网站首页期刊简介编委会过刊目录投稿指南广告合作征订与发行联系我们English
侧围内板跌落变形仿真及设计优化
英文标题:Simulation and design optimization on drop deformation for side wall inner panel
作者:张博凡 罗家兵 郭杰 
单位:上汽通用汽车有限公司 
关键词:侧围内板 收料 塑性变形 跌落变形 Dynaform 
分类号:TG376.2
出版年,卷(期):页码:2021,46(2):71-75
摘要:
针对汽车覆盖件尺寸和重量大,易在悬臂式自动取送料装置放置零件到收料台过程中产生塑性变形的问题,采用Dynaform软件对侧围内板零件进行跌落仿真分析,以便能够在车辆开发阶段判断零件是否存在变形风险。首先,对原始数模在Dynaform中建模仿真,并利用相似零件实物验证了分析的准确性。同时,对零件的风险区域通过增加加强筋进行了设计优化,仿真分析了优化后的零件的跌落过程,通过现场软、硬模分别验证了该跌落仿真的有效性。跌落变形仿真可以在同步工程阶段评估零件在线末收料时是否发生塑性变形,以便及时进行设计优化,避免后期发生工程更改,降低开发成本。
For the problems that it is easy to generate plastic deformation in the process of placing the parts on the receiving platform by the automatic feeding device with cantilever for the automobile cover part with large sizes and weights, and the drop deformation of side wall inner panel was simulated and analyzed by software Dynaform to determine whether there was the deformation risk of parts during the development stage of vehicle. First, the Dynaform model and simulation were conducted by the original digital model, and the accuracy of analysis was verified by similar parts. Meanwhile, the risk area of part was designed and optimized by adding stiffener, and the drop process of optimized part was simulated and analyzed. Furthermore, the effectiveness of the drop simulation was verified by the actual cases. Thus, the drop deformation simulation can evaluate whether the plastic deformation occured when the parts are received on-line in the synchronous engineering stage, so as to optimize the design in time, avoid the engineering changes in the later stage and reduce the development costs.
基金项目:
作者简介:
张博凡(1986-),男,硕士,模具工程师,E-mail:bofan_zhang@saic-gm.com
参考文献:
[1]张博凡,李瑞杰,邹洋. 冷轧薄板成形平面应变状态极限减薄率计算方法及应用[J].模具工业,2017,43(3):21-23.
Zhang B F, Li R J, Zou Y. The calculation method and application of limit thinning rate in strain state of cold rolled sheet plane[J]. Die & Mould Industry,2017,43(3):21-23.
[2]王增强,赵金龙. DynaForm在汽车顶盖重力变形评估中的应用[J].计算机辅助工程,2014,23(2):45-47.
Wang Z Q, Zhao J L.Application of DynaForm in estimate of gravity deformation of automobile roof panel[J].Computer Aided Engineering,2014,23(2):45-47.
[3]邹洋, 孙东继,王燕,等. 基于动态显式算法的钣金高速线传输跌落变形分析[J].模具制造,2015,(6):25-27.
Zou Y, Sun D J, Wang Y, et al. Analysis of transfers decline for panel transfers deformation based on the dynamic explicit algorithm[J].Die & Mould Manufacture,2015, (6):25-27.
[4]温媛媛,王增强,赵锟,等.材料模型对外覆盖件跌落仿真的影响[J].模具工业,2017,43(10):32-35.
Wen Y Y, Wang Z Q, Zhao K, et al. Effects of material models on dropping simulation for outer panels[J]. Die & Mould Industry, 2017,43(10):32-35.
[5]何盼盼,黄模佳,吴萍,等.基于Hosford屈服函数的横观各向同性金属材料拉深成形塑性及变形分析[J].塑性工程学报,2020,27(2):102-107.
He P P, Huang M J,Wu P, et al. Plasticity and deformation analysis of deep drawing for transverse isotropic metal materials based on Hosford yield function[J].Journal of Plasticity Engineering,2020,27(2):102-107.
[6]倪炀,蔡玉俊,董晓传,等. 7075铝合金高温力学性能及本构方程研究[J].塑性工程学报,2020,27(2):128-134.
Ni Y, Cai Y J, Dong X C, et al. Study on high temperature mechanical properties and constitutive equation of 7075 aluminum alloy[J].Journal of Plasticity Engineering,2020,27(2):128-134.
[7]Jung D W. Study of dynamic explicit explicit analysis in sheet metal forming processes using faster punch velocity and mass scaling scheme [J].Journal of Materials Engineering and Performance, 1998, 7(4):479-490.
[8]金飞翔,吕刚,谷曼,等.基于LS-DYNA的铝合金板材电磁成形过程模拟及实验研究[J].塑性工程学报,2019,26(1):109-115.
Jin F X, Lyu G, Gu M,et al. Simulation and experimental study on electromagnetic forming process for aluminium alloy sheet based on LS-DYNA[J]. Journal of Plasticity Engineering, 2019, 26(1): 109-115.
[9]刘畅,林建平,路洪洲,等.汽车B柱碰撞失效变形过程仿真重现[J].塑性工程学报,2019,26(1):213-220.
Liu C,Lin J P,Lu H Z,et al. Simulation of automotive B pillar collision failure deforming process[J].Journal of Plasticity Engineering,2019,26(1):213-220.
[10]臧其其,闫华军,张双杰,等. 基于Dynaform的铝合金汽车地板梁成形分析及工艺参数优化[J].塑性工程学报,2019,26(2):125-131.
Zang Q Q,Yan H J,Zhang S J,et al. Forming analysis and process parameters optimization for automobile aluminum alloy floor beam based on Dynaform[J].Journal of Plasticity Engineering,2019,26(2):125-131.
[11]田国富,李文杰,李君基. 基于Dynaform的6016-T4P铝合金汽车机舱盖模面优化 [J].锻压技术,2020,45(1):55-62.
Tian G F, Li W J, Li J J. Optimization on die face of engine compartment cover for 6016-T4P aluminum alloy based on Dynaform[J]. Forging & Stamping Technology,2020,45(1):55-62.
[12]徐肖, 黄涛,王震. 基于CAE的典型前围板下横梁冲压成形工艺[J].锻压技术,2019,44(8):26-34.
Xu X, Huang T, Wang Z. Stamping process of typical front beam connecting part based on CAE[J]. Forging & Stamping Technology,2019, 44(8): 26-34.
服务与反馈:
本网站尚未开通全文下载服务】【加入收藏
《锻压技术》编辑部版权所有

中国机械工业联合会主管  中国机械总院集团北京机电研究所有限公司 中国机械工程学会主办
联系地址:北京市海淀区学清路18号 邮编:100083
电话:+86-010-82415085 传真:+86-010-62920652
E-mail: fst@263.net(稿件) dyjsjournal@163.com(广告)
京ICP备07007000号-9