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多缝隙集磁器的磁脉冲管件缩径成形及连接
英文标题:Diameter reduction forming and welding of magnetic pulse tube for multi-slit magnetic collector
作者:颜子钦 邱东阳 崔晓辉 孙晓明 王世鹏 
单位:中南大学 
关键词:缩径成形 磁脉冲焊接 集磁器 成形均匀性 电磁力 
分类号:TG391
出版年,卷(期):页码:2021,46(4):205-214
摘要:

磁脉冲管件缩径是金属管件与金属或者非金属管件、杆件连接时使用的一种高速成形工艺。集磁器能显著提高磁脉冲的焊接效率。传统集磁器中通常存在一个缝隙,用于改变感应电流流向,进而调控磁力分布。缝隙的存在使得电磁力在周向上分布不均,靠近缝隙处的区域难以焊接,这种缺陷降低了磁脉冲管件缩径的周向均匀性。为了提高磁脉冲管件缩径的均匀性,提出了一种多缝隙集磁器结构,并研究了缝隙数目N对磁脉冲管件缩径性能的影响,最终通过电磁力分布与成形结果确定了N=4为较好的工艺参数。结果表明,带有多缝隙集磁器的磁脉冲管件缩径系统能够显著提高管件自由缩径与磁脉冲焊接周向成形的均匀性。

The diameter reduction of magnetic pulse tube is a kind of high speed forming process used in connecting metal tube with metal or non-metal tube and rod, and the magnetic collector can significantly improve the welding efficiency of magnetic pulse. However, in traditional magnetic collector, there is usually a slit for changing the induced current direction to regulate the magnetic force distribution, and the area near the slit is difficult to weld because the existence of slit makes the electromagnetic force unevenly distributed in circumferential direction, which reduces the circumferential uniformity of diameter reduction for magnetic pulse tube. In order to improve its uniformity, a multi-slit magnetic collector structure was proposed, and the influence of the number of slits N on the diameter reduction performance of magnetic pulse tube was studied. Finally, N=4 was determined as a better process parameters by electromagnetic force distribution and forming results. The results show that the diameter reduction system with multi-slit magnetic collector of magnetic pulse tube significantly improves the uniformity of free diameter reduction and circumferential forming of magnetic pulse welding.

基金项目:
国家自然科学基金资助项目(51775563,51405173);中南大学高性能复杂制造国家重点实验室开放课题研究基金(ZZYJKT2017-03,ZZYJKT2020-02)
作者简介:
颜子钦(1995-),男,博士研究生 E-mail:yzq1172@163.com 通讯作者:崔晓辉(1984-),男,博士,副教授 E-mail:cuixh622@csu.edu.cn
参考文献:


[1]Sato M, Saito M, Yasunaga K, et al. Development of aluminum body for the most fuel efficient vehicle
[J]. JSAE Review, 2000, 21(4):511-516.



[2]Lee K J, Kumai S, Arai T, et al. Interfacial microstructure and strength of steel/aluminum alloy lap joint fabricated by magnetic pressure seam welding
[J]. Materials Science & Engineering A, 2007, 471(1-2):95-101.



[3]Balanethiram V S, Daehn G S. Enhanced formability of interstitial free iron at high strain rates
[J]. Scripta Metallurgica et Materialia, 1992, 27(12):1783-1788.



[4]Kapil A, Sharma A. Magnetic pulse welding: An efficient and environmentally friendly multi-material joining technique
[J]. Journal of Cleaner Production, 2015, 100:35-58.



[5]Psyk V, Risch D, Kinsey B L, et al.Electromagnetic forming-A review
[J].Journal of Materials Processing Technology, 2011, 211: 787-829.



[6]Elsen A, Groche P, Ludwig M, et al. Fundamentals of EMPT-welding
[A]. The 4th International Conference on High Speed Forming
[C]. USA, 2010.



[7]徐志丹. 3A21铝合金-20#钢管件磁脉冲焊接数值模拟与工艺试验
[D]. 哈尔滨:哈尔滨工业大学,2013.


Xu Z D.Numerical and Experimental Investigation on 3A21 Aluminium Alloy and 20 Steel Tube Magnetic Pulse Welding
[D]. Harbin:Harbin Institute of Technology,2013.



[8]Lu Z Y, Gong W T, Chen S J, et al. Interfacial microstructure and local bonding strength of magnetic pulse welding joint between commercially pure aluminum 1060 and AISI 304 stainless steel
[J]. Journal of Manufacturing Processes, 2019, 46(10):59-66.



[9]Cui J J, Sun G Y, Xu J R, et al. A study on the critical wall thickness of the inner tube for magnetic pulse welding of tubular Al-Fe parts
[J]. Journal of Materials Processing Technology, 2016, 227:138-146.



[10]Joerg Bellmann, Sebastian Schettler, Sebastian Schulze, et al. Improving and monitoring the magnetic pulse welding process between dissimilar metals
[J]. Welding in the World, 2021,65:199-209.



[11]Deng F X, Cao Q L, Han X T, et al. Electromagnetic pulse spot welding of aluminum to stainless steel sheets with a field shaper
[J]. The International Journal of Advanced Manufacturing Technology,2018,98(5-8):1-9.



[12]Khan M R, Hossain M M, Sharma A, et al. Predicting the effect of field shaper in electromagnetic welding using FEM
[J]. Arabian Journal for Science and Engineering, 2018, 44(2):1129-1136.



[13]Ashish K R,Sachin D K. Application of electromagnetic forming in terminal crimping using different types of field shapers
[J]. Journal of Mechanical Science and Technology, 2018, 32(9):4291-4297.



[14]Ashish K R, Kumar R, Basumatary H, et al. Numerical and experimental study on effect of different types of field-shaper on electromagnetic terminal-wire crimping process
[J]. International Journal of Precision Engineering and Manufacturing, 2018, 19(3):453-459.



[15]Song P, Li W B, Wang X M . A study on dynamic plastic deformation behavior of 5052 aluminum alloy
[J]. Key Engineering Materials, 2019, 812:45-52.



[16]Manogaran A P, Manoharan P, Priem D, et al. Magnetic pulse spot welding of bimetals
[J]. Journal of Materials Processing Technology, 2014, 214(6):1236-1244.

 

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