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Effects of Macro and Microstructure of Aluminum Alloy AA 6063-T6 with TIG-AC Welding Process with Unbalanced Rectangular Wave

机译:铝合金AA 6063-T6宏观和微观结构的影响,具有不平衡矩形波的TIG-AC焊接过程

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The use of the rectangular wave in the TIG-CA welding process for aluminum alloys allows numerous possibilities of frequency control, wave amplitude variation and positive or negative current for the same wave cycle. The configuration selected is decisive for the effect and final property of the weld bead, where alternating current variation in aluminum alloy welding is widely used and is intended to promote surface oxide layer cleanliness while promoting penetration of the joint. In the literature it is common to find statements that the cleaning of the oxide layer at the welding time is connected to the positive wave cycle and the penetration is connected to the negative wave cycle time. For the research proposal, TIG-AC welding of the aluminum alloy AA 6063-T6 was performed by simple plate deposition with rectangular wave with variation both in the current and in the time of positive polarity of the electrode in the cycle in the current welding wave 140 A, For balance conditions at 50% of the positive polarity at a waveform time period of 20 ms, followed by wave unbalance to 32.5% and 15% of the positive polarity acting time maintaining a constant frequency of 50 Hz for all settings. The results for the selected settings show that the decrease in the positive wave time decreases the penetration and the width of the weld bead and this may be related to the selection of time and frequency used.
机译:在铝合金TIG-CA焊接过程中使用矩形波允许频率控制的许多可能性,相同波循环的频率控制,波浪幅度变化和正电流或负电流。所选择的构造对于焊接珠的效果和最终特性选择的配置是致讨的,其中铝合金焊接的交流变化被广泛使用并且旨在促进表面氧化物层清洁度,同时促进关节的穿透。在文献中,常见的是发现焊接时间在焊接时间的氧化物层的陈述连接到正波循环,并且穿透连接到负波循环时间。对于研究提议,铝合金AA 6063-T6的TIG-AC焊接通过简单的板沉积与矩形波,在电流焊接波的循环中的电极中的电流和正极性的正极性时,矩形波140a,用于平衡条件,在20ms的波形时间段内的正极性的50%,然后波不平衡为32.5%和15%的正极性作用时间,保持所有设置的恒定频率为50Hz。所选设置的结果表明,正波时间的减小降低了焊接珠的渗透率和宽度,这可能与所使用的时间和频率的选择有关。

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