车身覆盖件回弹控制的成形工艺多目标优化

上传人:li45****605 文档编号:25917940 上传时间:2017-12-20 格式:PDF 页数:6 大小:516.18KB
返回 下载 相关 举报
车身覆盖件回弹控制的成形工艺多目标优化_第1页
第1页 / 共6页
车身覆盖件回弹控制的成形工艺多目标优化_第2页
第2页 / 共6页
车身覆盖件回弹控制的成形工艺多目标优化_第3页
第3页 / 共6页
车身覆盖件回弹控制的成形工艺多目标优化_第4页
第4页 / 共6页
车身覆盖件回弹控制的成形工艺多目标优化_第5页
第5页 / 共6页
点击查看更多>>
资源描述

《车身覆盖件回弹控制的成形工艺多目标优化》由会员分享,可在线阅读,更多相关《车身覆盖件回弹控制的成形工艺多目标优化(6页珍藏版)》请在金锄头文库上搜索。

1、 45112011M11上 海 交 通 大 学 学 报JOURNAL OF SHANGHAI JIAOTONG UNIVERSITYVol. 45 No. 11 Nov. 2011 l: 2010-11-19:SE1S(50805050)Te:S(1970-),3,28g,q,1Z_/.(Tel. ): 020-38471131;E-mail: wodeyouxiang2008126. com.cI|:1006-2467(2011)11-1673-05+ 1683&qeS阳湘安1, 2, 阮 锋2(1.,Cf,.eSJ .g,f,.7475-T7351hF? J.,2009,33( 5) :6

2、26-630.LIU Ming, ZHANG Kun, HUANG Min, et al. Fa-tigue damage resistance characteristics of 7475-T7351aluminum alloy J . Chinese Journal of Rare Metals,2009, 33(5):626-630.2 Ltjering G, Albrecht J, Sauer C, etal. Theinfluenceof soft, precipitate-free zones at grain boundaries in Tiand Al alloys on t

3、heir fatigueand fracture behavior J.Materials Science and Engineering A, 2007, 468( 11):201-209. 3 Murakami Y. Metal fatigue: effects of small defectsand nonmetallic inclusion M . Oxford: Elsevier Sc-ience Ltd, 2002. 4 Papadopoulos I V, Davoli P, Gorla C, et al. A com-parative study of multiaxial hi

4、gh-cycle fatigue criteriafor metals J . International Journal Fatigue, 1997,19(3): 219-235. 5 Pessard E, M orel F, Morel A. Modelling the role ofnon-metallic inclusions on the anisotropic fatiguebehavior of forged steel J . International journal ofFatigue, 2011,33( 4) :568-577. 6 Morel F, Huyen N, P

5、lasticity and damage heterogene-ity in fatigue J . Theoretical and Applied FractureMechanics, 2008, 49(1):98-127. 7 Weibull W. A statistical distribution function of wideapplicability J . Journal of Applied Mechanics, 1951,18:293-297. 8 Pessard E. Comportement anisotrope en fatigue descomposants mca

6、niques forgs D . Angers: * coleDoctorale Sciences et Technologies de IInformation etdes Mathmatiques de universitdAngers, 2009.(1672:) 9 Li H Z, Dong X H, Shen Y, et al. Size effect onspringback behavior due to plastic strain gradienthardening in microbending process of pure aluminumfoils J . Mat Sc

7、i Eng A, 2010,527: 4497-4504.10 ,RP,Za,.wr J ., 2007,39(4): 479-485.FENG Xiu-yan, GUO Xiang-hua, FANG Da-i ning,et al. Three-point microbend size effects for pure Nifoils J . Chin J TheorAppl Mech, 2007,39(4): 479-485. 11 Li H Z, Dong X H, Wang Q, etal. Determination ofmaterial intrinsiclength and s

8、train gradient hardeningin microbending process J. Int J Solids Struct,2011, 48: 163-174.(1677:) 8 Song J H, Huh H, Kim S H. Stress-based spring-back reduction of a channel shaped auto-body partwith high-strength steel using response surface meth-odology J. Journal of Engineering Materials andTechno

9、logy, 2007, 129(3): 397-406. 9 Ingarao G, Lorenzo R D, Micari F. Analysis ofstamping performances of dual phase steels: A mult-iobjective approach to reduce springback and thinningfailure J. Materials and Design, 2009, 30: 4421-4433. 10 )L,:_,.EKl5K J.S, 2006,17( S1) : 67-70.CHEN Jie-shi, ZHOU Xian-bin, LIU Chang-li.Sheet metal forming limit prediction with minimumthickness criterion in numerical simulation J. ChinaMechanical Engineering, 2006, 17(S1): 67-70.1683 11肖 骥,等:7475铝合金板材的各向异性疲劳性能

展开阅读全文
相关资源
相关搜索

当前位置:首页 > 学术论文 > 期刊/会议论文

电脑版 |金锄头文库版权所有
经营许可证:蜀ICP备13022795号 | 川公网安备 51140202000112号