The Pairing Analysis Improvement of Magnetized Structure in Electromagnetic Bulging Process in Case of Tube with Field Shaper
- 1 Program Debugging and Design Department, Guangdong Lyric Robot Automation Co., Ltd, Huizhou, China
- 2 Program Debugging and Design Department, Guangdong Lyric Robot Automation Co., Ltd, Huizhou, China
- 3 Program Debugging Department, Guangdong Lyric Robot Automation Co., Ltd., Huizhou, China
- 4 Electrical and Computer Engineering Department, South China University of Technology, Guangzhou, China
- 5 World Standardization, Certification and Testing Group (Shenzhen) Co., Ltd., Shenzhen, China
- 6 Electrical Engineering-Power System, Mapon University, Kindu, Democratic Republic of Congo
- 7 Department of Economy Managment, School of Management, Computer and Telecomunication, Rabbat, Marocco
- 8 Materials Visual Calibration Department, Guangdong Lyric Robot Automation Co., Ltd., Huizhou, China
- 9 Program Design Department, Guangdong Lyric Robot Automation Co., Ltd., Huizhou, China
- 10 Electrical and Automation Department, China Three Gorges University, Yichang, China
- 11 Electronic Department, Power Electronic Research Center, University of Kent, Giles Ln, Canterbury, UK
Abstract
In the current practical science, the accuracy in the formability of metal alloys being the goal when using electromagnetic forming (EMF) technology, which is a high-speed processing technology that uses Lorentz forces to achieve plastic deformation of sheet metal; according to the previous analysis, the results have shown that in most cases, the Lorentz force acting on the workpiece (metal) is not uniform, there are uneven axial deformations of the metal plates which prevent the rapid advancement of today’s technology. In this article, we presented some advanced analyzes which will lead us to improve the technical solution for the problems of non-uniform axial deformations of the metals in the traditional tube electromagnetic forming technology (EMF). A field shaper is used as a practical forming tool to influence the magnetic field and magnetic pressure distribution, thereby improving the forming ability and result during the electromagnetic forming (EMF) process and we see that induced eddy current control is realized by changing the structural parameters of the magnetic field shaper; which improves the strength and controllability of the magnetic force that acts on the workpiece; thereby a greater radial magnetic pressure can be achieved with field shaper than the case without it; the field shaper regulates the electromagnetic force, the distribution of the magnetic pressure decreases, and the uniform force area of the tube increases which effectively enhances the uniform range of the pipe electromagnetic bulging and the electromagnetic induction coupling between the coil and the metallic workpiece is generally required to produce the Lorentz forces. Using COMSOL Multiphysics® simulation software helped us to accurately represent the real world, simulating multiple physical effects that happened in this model during the process.
- Ouyang, S., Li, X., Li, C., Du, L., Peng, T., Han, X., et al . (2020) Investigation of the Electromagnetic Attractive Forming Utilizing a Dual-Coil System for Tube Bulging. Journal of Manufacturing Processes , 49, 102-115. https://doi.org/10.1016/j.jmapro.2019.11.006
- Cao, Q., Du, L., Li, Z., Lai, Z., Li, Z., Chen, M., et al . (2019) Investigation of the Lorentz-Force-Driven Sheet Metal Stamping Process for Cylindrical Cup Forming. Journal of Materials Processing Technology , 271, 532-541. https://doi.org/10.1016/j.jmatprotec.2019.03.002
- Qiu, L., Zhang, W., Abu-Siada, A., Xiong, Q., Wang, C., Xiao, Y., et al . (2020) Electromagnetic Force Distribution and Wall Thickness Reduction of Three-Coil Electromagnetic Tube Bulging with Axial Compression. IEEE Access , 8, 21665-21675. https://doi.org/10.1109/access.2020.2969678
- Qiu, L., Wang, B., Abu-Siada, A., Xiong, Q., Zhang, W., Ge, W., et al . (2020) Research on Forming Efficiency in Double-Sheet Electromagnetic Forming Process. IEEE Access , 8, 19248-19255. https://doi.org/10.1109/access.2020.2968049
- Qiu, L., Yi, N., Abu-Siada, A., Tian, J., Fan, Y., Deng, K., et al . (2020) Electromagnetic Force Distribution and Forming Performance in Electromagnetic Forming with Discretely Driven Rings. IEEE Access , 8, 16166-16173. https://doi.org/10.1109/access.2020.2967096
- Qiu, L., Wang, C., Abu-Siada, A., Xiong, Q., Zhang, W., Wang, B., et al . (2020) Coil Temperature Rise and Workpiece Forming Efficiency of Electromagnetic Forming Based on Half-Wave Current Method. IEEE Access , 8, 9371-9379. https://doi.org/10.1109/access.2020.2965254
- Huang, L., Zhang, J., Zou, J., Zhou, Y. and Qiu, L. (2019) Effect of Equivalent Radius of Drive Coil on Forming Depth in Electromagnetic Sheet Free Bulging. Inte r national Journal of Applied Electromagnetics and Mechanics , 61, 377-389. https://doi.org/10.3233/jae-190009
- Cao, Q., Li, Z., Lai, Z., Li, Z., Han, X. and Li, L. (2018) Analysis of the Effect of an Electrically Conductive Die on Electromagnetic Sheet Metal Forming Process Using the Finite Element-Circuit Coupled Method. The International Journal of Advanced Manufacturing Technology , 101, 549-563. https://doi.org/10.1007/s00170-018-2798-8
- Zhang, X., Cao, Q., Han, X., Chen, Q., Lai, Z., Xiong, Q., et al . (2016) Application of Triple-Coil System for Improving Deformation Depth of Tube in Electromagnetic Forming. IEEE Transactions on Applied Superconductivity , 26, Article ID: 3701204. https://doi.org/10.1109/tasc.2016.2542482