MIG和TIG焊接速度对AA5083H116材料变形的影响

Mudjijana, M. Ilman, P. T. Iswanto
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引用次数: 0

摘要

焊接过程在接合部分引起局部加热,然后逐渐冷却。热量的输入取决于电流、电压和焊接速度。局部加热和冷却速度引起材料的体积变化,从而导致热量的扩散、变形和残余应力。变形可能导致美观的变化和焊接区域的大小。采用ER5356电极对AA5083H116进行MIG和TIG焊接,研究焊接速度对材料变形的影响。本研究采用AA5083H116材料。MIG焊速度为8、10、12 mm/s, TIG焊速度为0.8、1.3、1.8 mm/s。采用MIG和TIG焊接,焊接电压为19 V,焊枪角度为45°,氩气流量为17升/分钟。焊接过程完成后,在BATAN Yogyakarta STTN使用LORAD lx -200进行x射线照相。此外,还利用铣床上的百分表测量了工件的变形。测量结果以MIG和TIG焊接的测量距离与变形的轴线为图。焊接结果表明,在MIG和TIG焊接中,焊接速度为1.3 mm/ s时通过射线检测,低速焊接时变形较大。MIG焊的最大值为5mm, TIG焊的最小值为0.4 mm。对比还表明,TIG焊接一般不能在高速下进行,通过改变焊接顺序,可以将变形从近4 mm减小到2 mm。这个电子文档是一个“活的”模板,它已经在样式表中定义了论文的组成部分[标题,正文,标题等]。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
MIG and TIG welding speed influence on distortion of AA5083H116 materials
The welding process causes localized heating at the spliced portion followed by gradual cooling process. The heat input depends on the current, voltage, and welding speed. Local heating and cooling rate causes a volumetric change of the material, which resulted in the spread of heat, distortion, and residual stresses. Distortion may cause aesthetic changes and the size of the welded area. The purpose of this study is to investigate the effect of welding speed on material distortion of the AA5083H116 by MIG and TIG welding using ER5356 electrodes. This study utilizes AA5083H116 material. The MIG welding speeds were varied between 8, 10, and 12 mm/s while the TIG welding speed were 0.8, 1.3 and 1.8 mm/s. MIG and TIG welding was performed using voltage of 19 V, torch angle 45o, and argon gas flow rate of 17 liters/ minute. After finishing the welding process, X-ray radiography using LORAD LPX-200 was performed in STTN BATAN Yogyakarta. Furthermore, the distortion measurements were taken using a dial indicator on the bed of milling machine. The measurement results were plotted in graph with the axis of the distance measurement vs distortion for MIG and TIG welding. The welding results showed that welding speed of 1.3 mm/ s pass the test radiography in MIG and TIG welding, and the distortion is larger on the lower speed welding. The highest value is 5 mm for MIG welding and the lowest is 0.4 mm for TIG welding. The comparison also shows that TIG welding generally cannot be conducted at high speed and by changing the order of welding in MIG, the distortion can be reduced from near 4 mm to 2 mm. This electronic document is a “live” template and already defines the components of your paper [title, text, heads, etc.] in its style sheet.
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