Jiang Bo, Yang Wenbing, Zhang Ziyang, Li Xifeng, Ren Xueping, Wang Yaoqi
School of Materials Science and Engineering, University of Science and Technology Beijing, Beijing 10083, China.
AVIC Manufacturing Technology Institute, Beijing 10024, China.
Materials (Basel). 2020 Mar 15;13(6):1335. doi: 10.3390/ma13061335.
In order to integrally manufacture the large TC4 titanium alloy part, an electrically-assisted incremental forming process is cleverly proposed to solve the traditional hot forming disadvantages of expensive heating furnaces and long cycle period. The two-step simulation method including thermal-electricity coupling simulation and thermo-mechanical coupling simulation was selected to predict the temperature variations and the sheet deformation behaviors. The electrically-assisted incremental forming experiment of thin TC4 titanium alloy sheet was performed. The highest prediction error is 6% for springback angles. The thrice forming at 10.9 A/mm satisfies the precision requirement of the designed part. Therefore, the two-step simulation method can effectively calculate the electrically-assisted incremental process. The electrically-assisted incremental forming technique is very promising for the integral producing large titanium alloy part.
为了整体制造大型TC4钛合金零件,巧妙地提出了一种电辅助增量成形工艺,以解决传统热成形中加热炉成本高和周期长的缺点。选择了包括热电耦合模拟和热机械耦合模拟的两步模拟方法来预测温度变化和板材变形行为。进行了TC4薄钛合金板的电辅助增量成形实验。回弹角的最高预测误差为6%。在10.9 A/mm下进行三次成形满足设计零件的精度要求。因此,两步模拟方法可以有效地计算电辅助增量工艺。电辅助增量成形技术在整体制造大型钛合金零件方面非常有前景。