Forming defect control and optimization of multi-step spinning thickening process considering the variation of spinning gap

被引:0
作者
Kemin Xue
Weizheng Yang
Siliang Yan
Ping Li
机构
[1] Hefei University of Technology,School of Material Science and Engineering
来源
The International Journal of Advanced Manufacturing Technology | 2019年 / 101卷
关键词
Sheet-bulk metal forming; Thick rim; Spinning thickening; Spinning gap; FE simulation; Experimental analysis;
D O I
暂无
中图分类号
学科分类号
摘要
Spinning thickening is a novel metal-bulk forming technology for sheet metal, which gains successful applications in the net-shape manufacture of the structural parts with thin web plates and thick rims in automobile industry. However, through-process design of the forming scheme considering the possible variation of relative position of the plate is still lacking. To this end, the instantaneous stress-strain distribution of the plate, the bending force of the plate, and the order of the metal filling into roller groove were analyzed. Additionally, forming quality of the Eigen-structure with different spinning gaps was studied and quantitatively evaluated by experiments and FE simulation. It is found that pit, flash, hump, and depression are the dominant forming defects that influence the surface quality and performance of the parts. With the increase of positive spinning gaps, the area of the pit increases firstly and then decreases. With the increase of the absolute value of negative spinning gaps, the area of the pit increases continuously. By employing weighting method, a new index is proposed to evaluate the combined forming quality of the Eigen-structure. In addition, a phenomenological model was established for characterizing the correlation between the spinning gap and the quality index. Finally, taking the variation of spinning gap into consideration, process optimization of a two-step spinning thickening process was carried out under the constraint of multiple defects. The optimized range of spinning gap was obtained and experimentally validated. Results show that the quality of thick rim is improved by utilizing the optimized scheme and the target parts were formed with high quality under the reasonable range of spinning gap.
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页码:1183 / 1196
页数:13
相关论文
共 63 条
[1]  
Erman Tekkay A(2014)Forming of lightweight metal components: need for new technologies Procedia Eng 81 28-37
[2]  
Ben Khalifa N(2003)Manufacturing of lightweight components by metal forming CIRP Ann Manuf Technol 52 521-542
[3]  
Grzancic G(2008)Numerical simulation of metal flow and solidification in the multi-cavity casting moulds of automotive components J Mater Process Technol 206 62-68
[4]  
Hölker R(2014)Fatigue failure of a welded automotive component Procedia Mater Sci 3 1902-1907
[5]  
Kleiner M(2016)A single-step hot stamping-forging process for aluminum alloy shell parts with nonuniform thickness J Mater Process Technol 228 170-178
[6]  
Geiger M(2014)A review of process advancement of novel metal spinning Int J Mach Tool Manu 85 100-121
[7]  
Klaus A(2003)A review of spinning, shear spinning and flowing spinning processes Int J Mach Tool Manu 43 1419-1435
[8]  
Kermanpur A(2010)A review of the mechanics of metal spinning J Mater Process Technol 210 3-23
[9]  
Mahmoudi S(2012)Bulk forming of sheet metal CIRP Ann Manuf Technol 61 725-745
[10]  
Hajipour A(2011)Fundamental investigations on the material flow at combined sheet and bulk metal forming process CIRP Ann Manuf Technol 60 283-286