In order to grasp the springback rule of TRB (tailor rolled blank) parts after forming, the springback behavior of TRB was investigated by integrating such three means as theoretical research, numerical simulation and stamping experiments. Fundamental theories of springback were analyzed. The stamping and springback processes of annealed 1.2/2.0 mm TRB, 1.2 mm and 2.0 mm plates for U-channel were simulated, and the simulation results were compared with the experiments. The results indicate that the springback of TRB falls in between those of the 1.2 mm and 2.0 mm plates. It is desirable for the TRB U-channel to have die clearance of 1.1 times maximum blank thickness and friction coefficient of about 0.12, and longer thickness transition zone is preferable. The simulation data demonstrate reasonably good agreement with the experiments.
参考文献
[1] | |
[2] | Ryabkov N, Jackel F, Putten K, et al. Production of Blanks With Thickness Transitions in Longitudinal and Lateral Direction Through 3D-Strip Profile Rolling [J]. International Journal of Material Forming, 2008, (S1): 391.[2] Meyer A, Wietbrock B, Hirt G. Increasing of the Drawing Depth Using Tailor Rolled Blanks—Numerical and Experimental Analysis [J]. International Journal of Machine Tools and Manufacture, 2008, 48(5): 522.[3] Chou IN, Hung C. Finite Element Analysis and Optimization on Springback Reduction [J]. International Journal of Machine Tools and Manufacture, 1999, 39(3): 517.[4] XIE Hui. Analysis of Factors Infecting Sheet's Springback Based on CAE [J]. Journal of Hunan University (Natural Sciences), 2003, (5): 29 (in Chinese).[5] Kim D, Kim J, Lee Y, et al. Study of Residual Stresses in Tailor Rolled Blanked Al5J322T4 Sheets [J]. Rare Metals, 2006, 25: 111.[6] LIU Xiang-hua. Prospects for Variable Gauge Rolling: Technology, Theory and Application [J]. Journal of Iron and Steel Research (International), 2011, 18(1): 1.[7] DU Ping, HU Xian-lei, WANG Jun, et al. Multiple-Point Dynamic Setting for Variable Cross-Section Rolling Process [J]. Journal of Iron and Steel Research, 2009, 21(11): 27 (in Chinese).[8] Kopp R, Wiedner C, Meyer A. Flexibly Rolled Sheet Metal and Its Use in Sheet Metal Forming [J]. Advanced Materials Research, 2005, 6: 81.[9] Yang R, Fu Y, Li G. Application of Tailor Rolled Blank in Vehicle Front End for Frontal Impact [J]. SAE Int 2007. [10] JIANG Yin-fang, WANG Yong-liang, YUAN Guo-ding, et al. Research on Resilience Characteristics and Control of Continuous Variable Cross Section Beams [J]. Machine Design, 2010, 27(1): 10 (in Chinese).[11] ZHAO Guo-wei, WANG Yuan-xun, CHEN Jian-qiao, et al. Numerical Simulation & Infecting Factors of Springback in Sheet Metal Forming [J]. China Metal Forming Equipment & Manufacturing Technology, 2005, (3): 55 (in Chinese).[12] Kim HW, Lim CY. Annealing of Flexible-Rolled Al-5.5 wt% Alloy Sheets for Auto Body Application [J]. Materials and Design, 2010, 31(S1): 71. |
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