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FVS0812铝合金半球形件拉深成形的有限元分析
英文标题:Finite element analysis on drawing process of FVS0812 aluminum alloy semi-spheroid
作者:陈水先 张辉 曾新祥 邓学峰  
单位:湖南大学材料科学与工程学院 湖南大学材料科学与工程学院 湘南学院物理系 湖南大学材料科学与工程学院 湖南长沙410082 湘南学院物理系 湖南郴州423000 湖南长沙410082 湖南郴州423000 湖南长沙410082 
关键词:FVS0812铝合金  半球形件  拉深  有限元分析法 
分类号:TG386.32
出版年,卷(期):页码:2008,33(2):128-133
摘要:
采用DEFORM-3D有限元分析软件对FVS0812铝合金半球形件在升温条件下的单层拉深、叠层拉深和包覆拉深工艺进行了分析。结果表明:工件出现断裂时对应损伤(Damage)临界值是0.24;单层拉深工艺中,应力分布差异大,应变分布不均匀;叠层拉深工艺在一定程度上对改善工件受力情况及应变分布有着良好效果;包覆拉深工艺使工件的应变、应力分布状态发生了很大的改变,使工件的应变分布趋于均匀。对比实验结果,损伤区域的预测与实验结果相吻合。
With the help of the finit element analysis software DEFORM-3D,the singl-layer drawing,the double-layer drawing and the packed-layer drawing technology on drawing of FVS0812 aluminum alloy semi-spheroid under the conditions of warming were analyzed.The result shows that the critical Damage value is 0.24 when the workpiece fractures.In the single-layer drawing technology,the stress distributed difference is big and the strain distribution is not uniform;The double-drawing technology to improve the workpiece's stress situation and the strain distribution in the certain degree has a good effect.The packed drawing technology causes the workpiece's strain and stress distribution condition to have a very big change,enables the workpiece's strain distribution to be uniform.Compared with the result of experiments,the predicted Damage area is in accordance with the experimental results.
基金项目:
国家科技部创新基金立项项目(07C26214301749);; 湖南省自然科学基金项目(07JJ5067)
作者简介:
参考文献:
[1]袁武华,陈振华.多层喷射沉积技术的研究及进展[J].材料导报,2000,(1):17-21.
[2]张宝昌.有色合金及其热处理[M].西安:西北工业大学出版社,1993.
[3]Xiao Yude,Li Songrui,Li Wenxian,et al.Second phases ofrapidly solidified AlFeCrZrVSi alloy and their thermal stabilities[J].Cent.South Univ.Technol.,1998,5(1):3-5.
[4]于忠奇,赵亦希,林忠钦.汽车用铝合金板拉深性能评估参数[J].中国有色金属报,2004,(10):1689-1693.
[5]Daoming Li,Amit Ghosh.Tensile deformation behavior of a-luminumalloys at warmforming temperatures[J].MaterialsScience and Engineering,2003,A352:279-286.
[6]郭华英,金淼.板料在半圆形拉深筋中的变形研究[J].锻压技术,2006,31(6):29-32.
[7]Daoming Li,Amit K.Ghosh.Biaxial warmforming behav-ior of aluminum sheet alloys[J].Journal of Materials Pro-cessing Technology,2004,(145):281-293.
[8]Moon Y H,Kang Y K,Park J W,et al.Tool temperaturecontrol to increase the deep drawability of aluminum 1050sheet[J].International Journal of Machine Tools&Manu-facture,2001,41:1283-1294.
[9]Jain M,Allin J,Bull MJ.Deep drawing characteristics ofautomotive aluminumalloys[J].Materials Science and Engi-neering,1998,A256:69-82.
[10]Bolt P J,Lamboo N A P M,Rozier P J C M.Feasibility ofwarmdrawing of aluminiumproducts[J].Journal of Materi-als Processing Technology,2001,15:118-121.
[11]Takuda H,Mori K,Masuda I,et al.Finite element si mula-tion of warmdeep drawing of aluminumalloy sheet when ac-counting for heat conduction[J].Journal of Materials Pro-cessing Technology,2002,120:412-418.
[12]周朝辉,曹海桥,吉卫,等.DEFORM有限元分析系统软件及其应用[J].热加工工艺,2003,(4):51-52.
[13]Scientific Forming Technologies Corporation.Overview ofDEFORM[CP/DK].DEFORM-3D Manual.
[14]林新波.DEFORM-2D和DEFORM-3D CAE软件在模拟金属塑性变形过程中的应用[J].模具技术,2000,(3):75-80.
[15]肖景容,姜奎华.冲压工艺学[M].北京:机械工业出版社,2000.
[16]朗利辉,张士宏,康达昌.板液压成形及无模充液拉深技术[J].塑性工程学报,2002,9(4):29-34.
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