Yi Lingling, Yu Ge, Tang Ziming, Li Xin, Gu Zhengwei
Department of Materials Science and Engineering, Jilin University, Changchun 130022, China.
State Key Laboratory of Automobile Materials, Jilin University, Changchun 130022, China.
Materials (Basel). 2023 Mar 29;16(7):2742. doi: 10.3390/ma16072742.
Aluminum alloy has been used as the skin material for rail vehicles and automobiles to meet the requirements of environmental protection. The hot stamping-in-die quenching composite forming (HFQ) process is a promising technology to compensate for the poor formability of the aluminum alloy sheet at room temperature. In this paper, the high-temperature mechanical properties of 5083 aluminum alloy under various temperature (200 °C, 300 °C, 400 °C, 450 °C) and strain rate conditions (0.01 s, 0.10 s, 1.00 s) were investigated by uniaxial tensile tests. The finite element software of PAM-STAMP was employed to simulate the forming process of high-speed train skin. The effects of forming method and process parameters on the minimum thickness and springback of the skin were analyzed using the Response Surface Methodology (RSM). After parameter optimization, the forming experiment verified the simulation results and the test part met the quality requirements: the thickness above 3.84 mm and the springback within 1.1 mm. Mechanical properties of the sheet before and after HFQ were examined by uniaxial tensile tests at room temperature. It can be inferred from the comparison that the yield strength of the Al5083 sheet increases, but the elongation decreases from the HFQ process.
铝合金已被用作轨道车辆和汽车的蒙皮材料,以满足环境保护的要求。热冲压-模内淬火复合成型(HFQ)工艺是一种很有前景的技术,可弥补铝合金板材在室温下成型性差的问题。本文通过单轴拉伸试验研究了5083铝合金在不同温度(200℃、300℃、400℃、450℃)和应变速率条件(0.01s、0.10s、1.00s)下的高温力学性能。采用PAM-STAMP有限元软件对高速列车蒙皮的成型过程进行了模拟。利用响应面法(RSM)分析了成型方法和工艺参数对蒙皮最小厚度和回弹的影响。经过参数优化后,成型实验验证了模拟结果,测试件满足质量要求:厚度大于3.84mm,回弹在1.1mm以内。通过室温下单轴拉伸试验研究了HFQ前后板材的力学性能。通过比较可以推断,Al5083板材的屈服强度提高,但伸长率因HFQ工艺而降低。