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基于CATIA的橡皮成形凸曲线翻边毛料展开设计系统的二次开发
英文标题:Secondary development of unfolding design system for convex flanging blank of rubber forming based on CATIA
作者:张凌云 孙伟光 孟伟琪   
单位:沈阳航空航天大学 中国南方航空股份有限公司 
关键词:CATIA 二次开发 橡皮成形 毛料展开系统 翻边 
分类号:TP391.7
出版年,卷(期):页码:2017,42(11):181-186
摘要:
为了使飞机橡皮成形件在CATIA 环境下更好地展开,获得一个比较满意的毛坯料形状、降低材料成本,提出基于CAA(Component Application Architecture)的CATIA 二次开发方法,设计并搭建基于几何法的橡皮成形毛坯料展开设计系统平台,并提供了具体开发实例。首先利用板料展开系统,对凸曲线零件数模进行操作,得到毛坯料尺寸形状,再利用“一步法”成形型面回弹补偿系统,设计刚性模具。最后进行橡皮成形试验与模拟仿真。通过对比成形零件与原始零件吻合程度,得到翻边高度误差在0.15 mm范围之内,并且竖边两侧端线与腹板面之间的角度接近90°,验证了板料展开系统的准确性。
In order to make the rubber forming parts in the aircraft unfold better in the CATIA environment,a secondary CATIA development method based on CAA(Component Application Architecture)was put forward to obtain a more satisfactory blank shape and reduce the cost of materials. Then, an unfolding system platform was designed based on geometric method, and the examples of specific blank development were provided. At first, the numerical model of the convex curve part was manipulated to obtain the blank shape by the sheet metal unfolding system, and then the rigid die was designed by the “one step” forming surface springback compensation system. Finally, the rubber forming test and simulation were carried out. By comparing the degree of fitting of the forming part with the original part,it is found that the flanging height distribution tolerance scope is within 0.15 mm and the angle between both ends of vertical side and web surface is also close to 90°, and the accuracy of sheet unfolding system was verified.
基金项目:
作者简介:
作者简介:张凌云(1963-),男,博士,教授,硕士生导师 E-mail: zhangly79@163.com 通讯作者:孙伟光(1992-),男,硕士研究生 E-mail: sunwg1019@163.com
参考文献:

 


[1] 王烨,沈启彧,王玉国,等. 反向方法在板料成形毛坯设计中的应用研究[J].锻压技术,2000,25(1):18-24.

Wang Y,Shen Q Y,Wang Y G, et al. Application of reverse method in slab design of sheet metal forming[J]. Forging & Stamping Technology,2000,25(1):18-24. 

[2] 谢兰生, 杨晨, 童国权,等. 基于几何映射法的钣金展开有限元逆算法[J]. 中国机械工程, 2004, 15(9):832-835.

Xie L S,Yang C,Tong G Q, et al. Blank design for sheet metal forming parts by a finite element inverse approach[J]. China Mechanical Engineering, 2004, 15(9):832-835. 

[3] Chung K, Barlat F, Brem J C, et al. Blank shape design for a planar anisotropic sheet based on ideal forming design theory and FEM analysis[J]. International Journal of Mechanical Sciences, 1997, 39(1):105-120. 

[4] Sowerby R, Duncan J L, Chu E. The modeling of sheet metal stamping[J]. International Journal of Mechanical Sciences, 1986, 28(7):415-430. 

[5] 刘帅, 章志兵, 柳玉起. 基于CATIA平台的汽车覆盖件模具快速管路系统[J]. 锻压技术, 2016, 41(7):136-141.

Liu S, Zhang Z B, Liu Y Q. Rapid piping system of automobile panel die based on CATIA platform [J]. Forging & Stamping Technology,2016,41(7):136-141. 

[6] 柯桂颜, 路平, 江开勇,等. 汽车后地板前横梁冲压件的成形质量控制[J]. 锻压技术, 2016, 41(8):39-42.

Ke G Y, Lu P, Jiang K Y, et al. Quality control of front beam for rear floor part used in car[J]. Forging & Stamping Technology,2016,41(8):39-42. 

[7] Chuan T W, Gary K, Taylan A. Failure and wrinkling criteria and mathematical modeling of shrink and stretch flanging operations in sheet-metal forming[J]. Journal of Materials processing Technology, 1995, 53:759-780. 

[8] 孙泽. 曲线翻边零件形状畸变规律及其毛坯修正方法[D]. 沈阳:沈阳航空航天大学, 2014.

Sun Z.Shape Distortion and Its Modification Method of Curved Flanging Parts [D]. Shenyang: Shenyang Aerospace University, 2014. 

[9] 曾一盼. 橡皮囊“一步法”成形模具设计与试验研究[D]. 沈阳:沈阳航空航天大学,2015.

Zeng Y P. Design and Experimental Study on Forming Die of Rubber Band “One Step” [D]. Shenyang: Shenyang Aerospace University,2015. 

[10]涂集林, 王永军, 惠小鹏,等. 铝合金薄板零件一步法橡皮囊成形实验分析[J]. 锻压技术, 2014, 39(6).

Tu J L, Wang Y J, Hui X P, et al. Experimental study on one-step fluid cell forming of thin aluminum alloy sheet parts[J]. Forging & Stamping Technology ,2014,39 (6).
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