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Joining of tubular steel-steel by unconventional magnetic pulse force: environmentally friendly technology

机译:通过非传统磁脉冲的管状钢钢加入:环保技术

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摘要

Electromagnetic welding uses environment-friendly, unconventional non-contacting magnetic pulse force for joining of two metals. The present paper focuses on the welding of tubular mild steel to two different steel bars, ferrite-pearlite 1018 carbon steel and austenite 304 stainless steel using a 40 kJ electromagnetic instrument. A qualitative metallurgical bonding was obtained for a selected set of optimum process parameters. The bonded region did not show localized melting for a mild steel-carbon steel joint and was found to be homogeneous liquid state bonding for a mild steel-stainless steel joint within a restricted distance of 3 um from the interface. Both the joints indicated good peel strength and leak tightness. Simulation studies were validated using experimental parameters such as voltage, current, impact velocity, magnetic flux and displacement.
机译:电磁焊接使用环保,非常规非接触的磁脉冲力,用于加入两个金属。 本文侧重于使用40kJ电磁仪器焊接管状温度钢,铁氧体 - 珠光体1018碳钢和奥氏体304不锈钢。 获得定性冶金键,用于选定的一组最佳过程参数。 粘结区域未显示用于温和钢 - 碳钢接头的局部熔化,并发现在界面的限制距离3μm的温和钢 - 不锈钢接头上是均匀的液态键合。 两个接头都表示良好的剥离强度和泄漏性。 使用实验参数(如电压,电流,冲击速度,磁通量和位移)验证仿真研究。

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