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6061铝合金板料的成形性能及数值模拟研究
英文标题:Formability and numerical simulation investigation of 6061 aluminum alloy plates
作者:白云瑞 陶杰 郭训忠 李华冠 王文涛 丁月霞 
单位:南京航空航天大学 材料科学与技术学院  江苏华阳金属管件有限公司 
关键词:6061铝合金板材 真应力应变曲线 塑性应变比 数值模拟 
分类号:TU395
出版年,卷(期):页码:2013,38(4):177-181
摘要:

通过单向拉伸试验获得了6061铝合金原始T6态和退火态板材的基本力学性能,进而得出了6061铝合金的真实应力应变曲线。在此基础上,用不同本构方程对实验数据进行拟合,然后与材料应变硬化曲线相比较。结果表明,采用含有幂函数的本构方程对两种状态的板材试验数据拟合较好,基于单向拉伸试验获得两种状态板材在真应变为8%时的塑性应变比分别为0.996和0.712。此外,用有限元软件Dynaform对6061铝合金管材进行绕弯模拟,对获得的成形性能参数进行了验证。

Basic material properties of original and annealed 6061 aluminum alloy plates were obtained using uniaxial tensile test. Then the true stress and strain curve of 6061 aluminum alloy was got. The experimental data were fitted with different constitutive equations on this basis, then the results were compared with strain hardening curves of materials. The results show that power function is accurate for the two states of the sheet. Plastic strain ratios for the above plates are 0.996 and 0.712 based on the results from uniaxial tensile test when the true strain is 8%. Besides, a rotary draw bending simulation of 6061 aluminum alloy tube by means of finite element simulation software Dynaform was conducted and the simulation result was analyzed to verify the forming parameters.
 

基金项目:
国家自然科学基金资助项目(51205196,51071086)
作者简介:
白云瑞(1989-),男,硕士研究生
参考文献:


[1]Jogi B F, Brahmankar P K, Nanda V S, et al. Some studies on fatigue crack growth rate of aluminum alloy 6061 [J]. Materials Processing Technology, 2008, 20 (1): 380-384.
[2]Taban E, Gould J E, John C L. Dissimilar friction welding of 6061-T6 aluminum and AISI 1018 steel: properties and microstructural characterization [J]. Materials and Design, 2010, 31: 2305-2311.
[3]Rajeev N, Jiang Wenping , Molian P. Synthesis of diamond-like carbon coatings on aluminum 6061 T-91 substrates by laser sintering of ultra-nanocrystalline diamond powders [J]. Surface and Coatings Technology , 2008, 202 : 2935-2944.
[4]苑世剑, 王小松. 内高压成形技术研究与应用新进展 [J]. 塑性工程学报, 2008, 15(2): 22-24.  Yuan S J, Wang X S. Developments in researches and applications of tube hydroforming [J]. Journal of Plasticity Engineering, 2008,15(2):22-24.
[5]Ahmetoglu M, Altan T. Tube hydroforming: state of the art and future trends [J]. Journal of Materials Processing Technology,2000,98:25-33.
[6]黎伯豪, 言淑纯. 6063铝合金化学成分的选择 [J]. 轻合金加工技术, 2001, 29 (11): 29-30.   Li B H, Yan S C. Selecting for 6063 aluminium alloy chemical composition [J]. Light Alloy Fabrication Technology, 2001, 29(11):29-30.
[7]Zou Y S, Zhou K, Wu Y F, et al. Structure, mechanical and tribological properties of diamond-like carbon films on aluminum alloy by arc ion plating [J].Vacuum,2012,86:1141-1146.
[8]刘兵, 彭超群, 王日初, 等. 大飞机用铝合金的研究现状及展望 [J]. 中国有色金属学报, 2010,(9):1705-1715. Liu B, Peng C Q, Wang R C, et al. Recent development and prospects for giant plane aluminum alloys [J]. The Chinese Journal of Nonferrous Metals,2010,(9):1705-1715.
[9]罗亚军, 杨曦, 何丹农, 等. 板料成形中的有限元数值模拟技术 [J]. 金属成形工艺, 2000, 18 (6) : 18-20. Luo Y J, Yang X, He D N, et al. Finite element simulation of sheet metal forming processes [J]. Metal Forming Technology, 2000, 18(6):18-20.
[10]于汇泳, 祁文军, 昌雪. 有限元数值模拟技术在汽车冲压成形中的应用 [J]. 现代制造工程,  2005, (S1) : 71-73. Yu H Y, Qi W J, Chang X. Finite element simulation technology in the automotive stamping [J]. Modern Manufacturing, 2005,(S1):71-73.
[11]刘静, 杨合, 詹梅, 等. 铝合金管力学性能的拉伸试验研究 [J]. 锻压技术, 2010, 35 (2) : 113-116. Liu J, Yang H, Zhan M, et al. Material property investigation of aluminium alloy tubes with tensile test [J]. Forging & Stamping Technology, 2010,35(2):113-116.
[12]Ozturk F, Esener E, Toros S, et al. Effects of aging parameters on formability of 6061-O alloy [J]. Materials and Design, 2010, 31 (10) : 4847-4852.
[13]Jun L, Tan M J, Jarfors A E W, et al. Formability in AA5083 and AA6061 alloys for light weight applications [J]. Materials and Design, 2010, 31 (s) : 66-70.
[14]钱晓明. 6061铝合金均匀化热处理效果评价及工艺优化研究 [D]. 长沙: 中南大学, 2011. Qian X M. 6061 Aluminum Alloy Homogenization Heat Treatment Effect Evaluation and Process Optimization [D]. Changsha: Central South University, 2011.
[15]俞汉清, 陈金德. 金属塑性成形原理 [M]. 北京: 机械工业出版社, 1999. Yu H Q, Cheng J D. The Principle of Metal Forming [M]. Beijing: China Machine Press, 1999.
[16]GB/T 228-2010,金属材料拉伸试验室温试验方法[S]. GB/T 228-2010,Metallic materials-tensile testing-method of test at room temperature [S].
[17]李飞舟,王积元,陈立峰. 板料成形CAE设计及应用 [M]. 北京: 北京航空航天大学出版社, 2010. Li F Z, Wang J Y, Chen L F . Sheet Metal Forming CAE Design and Application [M]. Beijing: Beihang University Press,2010.
[18]张蓉. 304不锈钢拉深成形的物理模拟与数值模拟研究 [D]. 长沙: 中南大学, 2007.  Zhang R. 304 Stainless Steel Deep Drawing Physical Modeling and Numerical Simulation Studies [D]. Changsha: Central South University, 2007.
[19]夏渊. 奥氏体不锈刚冷轧板材成形性能及耐蚀性能研究 [D]. 兰州: 兰州理工大学, 2011. Xia Y. The Research on Forming Performance and Corrosion Resistance of Cold Rolled Austenitic Stainless Steel Plates [D]. Lanzhou: Lanzhou University of Technology, 2011.
[20]吴建军. 板料成形基础 [M]. 西安: 西北工业大学出版社, 2004. Wu J J. The Basis of Sheet Metal Forming [M]. Xi'an: NorthWestern Poly technical University Press, 2004.
[21]余均武. 不锈钢自救器筒体拉深工艺研究 [D]. 长沙: 中南大学, 2004. Yu J W. Stainless Steel Self-Rescuer Cylinder Drawing Process [D]. Changsha: Central South University, 2004.
[22]GB/T 5027-2007,金属材料薄板和薄带塑性应变比(r值)的测定[S].GB/T 5027-2007,Metallic materials-sheet and strip-determination of plastic strain ratio [S].

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