Journal of Jilin University(Engineering and Technology Edition) ›› 2019, Vol. 49 ›› Issue (4): 1266-1271.doi: 10.13229/j.cnki.jdxbgxb20180291

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Forming limit prediction of high strength steel based on damage modified M⁃K model

Wen⁃quan LIU1(),Liang YING2,Hai RONG2,Ping HU2()   

  1. 1. Faculty of Vehicle Engineering and Mechanics, Dalian University of Technology, Dalian 116024, China
    2. School of Automotive Engineering, Dalian University of Technology, Dalian 116024, China
  • Received:2018-04-01 Online:2019-07-01 Published:2019-07-16
  • Contact: Ping HU E-mail:wqliu2012@mail.dlut.edu.cn;pinghu@dlut.edu.cn

Abstract:

In order to understand the effect of inner damage evolution on the formability of sheet metal, a prediction method of forming limit coupled with GTN damage model was developed based on the M-K groove instability theory. The damage-related parameters of high strength steel 22MnB5 were calibrated accordingly. The critical void volume fraction was chosen as the instability criterion, which improves the physical significance of the prediction method. And the effects of loading path on the instability of sheet and damage evolution were also studied based on the theoretical calculation results. Meanwhile, the NAKAZIMA test was conducted, and the forming limit data under different loading path was obtained. The deformation characteristics of 22MnB5 sheet were also analyzed. By comparing with the experimental results, the validity of the proposed method was verified.

Key words: materials synthesis and processing technology, forming limit, M?K groove theory, GTN damage model, damage evolution

CLC Number: 

  • TG386

Fig.1

Schematic diagram of M?K model coupled with damage"

Fig.2

Evolution of void damage under different deformation modes"

Fig.3

Forming limit apparatus for high strength steel"

Fig.4

Fractured samples after bulging forming"

Fig.5

Strain field of a sample with width 80 mm at different deformation stages"

Fig.6

Comparison of the experimental and predicted forming limits"

Fig.7

Strain increment ratio at instability under different deformation paths"

Fig.8

Void evolution of area A under different paths"

1 马高山,万敏,吴向东. 基于M⁃K模型的铝锂合金热态下成形极限预测[J]. 中国有色金属学报, 2008, 18(6): 980⁃984.
MaGao⁃shan, WanMin, WuXiang⁃dong. Theoretical prediction of FLDs for Al⁃Li alloy at elevated temperature based on M⁃K model[J]. The Chinese Journal of Nonferrous Metals, 2008, 18(6): 980⁃984.
2 MarciniakZ, KuczyńskiK. Limit strains in the processes of stretch⁃forming sheet metal[J]. International Journal of Mechanical Sciences, 1967, 9(9): 609⁃620.
3 ZhangC S, LeotoingL, GuinesD, et al. Theoretical and numerical study of strain rate influence on AA5083 formability[J]. Journal of Materials Processing Technology, 2009, 209(8): 3849⁃3858.
4 余海燕,高云凯. 基于M⁃K模型的相变诱发塑性钢板的 成形极限研究[J]. 中国机械工程, 2007, 18(1): 109⁃113.
YuHai⁃yan, GaoYun⁃kai. Study on forming limit diagram for transformation⁃induced plasticity sheet steel based on M⁃K model[J]. China Mechanical Engineering, 2007, 18(1): 109⁃113.
5 孙权,陈建钧,李晓雪,等. 剪切修正GTN模型在小冲杆试验中的应用研究[J]. 机械工程学报, 2014, 50(24): 79⁃85.
SunQuan, ChenJian⁃jun, LiXiao⁃xue, et al. Study on the application of shear modified GTN model to small punch test[J]. Journal of Mechanical Engineering, 2014, 50(24): 79⁃85.
6 陈志英,董湘怀. 基于GTN细观损伤模型的板料成形过程损伤分析[J]. 工程力学, 2009, 26(7): 238⁃244.
ChenZhi⁃ying,DongXiang⁃huai. Ductile damage analysis for fracture in sheet metal forming based on GTN mesoscopic damage model[J]. Engineering Mechanics, 2009, 26(7): 238⁃244.
7 刘文权,盈亮,王丹彤,等. 热冲压成形过程细观损伤演化机理研究[J]. 机械工程学报, 2016, 52(14): 31⁃39.
LiuWen⁃quan, YingLiang, WangDan⁃tong, et al. Investigation of mesoscopic damage evolution mechanism of high dtrength dteel in hot stamping process[J]. Journal of Mechanical Engineering, 2016, 52(14): 31⁃39.
8 NeedlemanA, TriantafyllidisN. Void growth and local necking in biaxially stretched sheets[J]. Journal of Engineering Materials and Technology, 1978, 100(2): 164⁃169.
9 TvergaardV. Influence of voids on shear band instabilities under plane strain conditions[J]. International Journal of Fracture, 1981, 17(4): 389⁃407.
10 TvergaardV, NeedlemanA. Analysis of the cup⁃cone fracture in a round tensile bar[J]. Acta Metallurgica, 1984, 32(1): 157⁃169.
11 NeedlemanA, TvergaardV. An analysis of ductile rupture in notched bars[J]. Journal of the Mechanics & Physics of Solids, 1984, 32(6): 461⁃490.
12 SonH S, KimY S. Prediction of forming limits for anisotropic sheets containing prolate ellipsoidal voids[J]. International Journal of Mechanical Sciences, 2003, 45(10): 1625⁃1643.
13 ChuC C, NeedlemanA. Void nucleation effects in biaxially stretched sheets[J]. Journal of Engineering Materials and Technology, 1980, 102(3): 249⁃256.
14 BenseddiqN, ImadA. A ductile fracture analysis using a local damage model[J]. International Journal of Pressure Vessels and Piping, 2008, 85(4): 219⁃227.
15 YingLiang, WangDan⁃tong, LiuWen⁃quan, et al. On the numerical implementation of a shear modified GTN damage model and its application to small punch test[J]. International Journal of Material Forming, 2018, 11(4): 527⁃539.
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