺优化回弹控制,通过正交试验分析建立了回弹进行策略优化模型.采用改进的基于线性变换适应度函数的进化策略算法为优化器,以板料冲压成形后回弹量最小为目标,完成了对多曲率件冲压成形工艺参数的优化设计,得到了最佳的工艺参数,在最佳的工艺参数条件下进行了冲压成形回弹试验,结果表明基于进化策略的工艺优化回弹控制方法可以寻找出最佳的工艺方案,有效地控制减小回弹. The paper presents a process optimal control scheme of sheet metal forming springback based on linear transformation and evolutionary strategy . The springback prediction model is established on orthogonal test analysis. The evolutionary strategy based on linear transformation fitness function is used as optimization algorithm, the smallest sheet metal forming springback as the goal, to complete the process parameter optimization design of multi-curvature forming, thus obtaining the best process parameters. The sheet metal forming springback test is conducted in the best process parameters. The experiment results indicate that the best process scheme can be achieved with the process optimal springback control method based on evolutionary strategy, the springback can be controlled and reduced effectively.
出处 《微电子学与计算机》 CSCD 北大核心 2010年第5期35-38,41,共5页 Microelectronics & Computer
基金 广东省工业攻关项目(2004A11403002)
关键词 回弹 工艺优化 线性变换 进化策略 springback processing optimization linear transformation evolutionary strategy
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参考文献6

  • 1Yang M, Manabe K I, Nishimura H. Development of real -time process control system for precision and flexible bending with an online database [ J ] J. Mats. Processing Technology, 1996,60 ( 1/4) : 249 - 254.
  • 2于晓冬,董红斌.一种改进的进化策略研究[J].微电子学与计算机,2009,26(2):58-61. 被引量:2
  • 3张海建,陈向东,王世海.一种遗传算法优化的图像模糊边缘检测方法[J].微电子学与计算机,2008,25(4):105-107. 被引量:7
  • 4Siegert K, Altan T, Nakagawa T. Development and manufacture of dies for car body production[M]. Germany: Annls of the CIRP, 1997:535- 543.
  • 5Nash J C, Walker Smith M. Nonlinear parameter estimation[M]. New York, Basel,Marcel Dekker. Inc. , 1987.
  • 6Ray T, Tai K, Seow K C. An evolutionary algorithm for constrained optimization[C]//Proceedings of the Genetic and Evolutionary Computing Conference. Singapore, 2000: 230 - 238.

二级参考文献8

共引文献7

同被引文献33

  • 1李粤,胡文锋,郭志忠.复杂汽车覆盖件回弹的数值模拟方法研究[J].拖拉机与农用运输车,2007,34(3):16-17. 被引量:2
  • 2Ecole Nationale D,Inge nieurs de Monastir, Route Ibn Eljaz- zar,et al. Effect of the elasticity formulation in finite strain on springback prediction[J]. Computers and Structures,2010, (88): 796-805.
  • 3Mehmet Firat, Bilgin Kaftanoglub, Orhan Eser. Sheet metal forming analyses with an emphasis on the springback deforma- tion [J]. Journal of Materials Processing Technology,2008, (196): 135-148.
  • 4Ghaei A,Crreen D E,Taherizadeh A. Semi-implicit numerical integration of Yoshida-Uemori two-surface plasticity model[J]. International Journal of Mechanical Sciences,2010, (52): 531-540.
  • 5Hong Seok Kimb, Muammer Koc . Numerical investigations on springback characteristics of aluminum sheet metal alloys in warm forming conditions [J]. Journal of Materials Processing technology, 2008, (204): 370-383.
  • 6Giuseppe Ingarao,Rosa Di Lorenzo. A new progressive design methodology for complex sheet metal stamping operations: Coupling spatially differentiated restraining forces approach and multi-objective optimization [J]. Computers and Structures, 2010, (88): 625-638.
  • 7Dejardina S,Thibaudb S ,Gelina J C,et al. Experimental inves- tigations and numerical analysis for improving knowledge of in- cremental sheet forming process for sheet metal parts[J]. Jour- nal of Materials Processing Technology,2010,(210) :363-369.
  • 8Mehmet Firat,Osman H Mete,Umit Kocabicak,et al. Stamp- ing process design using FEA in conjunction with orthogonal regression [J]. Finite Elements in Analysis and Design,2010, (46) : 992-1000.
  • 9Rui P,Cardoso R,Jeong Whan Yoon. Stress integration method for a nonlinear kinematic/isotropic hardening model and its characterization based on polycrystal plasticity[J]. In- ternational Journal of Plasticity, 2009, (25): 1684-1710.
  • 10Lee M G,Kim S J,Wagoner R H,et al. Constitutive modeling for anisotropic/asymmetric hardening behavior of magnesium alloy sheets: Application to sheet springback[J]. International Journal of Plasticity,2009 ,(25) :70-104.

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