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A study on the critical wall thickness of the inner tube for magnetic pulse welding of tubular Al-Fe parts

机译:铝-铁管状零件电磁脉冲焊接内管临界壁厚的研究

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摘要

Microstructure and mechanical properties of the welding zone highly depend on the thickness of inner tube for jointing two tubes using magnetic pulse welding (MPW). In this study, the critical thickness of inner 20Fe tube for the Al-Fe welding tubes is investigated by combining the theoretical calculation and experiments. Theoretical analysis demonstrates that plastic deformation zone of the inner tube expands from its inner surface to its outer surface. With equilibrium equations and modified Tresca yield criterion, the critical thicknesses of inner tube under various collision velocities are derived so as to assure the high quality of the welding. The results show that the critical thickness of inner tube increases linearly with the discharge voltage. With the discharge voltage increases by every 2 kV, the critical thickness increases by 0.5 mm accordingly. The theoretical predictions agree well experiments with an error of less than 2.5%. Furthermore, effects of thickness of inner tube on the mechanical properties of welding zone are also investigated. (C) 2015 Elsevier B.V. All rights reserved.
机译:焊接区的微观结构和机械性能在很大程度上取决于内管的厚度,该内管用于通过电磁脉冲焊接(MPW)连接两个管。在这项研究中,通过理论计算和实验相结合的方法研究了20Fe内部管的临界厚度。理论分析表明,内管的塑性变形区从其内表面扩展到其外表面。利用平衡方程和修正的Tresca屈服准则,推导了在各种碰撞速度下内管的临界厚度,以确保高质量的焊接。结果表明,内胎的临界厚度随放电电压的增加而线性增加。随着放电电压每增加2 kV,临界厚度相应增加0.5 mm。理论预测与实验相吻合,误差小于2.5%。此外,还研究了内胎厚度对焊接区力学性能的影响。 (C)2015 Elsevier B.V.保留所有权利。

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