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汽车保险杠热冲压成形及坯料形状设计
英文标题:Hot stamping and blank shape design for vehicle bumper
作者:桂中祥 张宜生 李洪庆 马鸣图 葛锐 
单位:华中科技大学 中国汽车工程研究院有限公司 武汉钢铁(集团)公司 
关键词:热冲压成形 模具设计 坯料形状优化 数字化热成形试验线 模具温度 
分类号:TH16
出版年,卷(期):页码:2013,38(3):19-23
摘要:

以某型号汽车的保险杠为对象,设计了全尺寸的热冲压成形模具;结合夹持和定位要求,对坯料形状进行了优化设计,通过工艺实验验证模具及板料设计的可靠性,并检验了热成形零件的微观组织及力学性能。结果表明:采用形状优化的板坯,在机械手输送过程中,其位置稳定性大大提高;金相分析显示热成形保险杠获得了完全马氏体组织,抗拉强度达到1550MPa,洛氏硬度为47.5 HRC,且各测试点硬度十分均匀,伸长率可达6%;在保证板料临界冷却速率的前提下,提高模具温度有助于降低成形力和稳定淬火温度。

The full-scaled hot stamping dies were designed for an automotive bumper, with the well-designed blank shape incorporated into clamping and positioning, experiments were conducted to verify the reliability of the die and sheet metal blank design, as well as the tests for microstructure and mechanical properties of the hot-stamped part. The results show that position stability of the blank is greatly improved during the robotic transport process after shape optimization. Metallographic analysis demonstrates  that a fully martensitic microstructure is obtained in the hot-formed bumper, the tensile strength is about 1550MPa, Rockwell hardness is 47.5 HRC, and the hardness of each test point is very uniform, while the elongation is up to 6%. It is beneficial to the forming force reduction and stabilization of the quenching temperature by an increase in die temperature on condition that the critical cooling rate of sheet blank is guaranteed.

基金项目:
国家自然科学基金资助项目(51275185)
作者简介:
参考文献:


[1]Karbasian H, Tekkaya A E. A review on hot stamping[J]. Journal of Materials Processing Technology, 2010, (210): 2103-2118.
[2]Song L F, Ma M T, Guo Y H, et al. Research status and progress of hot stamping[J]. Engineering Science, 2012, 10(6), 51-61.
[3]Hoffmann H, So1 H, Steinbeiss H. Design of hot stamping tools with cooling system [J]. Annals of the CIRP, 2007, 56 (1): 269-272.
[4]Schieck F, Hochmuth C, Polster S, et al.Modern tool design for component grading incorporating simulation models, efficient tool cooling concepts and tool coating systems[J]. CIRP Journal of Manufacturing Science and Technology, 2011 (4):189-199.
[5]朱超.超高强度钢板的热冲压成形模具设计及优化[D].长春:吉林大学,2010.Zhu C. Designing and Optimizing of Hot Stamping Tools of Ultra High Strength Steels[D]. Changchun:Jilin University, 2010.
[6]周全.汽车超高强度硼钢板热成形工艺研究[M]. 上海:同济大学,2007.Zhou Q. Study on the Hot Stamping Process of High Strength Steel Blanks [M]. Shanghai:Tongji University, 2007.
[7]马宁. 高强度钢板热成形技术若干研究[D]. 大连:大连理工大学,2011.Ma N. Research on Hot Forming of High Strength Steel [D]. Dalian:Dalian University of Technology, 2011.
[8]郭幼丹. 高强度钢板热冲压成形模具设计[J]. 热加工工艺,2011,40(7):177-180.Guo Y D. Design on hot forming die of high\|strength steel plate [J]. Hot Working Technology, 2011, 40(7): 177-180.
[9]Mori K, Maki S, Tanaka Y. Warm and hot stamping of ultra high tensile strength steel sheets using resistance heating[J]. Annals of the CIRP, 2005, 54(1): 209-212.
[10]Li Y,Jeon  Y  P, Kang C  G. Experimental assessment of high temperature formability of boron steel sheet manufactured with a spring compound bending die [J]. Journal of Engineering Materials and Technology, 2012, 134(021019): 1-8.
[11]Bakri Abdul Hay, Brahim Bourouga, Christine Dessain. Thermal contact resistance estimation at the blank/tool interface: experimental approach to simulate the blank cooling during the hot stamping process[J]. International Journal of Material Forming, 2010,(3):147-163.
[12]Salomonsson P, Oldenburg M, kerstrom P. Experimental and numerical evaluation of the heat transfer coefficient in press hardening [J]. Steel Research International, 2009, 11(80): 841-845.
[13]Wang Chao, Zhang Yisheng,Tian Xiaowei,et al. Thermal contact conductivity estimation and experimental validation in hot stamping process[J]. SCIENCE CHINA Technological Sciences, 2012, 55(7): 1852-1857.
[14]徐伟力,艾健,罗爱辉,等.钢板热冲压新技术介绍[J].塑性工程学报,2009,16(4):39-43.Xu W L, Ai J, Luo A H, et al,. Introduction of sheet metal hot\|forming[J]. Journal of Plasticity Engineering, 2009, 16(4):39-43.
[15]Griesbach B, Hora P.Continuous press hardening[A].7th International Conference and Workshop on Numerical Simulation of 3D Shteet Metal Forming Process[C]. Switzerland :Interlaken, 2008.
[16]桂中祥,张宜生,王子健.基于热—力—相变耦合的轻量化B柱热冲压成形全过程仿真[J].锻压技术,2012,37(6):193-197.Gui Z X, Zhang Y S, Wang Z J. Simulation of a lightweight B\|pillar during hot stamping process with thermo-mechanical -metallurgical model[J]. Forming & Stamping Technology, 2012, 37(6): 193-197.
[17]姜超,单忠德,庄百亮,等.初始成形温度对超高强钢热冲压件力学性能的影响[J].金属热处理,2011,36(12):66-69.Jiang C, Shan Z D, Zhuang B L, et al. Effect of initial deformation temperature on mechanical properties of ultra\|high strength steel hot stamping parts[J]. Heat Treatment of Metals, 2012, 36(11): 66-69.
[18]郝明,柳玉起,章志兵,等.基于Pro/E的钣金件毛坯展开快速仿真系统的研究与开发[J].锻压技术,2010,35(6):35-39.Hao M, Liu Y Q, Zhang Z B, et al., Study and exploitation of fast analysis system based on Pro/ E for metal blank unfolding[J]. Forming & Stamping Technology, 2010, 35(6): 35-39.
[19]王峥,张宜生,刘会强.热冲压生产线中工业机器人输送路径的优化[J].锻压技术,2012,37(3):36-39.Wang Z, Zhang Y S, Liu H Q. Optimization of industrial robots transmission path in hot stamping production line [J]. Forming & Stamping Technology, 2012, 37(3): 36-39.

 

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